TY - JOUR A1 - Treat, Claire C. A1 - Kleinen, Thomas A1 - Broothaerts, Nils A1 - Dalton, April S. A1 - Dommain, Rene A1 - Douglas, Thomas A. A1 - Drexler, Judith Z. A1 - Finkelstein, Sarah A. A1 - Grosse, Guido A1 - Hope, Geoffrey A1 - Hutchings, Jack A1 - Jones, Miriam C. A1 - Kuhry, Peter A1 - Lacourse, Terri A1 - Lahteenoja, Outi A1 - Loisel, Julie A1 - Notebaert, Bastiaan A1 - Payne, Richard J. A1 - Peteet, Dorothy M. A1 - Sannel, A. Britta K. A1 - Stelling, Jonathan M. A1 - Strauss, Jens A1 - Swindles, Graeme T. A1 - Talbot, Julie A1 - Tarnocai, Charles A1 - Verstraeten, Gert A1 - Williams, Christopher J. A1 - Xia, Zhengyu A1 - Yu, Zicheng A1 - Valiranta, Minna A1 - Hattestrand, Martina A1 - Alexanderson, Helena A1 - Brovkin, Victor T1 - Widespread global peatland establishment and persistence over the last 130,000 y JF - Proceedings of the National Academy of Sciences of the United States of America N2 - Glacial-interglacial variations in CO2 and methane in polar ice cores have been attributed, in part, to changes in global wetland extent, but the wetland distribution before the Last Glacial Maximum (LGM, 21 ka to 18 ka) remains virtually unknown. We present a study of global peatland extent and carbon (C) stocks through the last glacial cycle (130 ka to present) using a newly compiled database of 1,063 detailed stratigraphic records of peat deposits buried by mineral sediments, as well as a global peatland model. Quantitative agreement between modeling and observations shows extensive peat accumulation before the LGM in northern latitudes (> 40 degrees N), particularly during warmer periods including the last interglacial (130 ka to 116 ka, MIS 5e) and the interstadial (57 ka to 29 ka, MIS 3). During cooling periods of glacial advance and permafrost formation, the burial of northern peatlands by glaciers and mineral sediments decreased active peatland extent, thickness, and modeled C stocks by 70 to 90% from warmer times. Tropical peatland extent and C stocks show little temporal variation throughout the study period. While the increased burial of northern peats was correlated with cooling periods, the burial of tropical peat was predominately driven by changes in sea level and regional hydrology. Peat burial by mineral sediments represents a mechanism for long-term terrestrial C storage in the Earth system. These results show that northern peatlands accumulate significant C stocks during warmer times, indicating their potential for C sequestration during the warming Anthropocene. KW - peatlands KW - carbon KW - methane KW - carbon burial KW - Quaternary Y1 - 2019 U6 - https://doi.org/10.1073/pnas.1813305116 SN - 0027-8424 VL - 116 IS - 11 SP - 4822 EP - 4827 PB - National Acad. of Sciences CY - Washington ER - TY - THES A1 - Svirejeva-Hopkins, Anastasia T1 - Urbanised territories as a specific component of the global carbon cycle N2 - Wir betrachten folgende Teile: die zusätzlichen Kohlenstoff(C)-emissionen, welche aus der Umwandlung von natürlichem Umland durch Stadtwachstum resultieren, und die Änderung des C-Flusses durch 'urbanisierte' Ökosysteme, soweit atmosphärisches C durch diese in umliegende natürliche Ökosysteme entlang der Kette “Atmosphäre -> Vegetation -> abgestorbene organische Substanzen” gepumpt wird: d.h. C-Export; für den Zeitraum von 1980 bis 2050. Als Szenario nutzen wir Prognosen der regionalen Stadtbevölkerung, welche durch ein 'Hybridmodell' generiert werden für acht Regionen. Alle Schätzungen der C-Flüsse basieren auf zwei Modellen: das Regression Modell und das sogenannte G-Modell. Die Siedlungsfläche, welche mit dem Wachstum der Stadtbevölkerung zunimmt, wird in 'Grünflächen' (Parks, usw.), Gebäudeflächen und informell städtisch genutzte Flächen (Slums, illegale Lagerplätze, usw.) unterteilt. Es werden jährlich die regionale und globale Dynamik der C-Emissionen und des C-Exports sowie die C-Gesamtbilanz berechnet. Dabei liefern beide Modelle qualitativ ähnliche Ergebnisse, jedoch gibt es einige quantitative Unterschiede. Im ersten Modell erreicht die globale Jahresemission für die Dekade 2020-2030 resultierend aus der Landnutzungsänderung ein Maximum von 205 Mt/a. Die maximalen Beiträge zur globalen Emission werden durch China, die asiatische und die pazifische Region erbracht. Im zweiten Modell erhöht sich die jährliche globale Emission von 1.12 GtC/a für 1980 auf 1.25 GtC/a für 2005 (1Gt = 109 t). Danach beginnt eine Reduzierung. Vergleichen wir das Emissionmaximum mit der Emission durch Abholzung im Jahre 1980 (1.36 GtC/a), können wir konstatieren, daß die Urbanisierung damit in vergleichbarer Grösse zur Emission beiträgt. Bezogen auf die globale Dynamik des jährlichen C-Exports durch Urbanisierung beobachten wir ein monotones Wachstum bis zum nahezu dreifachen Wert von 24 MtC/a für 1980 auf 66 MtC/a für 2050 im ersten Modell, bzw. im zweiten Modell von 249 MtC/a für 1980 auf 505 MtC/a für 2050. Damit ist im zweiten Fall die Transportleistung der Siedlungsgebiete mit dem C-Transport durch Flüsse in die Ozeane (196 .. 537 MtC/a) vergleichbar. Bei der Abschätzung der Gesamtbilanz finden wir, daß die Urbanisierung die Bilanz in Richtung zu einer 'Senke' verschiebt. Entsprechend dem zweiten Modell beginnt sich die C-Gesamtbilanz (nach annähernder Konstanz) ab dem Jahre 2000 mit einer fast konstanten Rate zu verringern. Wenn das Maximum im Jahre 2000 bei 905MtC/a liegt, fällt dieser Wert anschliessend bis zum Jahre 2050 auf 118 MtC/a. Bei Extrapolation dieser Dynamik in die Zukunft können wir annehmen, daß am Ende des 21. Jahrhunderts die “urbane” C-Gesamtbilanz Null bzw. negative Werte erreicht. N2 - We calculate the additional carbon emissions as a result of the conversion of natural land in a process of urbanisation; and the change of carbon flows by “urbanised” ecosystems, when the atmospheric carbon is exported to the neighboring territories, from 1980 till 2050 for the eight regions of the world. As a scenario we use combined UN and demographic model′s prognoses for regional total and urban population growth. The calculations of urban areas dynamics are based on two models: the regression model and the Gamma-model. The urbanised area is sub-divided on built-up, „green“ (parks, etc.) and informal settlements (favelas) areas. The next step is to calculate the regional and world dynamics of carbon emission and export, and the annual total carbon balance. Both models give similar results with some quantitative differences. In the first model, the world annual emissions attain a maximum of 205 MtC/year between 2020-2030. Emissions will then slowly decrease. The maximum contributions are given by China and the Asia and Pacific regions. In the second model, world annual emissions increase to 1.25 GtC in 2005, beginning to decrease afterwards. If we compare the emission maximum with the annual emission caused by deforestation, 1.36GtC per year, then we can say that the role of urbanised territories (UT) is of a comparable magnitude. Regarding the world annual export of carbon by UT, we observe its monotonous growth by three times, from 24 MtC to 66 MtC in the first model, and from 249 MtC to 505 MtC in the second one. The latter, is therefore comparable to the amount of carbon transported by rivers into the ocean (196-537 MtC). By estimating the total balance we find that urbanisation shifts the total balance towards a “sink” state. The urbanisation is inhibited in the interval 2020-2030, and by 2050 the growth of urbanised areas would almost stop. Hence, the total emission of natural carbon at that stage will stabilise at the level of the 1980s (80 MtC per year). As estimated by the second model, the total balance, being almost constant until 2000, then starts to decrease at an almost constant rate. We can say that by the end of the XXI century, the total carbon balance will be equal to zero, when the exchange flows are fully balanced, and may even be negative, when the system begins to take up carbon from the atmosphere, i.e., becomes a “sink”. T2 - Urbanised territories as a specific component of the global carbon cycle KW - Urbanisierung KW - C-Senke KW - Bilanz KW - Kohlenstoffzyklus KW - Städte KW - C-Fluss KW - Slums KW - Vegetation KW - Verteilung KW - urban KW - land conversion KW - carbon KW - sink KW - cities KW - urbanisation KW - emissions KW - favela KW - regional KW - population KW - density KW - distribution KW - flux KW - vegetation Y1 - 2004 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-0001512 ER - TY - GEN A1 - Biskaborn, Boris A1 - Lanckman, J.-P. A1 - Lantuit, Hugues A1 - Elger, K. A1 - Streletskiy, Dmitry A1 - Cable, W. L. A1 - Romanovsky, Vladimir E. T1 - The new database of the Global Terrestrial Network for Permafrost (GTN-P) T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The Global Terrestrial Network for Permafrost (GTN-P) provides the first dynamic database associated with the Thermal State of Permafrost (TSP) and the Circumpolar Active Layer Monitoring (CALM) programs, which extensively collect permafrost temperature and active layer thickness (ALT) data from Arctic, Antarctic and mountain permafrost regions. The purpose of GTN-P is to establish an early warning system for the consequences of climate change in permafrost regions and to provide standardized thermal permafrost data to global models. In this paper we introduce the GTN-P database and perform statistical analysis of the GTN-P metadata to identify and quantify the spatial gaps in the site distribution in relation to climate-effective environmental parameters. We describe the concept and structure of the data management system in regard to user operability, data transfer and data policy. We outline data sources and data processing including quality control strategies based on national correspondents. Assessment of the metadata and data quality reveals 63% metadata completeness at active layer sites and 50% metadata completeness for boreholes. Voronoi tessellation analysis on the spatial sample distribution of boreholes and active layer measurement sites quantifies the distribution inhomogeneity and provides a potential method to locate additional permafrost research sites by improving the representativeness of thermal monitoring across areas underlain by permafrost. The depth distribution of the boreholes reveals that 73% are shallower than 25m and 27% are deeper, reaching a maximum of 1 km depth. Comparison of the GTN-P site distribution with permafrost zones, soil organic carbon contents and vegetation types exhibits different local to regional monitoring situations, which are illustrated with maps. Preferential slope orientation at the sites most likely causes a bias in the temperature monitoring and should be taken into account when using the data for global models. The distribution of GTN-P sites within zones of projected temperature change show a high representation of areas with smaller expected temperature rise but a lower number of sites within Arctic areas where climate models project extreme temperature increase. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 523 KW - international polar year KW - thermal state KW - climate-change KW - active-layer KW - carbon Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-409612 SN - 1866-8372 IS - 523 ER - TY - GEN A1 - Zimmermann, Heike Hildegard A1 - Raschke, Elena A1 - Epp, Laura Saskia A1 - Stoof-Leichsenring, Kathleen Rosemarie A1 - Schwamborn, Georg A1 - Schirrmeister, Lutz A1 - Overduin, Pier Paul A1 - Herzschuh, Ulrike T1 - Sedimentary ancient DNA and pollen reveal the composition of plant organic matter in Late Quaternary permafrost sediments of the Buor Khaya Peninsula (north-eastern Siberia) T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - Organic matter deposited in ancient, ice-rich permafrost sediments is vulnerable to climate change and may contribute to the future release of greenhouse gases; it is thus important to get a better characterization of the plant organic matter within such sediments. From a Late Quaternary permafrost sediment core from the Buor Khaya Peninsula, we analysed plant-derived sedimentary ancient DNA (sedaDNA) to identify the taxonomic composition of plant organic matter, and undertook palynological analysis to assess the environmental conditions during deposition. Using sedaDNA, we identified 154 taxa and from pollen and non-pollen palynomorphs we identified 83 taxa. In the deposits dated between 54 and 51 kyr BP, sedaDNA records a diverse low-centred polygon plant community including recurring aquatic pond vegetation while from the pollen record we infer terrestrial open-land vegetation with relatively dry environmental conditions at a regional scale. A fluctuating dominance of either terrestrial or swamp and aquatic taxa in both proxies allowed the local hydrological development of the polygon to be traced. In deposits dated between 11.4 and 9.7 kyr BP (13.4-11.1 cal kyr BP), sedaDNA shows a taxonomic turnover to moist shrub tundra and a lower taxonomic richness compared to the older samples. Pollen also records a shrub tundra community, mostly seen as changes in relative proportions of the most dominant taxa, while a decrease in taxonomic richness was less pronounced compared to sedaDNA. Our results show the advantages of using sedaDNA in combination with palynological analyses when macrofossils are rarely preserved. The high resolution of the sedaDNA record provides a detailed picture of the taxonomic composition of plant-derived organic matter throughout the core, and palynological analyses prove valuable by allowing for inferences of regional environmental conditions. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 670 KW - NE Siberia KW - vegetation patterns KW - environmental DNA KW - Arctic vegetation KW - frozen sediments KW - lake-sediments KW - gas-production KW - carbon KW - polygon KW - climate Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-417130 SN - 1866-8372 IS - 670 ER - TY - JOUR A1 - Moreno Curtidor, Catalina A1 - Annunziata, Maria Grazia A1 - Gupta, Saurabh A1 - Apelt, Federico A1 - Richard, Sarah Isabel A1 - Kragler, Friedrich A1 - Müller-Röber, Bernd A1 - Olas, Justyna Jadwiga T1 - Physiological profiling of embryos and dormant seeds in two Arabidopsis accessions reveals a metabolic switch in carbon reserve accumulation JF - Frontiers in plant science N2 - In flowering plants, sugars act as carbon sources providing energy for developing embryos and seeds. Although most studies focus on carbon metabolism in whole seeds, knowledge about how particular sugars contribute to the developmental transitions during embryogenesis is scarce. To develop a quantitative understanding of how carbon composition changes during embryo development, and to determine how sugar status contributes to final seed or embryo size, we performed metabolic profiling of hand-dissected embryos at late torpedo and mature stages, and dormant seeds, in two Arabidopsis thaliana accessions with medium [Columbia-0 (Col-0)] and large [Burren-0 (Bur-0)] seed sizes, respectively. Our results show that, in both accessions, metabolite profiles of embryos largely differ from those of dormant seeds. We found that developmental transitions from torpedo to mature embryos, and further to dormant seeds, are associated with major metabolic switches in carbon reserve accumulation. While glucose, sucrose, and starch predominantly accumulated during seed dormancy, fructose levels were strongly elevated in mature embryos. Interestingly, Bur-0 seeds contain larger mature embryos than Col-0 seeds. Fructose and starch were accumulated to significantly higher levels in mature Bur-0 than Col-0 embryos, suggesting that they contribute to the enlarged mature Bur-0 embryos. Furthermore, we found that Bur-0 embryos accumulated a higher level of sucrose compared to hexose sugars and that changes in sucrose metabolism are mediated by sucrose synthase (SUS), with SUS genes acting non-redundantly, and in a tissue-specific manner to utilize sucrose during late embryogenesis. KW - carbon KW - embryo development KW - hexoses KW - metabolites KW - sucrose KW - synthase Y1 - 2020 U6 - https://doi.org/10.3389/fpls.2020.588433 SN - 1664-462X VL - 11 PB - Frontiers Media CY - Lausanne ER - TY - THES A1 - Windirsch-Woiwode, Torben T1 - Permafrost carbon stabilisation by recreating a herbivore-driven ecosystem T1 - Stabilisierung von Permafrostkohlenstoff durch die Wiedereinführung eines Herbivor-geprägten Ökosystems N2 - With Arctic ground as a huge and temperature-sensitive carbon reservoir, maintaining low ground temperatures and frozen conditions to prevent further carbon emissions that contrib-ute to global climate warming is a key element in humankind’s fight to maintain habitable con-ditions on earth. Former studies showed that during the late Pleistocene, Arctic ground condi-tions were generally colder and more stable as the result of an ecosystem dominated by large herbivorous mammals and vast extents of graminoid vegetation – the mammoth steppe. Characterised by high plant productivity (grassland) and low ground insulation due to animal-caused compression and removal of snow, this ecosystem enabled deep permafrost aggrad-ation. Now, with tundra and shrub vegetation common in the terrestrial Arctic, these effects are not in place anymore. However, it appears to be possible to recreate this ecosystem local-ly by artificially increasing animal numbers, and hence keep Arctic ground cold to reduce or-ganic matter decomposition and carbon release into the atmosphere. By measuring thaw depth, total organic carbon and total nitrogen content, stable carbon iso-tope ratio, radiocarbon age, n-alkane and alcohol characteristics and assessing dominant vegetation types along grazing intensity transects in two contrasting Arctic areas, it was found that recreating conditions locally, similar to the mammoth steppe, seems to be possible. For permafrost-affected soil, it was shown that intensive grazing in direct comparison to non-grazed areas reduces active layer depth and leads to higher TOC contents in the active layer soil. For soil only frozen on top in winter, an increase of TOC with grazing intensity could not be found, most likely because of confounding factors such as vertical water and carbon movement, which is not possible with an impermeable layer in permafrost. In both areas, high animal activity led to a vegetation transformation towards species-poor graminoid-dominated landscapes with less shrubs. Lipid biomarker analysis revealed that, even though the available organic material is different between the study areas, in both permafrost-affected and sea-sonally frozen soils the organic material in sites affected by high animal activity was less de-composed than under less intensive grazing pressure. In conclusion, high animal activity af-fects decomposition processes in Arctic soils and the ground thermal regime, visible from reduced active layer depth in permafrost areas. Therefore, grazing management might be utilised to locally stabilise permafrost and reduce Arctic carbon emissions in the future, but is likely not scalable to the entire permafrost region. N2 - Mit dem arktischen Boden als riesigem und temperatursensiblen Kohlenstoffspeicher ist die Aufrechterhaltung niedriger Bodentemperaturen und gefrorener Bedingungen zur Verhinde-rung weiterer Kohlenstoffemissionen, die zum globalen Klimawandel beitragen, ein Schlüs-selelement im Kampf der Menschheit, die Erde weiterhin bewohnbar zu halten. Vorangehen-de Studien ergaben, dass die Bodenbedingungen in der Arktis während des späten Pleisto-zäns im Allgemeinen kälter und dadurch stabiler waren, als Ergebnis eines Ökosystems, das von großen pflanzenfressenden Säugetieren und weiten Flächen grasartiger Vegetation do-miniert wurde - der Mammutsteppe. Gekennzeichnet durch hohe Pflanzenproduktivität (Gras-land) und geringe Bodenisolierung aufgrund von Kompression und Schneeräumung durch Tiere, ermöglichte dieses Ökosystem eine tiefreichende Entwicklung des Permafrosts. Heut-zutage, mit der vorherrschenden Tundra- und Strauchvegetation in der Arktis, sind diese Ef-fekte nicht mehr präsent. Es scheint aber möglich, dieses Ökosystem lokal durch künstliche Erhöhung der Tierbestände nachzubilden und somit den arktischen Boden kühl zu halten, um den Abbau von organischem Material und die Freisetzung von Kohlenstoff in die Atmosphäre zu verringern. Durch Messungen der Auftautiefe, des Gesamtgehalts des organischen Kohlenstoffs und Stickstoffs, des stabilen Kohlenstoff-Isotopenverhältnisses, des Radiocarbonalters, der n-Alkan- und Alkoholcharakteristika sowie durch Bestimmung der vorherrschenden Vegetati-onstypen entlang von Beweidungsgradienten in zwei unterschiedlichen arktischen Gebieten habe ich festgestellt, dass die Schaffung ähnlicher Bedingungen wie in der Mammutsteppe möglich sein könnte. Für durch Permafrost beeinflusste Böden konnte ich zeigen, dass eine intensive Beweidung im direkten Vergleich mit unbeweideten Gebieten die Tiefe der Auftau-schicht verringert und zu höheren Gehalten an organischem Kohlenstoff im oberen Bodenbe-reich führt. Für im Winter nur oberflächlich gefrorene Böden konnte kein Anstieg des organi-schen Kohlenstoffgehalts mit zunehmender Beweidungsintensität festgestellt werden, höchstwahrscheinlich aufgrund von Störfaktoren wie vertikalen Wasser- und Kohlenstoffbe-wegungen, die nicht durch eine undurchlässige Schicht wie beim Permafrost begrenzt sind. In beiden Gebieten führte eine hohe Tieraktivität zu einer Umwandlung der Vegetation hin zu artenarmen, von Gräsern dominierten Landschaften mit weniger Sträuchern. Die Analyse von Lipid-Biomarkern ergab, dass das verfügbare organische Material zwar zwischen den Unter-suchungsgebieten unterschiedlich war, aber sowohl in Permafrostgebieten als auch in saiso-nal gefrorenen Böden in Bereichen mit hoher Tieraktivität weniger stark zersetzt war als unter geringerer Beweidungsintensität. Zusammenfassend beeinflusst eine hohe Tieraktivität die Zersetzungsvorgänge in arktischen Böden und das thermische Regime des Bodens, was sich in einer reduzierten Tiefe der Auftauschicht in Permafrostgebieten widerspiegelt. Daher könn-te das Beweidungsmanagement in Zukunft aktiv eingesetzt werden, um den Permafrost lokal zu stabilisieren und gefroren zu halten sowie die Kohlenstoffemissionen in der Arktis zu ver-ringern. Aufgrund der Größe der Fläche, die in der terrestrischen Arktis von Permafrost be-einflusst ist, wird ein solches Beweidungsmanagement aber nicht als Maßnahme auf die ge-samte Permafrostregion ausgedehnt werden können. KW - permafrost KW - carbon KW - climate change KW - grazing KW - Arctic KW - Arktis KW - Kohlenstoff KW - Klimawandel KW - Beweidung KW - Permafrost Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-624240 ER - TY - GEN A1 - Frindte, Katharina A1 - Allgaier, Martin A1 - Grossart, Hans-Peter A1 - Eckert, Werner T1 - Microbial response to experimentally controlled redox transitions at the sediment water interface T2 - Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe N2 - The sediment-water interface of freshwater lakes is characterized by sharp chemical gradients, shaped by the interplay between physical, chemical and microbial processes. As dissolved oxygen is depleted in the uppermost sediment, the availability of alternative electron acceptors, e.g. nitrate and sulfate, becomes the limiting factor. We performed a time series experiment in a mesocosm to simulate the transition from aerobic to anaerobic conditions at the sediment-water interface. Our goal was to identify changes in the microbial activity due to redox transitions induced by successive depletion of available electron acceptors. Monitoring critical hydrochemical parameters in the overlying water in conjunction with a new sampling strategy for sediment bacteria enabled us to correlate redox changes in the water to shifts in the active microbial community and the expression of functional genes representing specific redox-dependent microbial processes. Our results show that during several transitions from oxic-heterotrophic condition to sulfate-reducing condition, nitrate-availability and the on-set of sulfate reduction strongly affected the corresponding functional gene expression. There was evidence of anaerobic methane oxidation with NOx. DGGE analysis revealed redox-related changes in microbial activity and expression of functional genes involved in sulfate and nitrite reduction, whereas methanogenesis and methanotrophy showed only minor changes during redox transitions. The combination of high-frequency chemical measurements and molecular methods provide new insights into the temporal dynamics of the interplay between microbial activity and specific redox transitions at the sediment-water interface. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 509 KW - anaerobic methane oxidation KW - oligotrophic lake Stechlin KW - ribosomal RNA KW - vertical-distribution KW - coastal sediments KW - sulfate reduction KW - Shallow Lake KW - bacteria KW - carbon KW - communities Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-408464 SN - 1866-8372 IS - 509 ER - TY - THES A1 - Frank-Fahle, Béatrice A. T1 - Methane-cycling microbial communities in permafrost affected soils on Herschel Island and the Yukon Coast, Western Canadian Arctic T1 - Mikrobielle Gemeinschaften des Methankreislaufs in Permafrost beeinflussten Böden auf der Insel Herschel und an der Yukon-Küste, westliche kanadische Arktis N2 - Permafrost-affected ecosystems including peat wetlands are among the most obvious regions in which current microbial controls on organic matter decomposition are likely to change as a result of global warming. Wet tundra ecosystems in particular are ideal sites for increased methane production because of the waterlogged, anoxic conditions that prevail in seasonally increasing thawed layers. The following doctoral research project focused on investigating the abundance and distribution of the methane-cycling microbial communities in four different polygons on Herschel Island and the Yukon Coast. Despite the relevance of the Canadian Western Arctic in the global methane budget, the permafrost microbial communities there have thus far remained insufficiently characterized. Through the study of methanogenic and methanotrophic microbial communities involved in the decomposition of permafrost organic matter and their potential reaction to rising environmental temperatures, the overarching goal of the ensuing thesis is to fill the current gap in understanding the fate of the organic carbon currently stored in Artic environments and its implications regarding the methane cycle in permafrost environments. To attain this goal, a multiproxy approach including community fingerprinting analysis, cloning, quantitative PCR and next generation sequencing was used to describe the bacterial and archaeal community present in the active layer of four polygons and to scrutinize the diversity and distribution of methane-cycling microorganisms at different depths. These methods were combined with soil properties analyses in order to identify the main physico-chemical variables shaping these communities. In addition a climate warming simulation experiment was carried-out on intact active layer cores retrieved from Herschel Island in order to investigate the changes in the methane-cycling communities associated with an increase in soil temperature and to help better predict future methane-fluxes from polygonal wet tundra environments in the context of climate change. Results showed that the microbial community found in the water-saturated and carbon-rich polygons on Herschel Island and the Yukon Coast was diverse and showed a similar distribution with depth in all four polygons sampled. Specifically, the methanogenic community identified resembled the communities found in other similar Arctic study sites and showed comparable potential methane production rates, whereas the methane oxidizing bacterial community differed from what has been found so far, being dominated by type-II rather than type-I methanotrophs. After being subjected to strong increases in soil temperature, the active-layer microbial community demonstrated the ability to quickly adapt and as a result shifts in community composition could be observed. These results contribute to the understanding of carbon dynamics in Arctic permafrost regions and allow an assessment of the potential impact of climate change on methane-cycling microbial communities. This thesis constitutes the first in-depth study of methane-cycling communities in the Canadian Western Arctic, striving to advance our understanding of these communities in degrading permafrost environments by establishing an important new observatory in the Circum-Arctic. N2 - Permafrost beeinflusste Ökosysteme gehören zu den Regionen, in denen als Folge der globalen Erwärmung eine Veränderung des mikrobiell-kontrollierten Abbaus von organischem Material zu erwarten ist. Besonders in den Ökosystemen der feuchten Tundralandschaften kommt es zu einer verstärkten Methanpoduktion unter wassergesättigten und anoxischen Bedingungen, die durch immer tiefere saisonale Auftauschichten begünstigt werden. Die vorliegende Doktorarbeit kontenzentrierte sich auf die Untersuchung der Abundanz und Verteilung der am Methankreislauf beteiligten mikrobiellen Gemeinschaften in vier unterschiedlichen Polygonen auf der Insel Herschel und an der Yukon Küste in Kanada. Trotz des relevanten Beitrags der kanadischen West-Arktis am globalen Methanhaushalt, sind die dortigen mikrobiellen Gemeinschaften im Permafrost bisher nur unzureichend untersucht worden. Die zentrale Zielstellung der vorliegenden Arbeit besteht darin, die derzeitige Lücke im Verständnis der Kohlenstoffdynamik in der Arktis im Zuge von Klimaveränderungen und deren Bedeutung für den Methankreislauf in Permafrost-Ökosystemen zu schließen. Dies erfolgt durch Untersuchungen der am Abbau der organischen Substanz im Permafrost beteiligten methonogenen und methanothrophen mikrobiellen Gemeinschaften und ihrer möglichen Reaktionen auf steigende Umgebungstemperaturen. Um dieses Ziel zu erreichen, wurde ein Multiproxy-Ansatz gewählt, der die Analyse der Gemeinschaften mittels genetischen Fingerprintmethoden, Klonierung, quantitativer PCR und moderner Hochdurchsatzsequenzierung („Next Generation Sequencing“) beinhaltet, um die in der Auftauschicht der vier untersuchten Polygone vorhandenen Bakterien- und Archaeen-Gemeinschaften zu charakterisieren sowie die Diversität und Verteilung der am Methankreislauf beteiligten Mikroorganismen in unterschiedlicher Tiefe eingehend zu analysieren. Diese Studien wurden mit physikalisch-chemischen Habitatuntersuchungen kombiniert, da diese die mikrobiellen Lebensgemeinschaften maßgeblich beeinflussen. Zusätzlich wurde ein Laborexperiment zur Simulation der Klimaerwärmung an intakten Bodenmonolithen von der Insel Herschel durchgeführt, um die Veränderungen der am Methankreislauf beteiligten Gemeinschaften aufgrund steigender Bodentemperaturen zu untersuchen, sowie sicherere Voraussagen bezüglich der Methanfreisetzung in polygonalen Permafrostgebieten im Zusammenhang mit dem Klimawandel treffen zu können. KW - Permafrost KW - Mikrobiologie KW - Methan KW - Kohlenstoff KW - Arktis KW - Permafrost KW - microbiology KW - methane KW - carbon KW - Arctic Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-65345 ER - TY - JOUR A1 - Heslop, J. K. A1 - Winkel, Matthias A1 - Anthony, K. M. Walter A1 - Spencer, R. G. M. A1 - Podgorski, D. C. A1 - Zito, P. A1 - Kholodov, A. A1 - Zhang, M. A1 - Liebner, Susanne T1 - Increasing organic carbon biolability with depth in yedoma permafrost BT - ramifications for future climate change JF - Journal of geophysical research : Biogeosciences N2 - Permafrost thaw subjects previously frozen organic carbon (OC) to microbial decomposition, generating the greenhouse gases (GHG) carbon dioxide (CO2) and methane (CH4) and fueling a positive climate feedback. Over one quarter of permafrost OC is stored in deep, ice-rich Pleistocene-aged yedoma permafrost deposits. We used a combination of anaerobic incubations, microbial sequencing, and ultrahigh-resolution mass spectrometry to show yedoma OC biolability increases with depth along a 12-m yedoma profile. In incubations at 3 degrees C and 13 degrees C, GHG production per unit OC at 12-versus 1.3-m depth was 4.6 and 20.5 times greater, respectively. Bacterial diversity decreased with depth and we detected methanogens at all our sampled depths, suggesting that in situ microbial communities are equipped to metabolize thawed OC into CH4. We concurrently observed an increase in the relative abundance of reduced, saturated OC compounds, which corresponded to high proportions of C mineralization and positively correlated with anaerobic GHG production potentials and higher proportions of OC being mineralized as CH4. Taking into account the higher global warming potential (GWP) of CH4 compared to CO2, thawed yedoma sediments in our study had 2 times higher GWP at 12-versus 9.0-m depth at 3 degrees C and 15 times higher GWP at 13 degrees C. Considering that yedoma is vulnerable to processes that thaw deep OC, our findings imply that it is important to account for this increasing GHG production and GWP with depth to better understand the disproportionate impact of yedoma on the magnitude of the permafrost carbon feedback. KW - permafrost KW - carbon KW - yedoma KW - Alaska KW - FT-ICR MS KW - microbes Y1 - 2019 U6 - https://doi.org/10.1029/2018JG004712 SN - 2169-8953 SN - 2169-8961 VL - 124 IS - 7 SP - 2021 EP - 2038 PB - American Geophysical Union CY - Washington ER - TY - GEN A1 - Puppe, Daniel A1 - Höhn, Axel A1 - Kaczorek, Danuta A1 - Wanner, Manfred A1 - Wehrhan, Marc A1 - Sommer, Michael T1 - How big is the influence of biogenic silicon pools on short-term changes in water-soluble silicon in soils? BT - Implications from a study of a 10-year-old soil–plant system T2 - Postprints der Universität Potsdam : Mathematisch Naturwissenschaftliche Reihe N2 - The significance of biogenic silicon (BSi) pools as a key factor for the control of Si fluxes from terrestrial to aquatic ecosystems has been recognized for decades. However, while most research has been focused on phytogenic Si pools, knowledge of other BSi pools is still limited. We hypothesized that different BSi pools influence short-term changes in the water-soluble Si fraction in soils to different extents. To test our hypothesis we took plant (Calamagrostis epigejos, Phragmites australis) and soil samples in an artificial catchment in a post-mining landscape in the state of Brandenburg, Germany. We quantified phytogenic (phytoliths), protistic (diatom frustules and testate amoeba shells) and zoogenic (sponge spicules) Si pools as well as Tironextractable and water-soluble Si fractions in soils at the beginning (t(0)) and after 10 years (t(10)) of ecosystem development. As expected the results of Tiron extraction showed that there are no consistent changes in the amorphous Si pool at Chicken Creek (Huhnerwasser) as early as after 10 years. In contrast to t(0) we found increased water-soluble Si and BSi pools at t(10); thus we concluded that BSi pools are the main driver of short-term changes in water-soluble Si. However, because total BSi represents only small proportions of water-soluble Si at t(0) (< 2 %) and t(10) (2.8-4.3 %) we further concluded that smaller (< 5 mu m) and/or fragile phytogenic Si structures have the biggest impact on short-term changes in water-soluble Si. In this context, extracted phytoliths (> 5 mu m) only amounted to about 16% of total Si con-tents of plant materials of C. epigejos and P. australis at t(10); thus about 84% of small-scale and/or fragile phytogenic Si is not quantified by the used phytolith extraction method. Analyses of small-scale and fragile phytogenic Si structures are urgently needed in future work as they seem to represent the biggest and most reactive Si pool in soils. Thus they are the most important drivers of Si cycling in terrestrial biogeosystems. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 633 KW - brook experimental forest KW - protozoic Si pool KW - testate amebas KW - biochemical cycle KW - temperate forest KW - amorphous silica KW - dissolution KW - carbon KW - phytoliths KW - surface Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-417141 IS - 633 SP - 5239 EP - 5252 ER - TY - JOUR A1 - Quan, Ting A1 - Goubard-Bretesche, Nicolas A1 - Haerk, Eneli A1 - Kochovski, Zdravko A1 - Mei, Shilin A1 - Pinna, Nicola A1 - Ballauff, Matthias A1 - Lu, Yan T1 - Highly Dispersible Hexagonal Carbon-MoS2-Carbon Nanoplates with Hollow Sandwich Structures for Supercapacitors JF - Chemistry - a European journal N2 - MoS2, a typical layered transition-metal dichalcogenide, is promising as an electrode material in supercapacitors. However, its low electrical conductivity could lead to limited capacitance if applied in electrochemical devices. Herein, a new nanostructure composed of hollow carbon-MoS2-carbon was successfully synthesized through an L-cysteine-assisted hydrothermal method by using gibbsite as a template and polydopamine as a carbon precursor. After calcination and etching of the gibbsite template, uniform hollow platelets, which were made of a sandwich-like assembly of partial graphitic carbon and two-dimensional layered MoS2 flakes, were obtained. The platelets showed excellent dispersibility and stability in water, and good electrical conductivity due to carbon provided by the calcination of polydopamine coatings. The hollow nanoplate morphology of the material provided a high specific surface area of 543 m(2) g(-1), a total pore volume of 0.677 cm(3) g(-1), and fairly small mesopores (approximate to 5.3 nm). The material was applied in a symmetric supercapacitor and exhibited a specific capacitance of 248 F g(-1) (0.12 F cm(-2)) at a constant current density of 0.1 Ag-1; thus suggesting that hollow carbon-MoS2 carbon nanoplates are promising candidate materials for supercapacitors. KW - carbon KW - chalcogens KW - electrochemistry KW - nanostructures KW - supercapacitors Y1 - 2019 U6 - https://doi.org/10.1002/chem.201806060 SN - 0947-6539 SN - 1521-3765 VL - 25 IS - 18 SP - 4757 EP - 4766 PB - Wiley-VCH CY - Weinheim ER - TY - THES A1 - Chung, Kang Ko T1 - Heteroatom-containing carbons for high energy density supercapacitor T1 - Heteroatomhaltige Kohlenstoffe für Superkondensatoren mit hohen Energiedichten N2 - The supercapacitor is one of the most important energy storage devices as its construction allows for addressing many of the drawbacks related to batteries, but the low energy density of current systems is a major issue. In this doctoral dissertation, with a view to attaining high energy density supercapacitor systems that can be comparable to those for batteries, new heteroatom-containing carbons in the form of particles and three-dimensional films were investigated. A nitrogen-containing material, acrodam, was chosen as the carbon precursor due to the inexpensiveness, high carbonization yield, oligomerizability, etc. The carbon particles were prepared from acrodam together with caesium acetate as a meltable flux agent, and disclosed excellent properties in hydroquinone-loaded sulphuric acid electrolyte with high energy densities (up to 133.0 Wh kg–1) and sufficient cycle stabilities. These properties are already now comparable to those of batteries. Besides, conductive carbon three-dimensional films were fabricated using acrodam oligomer as the precursor by the inexpensive spin coating method. The films were found to be homogeneous, flat, void- and crack-free, and high conductivities (up to 334 S cm–1) could be obtained at the carbonization temperature of 1000 ºC. Furthermore, a porous carbon three-dimensional film could be formed using an organic template at the first attempt. This finding demonstrates the film’s potentiality for various applications such as supercapacitor electrode; the essential absence of contact resistance within the network should contribute to effective transportation of electron within the electrode. The progress made in this dissertation will open a new way to further enhancement of energy density for supercapacitor as well as other applications that exceeds the current properties. N2 - Der Superkondensator ist einer der wichtigsten Energiespeicher da seine Konstruktion die Lösung vieler Nachteile von Batterien erlaubt. Allerdings weisen derzeitige Systeme noch zu geringe Energiedichten auf. Um Superkondensatoren mit Energiedichten vergleichbar zu Batterien zu ermöglichen, wurden in der vorliegenden Dissertation neue, heteroatomhaltige Kohlenstoffe in Form von Partikeln und Filmen untersucht. Aufgrund geringer Kosten, hohen Ausbeuten, Polymerisierbarkeit usw. wurde die stickstoffhaltige Substanz Acrodam als Kohlenstoffvorstufe verwendet. Die Kohlenstoffpartikel wurden ausgehend von Acrodam zusammen mit Cäsiumacetat als schmelzbares Flussmittel hergestellt und wiesen ausgezeichnete Eigenschaften in Hydrochinon geladenen Schwefelsäure-Elektrolyten mit hohen Energiedichten (bis zu 133,0 Wh kg–1) und guten Zyklusstabilitäten auf. Diese Eigenschaften sind bereits jetzt vergleichbar mit denen von Batterien. Weiterhin wurden unter Verwendung von Acrodamoligomeren als Vorstufe und mit Hilfe der kostengünstigen Rotationsbeschichtung leitfähige, dreidimensionale Kohlenstofffilme hergestellt. Bei einer Karbonisierungstemperatur von 1000 °C konnten die Materialien als homogene, flache, Hohlraum-und Riss-freie Filme erhalten werden, die eine hohe Leitfähigkeit (bis zu 334 S cm–1) aufwiesen. Darüber hinaus konnte mit einem organischen Templat ein dreidimensionaler, poröser Kohlenstoff geformt werden. Dies zeigt das Potential der Filme für verschiedene Anwendungen wie Superkondensatorelektroden; die Abwesenheit von Übergangswiderständen im Netzwerk sollte zu einem effizienten Transport von Elektronen in der Elektrode beitragen. Die Ergebnisse dieser Dissertation werden neue Wege zur Verbesserung der Energiedichte von Superkondensatoren sowie weiteren Anwendungen eröffnen. KW - supercapacitor KW - carbon KW - heteroatom KW - energy density Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-69826 ER - TY - GEN A1 - Porada, Philipp A1 - Tamm, Alexandra A1 - Raggio, Jose A1 - Yafang, Cheng A1 - Kleidon, Axel A1 - Pöschl, Ulrich A1 - Weber, Bettina T1 - Global NO and HONO emissions of biological soil crusts estimated by a process-based non-vascular vegetation model T2 - Postprints der Universität Potsdam Mathematisch-Naturwissenschaftliche Reihe N2 - The reactive trace gases nitric oxide (NO) and nitrous acid (HONO) are crucial for chemical processes in the atmosphere, including the formation of ozone and OH radicals, oxidation of pollutants, and atmospheric self-cleaning. Recently, empirical studies have shown that biological soil crusts are able to emit large amounts of NO and HONO, and they may therefore play an important role in the global budget of these trace gases. However, the upscaling of local estimates to the global scale is subject to large uncertainties, due to unknown spatial distribution of crust types and their dynamic metabolic activity. Here, we perform an alternative estimate of global NO and HONO emissions by biological soil crusts, using a process-based modelling approach to these organisms, combined with global data sets of climate and land cover. We thereby consider that NO and HONO are emitted in strongly different proportions, depending on the type of crust and their dynamic activity, and we provide a first estimate of the global distribution of four different crust types. Based on this, we estimate global total values of 1.04 Tg yr⁻¹ NO–N and 0.69 Tg yr⁻¹ HONO–N released by biological soil crusts. This corresponds to around 20% of global emissions of these trace gases from natural ecosystems. Due to the low number of observations on NO and HONO emissions suitable to validate the model, our estimates are still relatively uncertain. However, they are consistent with the amount estimated by the empirical approach, which confirms that biological soil crusts are likely to have a strong impact on global atmospheric chemistry via emissions of NO and HONO. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 746 KW - net primary productivity KW - hilly loes plateau KW - mojave desert KW - spatial-distribution KW - nitrous-oxide KW - succulent karoo KW - inner-mongolia KW - carbon KW - lichens KW - bryophytes Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-435682 SN - 1866-8372 IS - 746 SP - 2003 EP - 2031 ER - TY - JOUR A1 - Porada, Philipp A1 - Tamm, Alexandra A1 - Raggio, Jose A1 - Yafang, Cheng A1 - Kleidon, Axel A1 - Pöschl, Ulrich A1 - Weber, Bettina T1 - Global NO and HONO emissions of biological soil crusts estimated by a process-based non-vascular vegetation model JF - Biogeosciences N2 - The reactive trace gases nitric oxide (NO) and nitrous acid (HONO) are crucial for chemical processes in the atmosphere, including the formation of ozone and OH radicals, oxidation of pollutants, and atmospheric self-cleaning. Recently, empirical studies have shown that biological soil crusts are able to emit large amounts of NO and HONO, and they may therefore play an important role in the global budget of these trace gases. However, the upscaling of local estimates to the global scale is subject to large uncertainties, due to unknown spatial distribution of crust types and their dynamic metabolic activity. Here, we perform an alternative estimate of global NO and HONO emissions by biological soil crusts, using a process-based modelling approach to these organisms, combined with global data sets of climate and land cover. We thereby consider that NO and HONO are emitted in strongly different proportions, depending on the type of crust and their dynamic activity, and we provide a first estimate of the global distribution of four different crust types. Based on this, we estimate global total values of 1.04 Tg yr⁻¹ NO–N and 0.69 Tg yr⁻¹ HONO–N released by biological soil crusts. This corresponds to around 20% of global emissions of these trace gases from natural ecosystems. Due to the low number of observations on NO and HONO emissions suitable to validate the model, our estimates are still relatively uncertain. However, they are consistent with the amount estimated by the empirical approach, which confirms that biological soil crusts are likely to have a strong impact on global atmospheric chemistry via emissions of NO and HONO. KW - net primary productivity KW - hilly loes plateau KW - mojave desert KW - spatial-distribution KW - nitrous-oxide KW - succulent karoo KW - inner-mongolia KW - carbon KW - lichens KW - bryophytes Y1 - 2019 U6 - https://doi.org/10.5194/bg-16-2003-2019 SN - 1726-4170 SN - 1726-4189 VL - 16 SP - 2003 EP - 2031 PB - Copernicus Publ. CY - Göttingen ER - TY - THES A1 - Schutjajew, Konstantin T1 - Electrochemical sodium storage in non-graphitizing carbons - insights into mechanisms and synthetic approaches towards high-energy density materials T1 - Elektrochemische Natriumspeicherung in nicht-graphitisierbaren Kohlenstoffen - Untersuchungen zu Mechanismen und synthetische Ansätze für die Darstellung von Materialien mit hohen Energiedichten N2 - To achieve a sustainable energy economy, it is necessary to turn back on the combustion of fossil fuels as a means of energy production and switch to renewable sources. However, their temporal availability does not match societal consumption needs, meaning that renewably generated energy must be stored in its main generation times and allocated during peak consumption periods. Electrochemical energy storage (EES) in general is well suited due to its infrastructural independence and scalability. The lithium ion battery (LIB) takes a special place, among EES systems due to its energy density and efficiency, but the scarcity and uneven geological occurrence of minerals and ores vital for many cell components, and hence the high and fluctuating costs will decelerate its further distribution. The sodium ion battery (SIB) is a promising successor to LIB technology, as the fundamental setup and cell chemistry is similar in the two systems. Yet, the most widespread negative electrode material in LIBs, graphite, cannot be used in SIBs, as it cannot store sufficient amounts of sodium at reasonable potentials. Hence, another carbon allotrope, non-graphitizing or hard carbon (HC) is used in SIBs. This material consists of turbostratically disordered, curved graphene layers, forming regions of graphitic stacking and zones of deviating layers, so-called internal or closed pores. The structural features of HC have a substantial impact of the charge-potential curve exhibited by the carbon when it is used as the negative electrode in an SIB. At defects and edges an adsorption-like mechanism of sodium storage is prevalent, causing a sloping voltage curve, ill-suited for the practical application in SIBs, whereas a constant voltage plateau of relatively high capacities is found immediately after the sloping region, which recent research attributed to the deposition of quasimetallic sodium into the closed pores of HC. Literature on the general mechanism of sodium storage in HCs and especially the role of the closed pore is abundant, but the influence of the pore geometry and chemical nature of the HC on the low-potential sodium deposition is yet in an early stage. Therefore, the scope of this thesis is to investigate these relationships using suitable synthetic and characterization methods. Materials of precisely known morphology, porosity, and chemical structure are prepared in clear distinction to commonly obtained ones and their impact on the sodium storage characteristics is observed. Electrochemical impedance spectroscopy in combination with distribution of relaxation times analysis is further established as a technique to study the sodium storage process, in addition to classical direct current techniques, and an equivalent circuit model is proposed to qualitatively describe the HC sodiation mechanism, based on the recorded data. The obtained knowledge is used to develop a method for the preparation of closed porous and non-porous materials from open porous ones, proving not only the necessity of closed pores for efficient sodium storage, but also providing a method for effective pore closure and hence the increase of the sodium storage capacity and efficiency of carbon materials. The insights obtained and methods developed within this work hence not only contribute to the better understanding of the sodium storage mechanism in carbon materials of SIBs, but can also serve as guidance for the design of efficient electrode materials. N2 - Eine nachhaltige Energiewirtschaft kann nur durch die Abkehr von fossilen Brennstoffen als Energiequellen und den ausschließlichen Einsatz erneuerbarer Quellen für die Energieerzeugung erreicht werden. Da diese jedoch naturgemäß nur diskontinuierlich zur Verfügung stehen und sich die tageszeitliche Verfügbarkeit kaum mit dem Bedarf deckt, muss erneuerbar gewonnene Energie zwischengespeichert werden. Dies kann mittels elektrochemischer Energiespeicher geschehen, wobei sich die Lithium-Ionen-Batterie (LIB) aufgrund ihrer hohen Energiedichte und Effizienz besonders dafür eignet. Da jedoch Ressourcen, welche für entscheidende Zellkomponenten der LIB benötigt werden, knapper werden und oft in geopolitisch komplizierten Regionen vorkommen, muss auch dafür eine Alternative gefunden werden. Die Natrium-Ionen-Batterie (NIB) bietet sich als Nachfolger für LIBs an, da sich die Zellchemie der beiden Systeme ähnelt und somit Kenntnisse direkt aus der LIB-Forschung übernommen werden können. Es erweist sich allerdings als problematisch, dass das kommerziell wichtigste negative Elektrodenmaterial in LIBs, Graphit, nicht für die Anwendung in NIBs eignet und daher eine andere Kohlenstoffmodifikation, sogenannter nicht-graphitisierbarer Kohlenstoff, oder aus dem Englischen hard carbon (HC), verwendet werden muss. HC ist durch eine besondere Art der Fehlordnung geprägt und besteht im Wesentlichen aus Regionen, in denen die Kohlenstoffschichten parallel zueinander verlaufen und aus Regionen, in denen die Schichten innere Hohlräume, sogenannte geschlossene Poren bilden. Die Lade-Entladekurve von HCs ist geprägt von diesen Strukturmerkmalen, sodass sie in einen linear-abflachenden, aus dem Englischen sloping Bereich, und einen Plateaubereich unterteilt werden kann. Die Speicherung im für Energieanwendungen relevanteren Plateaubereich erfolgt durch Abscheidung quasimetallischer Natriumstrukturen in eingangs erwähnten geschlossenen Poren, bei geringen, konstanten Spannungen, wie zahlreiche Forschungsarbeiten unter Berufung auf verschiedene Strukturcharakterisierungsmethoden � uberzeugend nahelegen. Jedoch ist über den Einfluss der Größe und Form der geschlossenen Poren sowie derer chemischer Eigenschaften auf die Natriumspeicherung nur wenig bekannt. Eben diese Fragestellung soll in der vorliegenden Arbeit behandelt werden. Durch die Herstellung von Materialien mit genau definierter und bekannter Morphologie, Porenstruktur sowie chemischer Beschaffenheit wird die Bedeutung dieser Merkmale für die Natriumabscheidung bei geringen Potentialen beleuchtet. Mittels elektrochemischer Impedanzspektroskopie wird desweiteren der Natriumspeichermechanismus detailliert untersucht und die Kinetik der reversiblen Natriumspeicherung mit der der irreversiblen Metallabscheidung verglichen, wobei eine bemerkenswerte Ähnlichkeit der beiden Prozesse zu beobachten ist. Abschließend ist die gezielte Herstellung geschlossenporiger Materialien aus offenporigen Vorläufermaterialien gelungen, welche es nicht nur ermöglicht, geschlossen- und offenporige Materialien ansonsten gleicher Porenstruktur zu vergleichen und die Notwendigkeit geschlossener Poren nachzuweisen, sondern auch die Speicherkapazität und Effizienz der Elektrodenmaterialien zu erhöhen. Insgesamt tragen die im Rahmen der vorliegenden Dissertation gewonnenen Erkenntisse nicht nur zum tiefergehenden Verständnis des Natriumspeichermechanismus in HCs bei, sondern es werden auch synthetische und analytische Methoden vorgestellt, die der weiteren Forschung auf diesem Gebiet dienen werden. KW - sodium-ion batteries KW - energy storage KW - carbon KW - Natrium-Ionen-Akkumulator KW - Energiespeicher KW - Kohlenstoff Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-541894 ER - TY - THES A1 - Herbrich, Marcus T1 - Einfluss der erosionsbedingten Pedogenese auf den Wasserund Stoffhaushalt ackerbaulich genutzter Böden der Grundmoränenbodenlandschaft NO-Deutschlands - hydropedologische Untersuchungen mittels wägbarer Präzisionslysimeter T1 - Effects of erosion-affected soil evolution on water and dissolved carbon fluxes, soil hydraulic properties, and crop development of soils from a hummocky ground moraine landscape - hydropedological analysis using high precision weighing lysimeters N2 - In the arable soil landscape of hummocky ground moraines, an erosion-affected spatial differentiation of soils can be observed. Man-made erosion leads to soil profile modifications along slopes with changed solum thickness and modified properties of soil horizons due to water erosion in combination with tillage operations. Soil erosion creates, thereby, spatial patterns of soil properties (e.g., texture and organic matter content) and differences in crop development. However, little is known about the manner in which water fluxes are affected by soil-crop interactions depending on contrasting properties of differently-developed soil horizons and how water fluxes influence the carbon transport in an eroded landscape. To identify such feedbacks between erosion-induced soil profile modifications and the 1D-water and solute balance, high-precision weighing lysimeters equipped with a wide range of sensor technique were filled with undisturbed soil monoliths that differed in the degree of past soil erosion. Furthermore, lysimeter effluent concentrations were analyzed for dissolved carbon fractions in bi-weekly intervals. The water balance components measured by high precision lysimeters varied from the most eroded to the less eroded monolith up to 83 % (deep drainage) primarily caused due to varying amounts of precipitation and evapotranspiration for a 3-years period. Here, interactions between crop development and contrasting rainfall interception by above ground biomass could explain differences in water balance components. Concentrations of dissolved carbon in soil water samples were relatively constant in time, suggesting carbon leaching was mainly affected by water fluxes in this observation period. For the lysimeter-based water balance analysis, a filtering scheme was developed considering temporal autocorrelation. The minute-based autocorrelation analysis of mass changes from lysimeter time series revealed characteristic autocorrelation lengths ranging from 23 to 76 minutes. Thereby, temporal autocorrelation provided an optimal approximation of precipitation quantities. However, the high temporal resolution in lysimeter time series is restricted by the lengths of autocorrelation. Erosion-induced but also gradual changes in soil properties were reflected by dynamics of soil water retention properties in the lysimeter soils. Short-term and long-term hysteretic water retention data suggested seasonal wettability problems of soils increasingly limited rewetting of previously dried pore regions. Differences in water retention were assigned to soil tillage operations and the erosion history at different slope positions. The threedimensional spatial pattern of soil types that result from erosional soil profile modifications were also reflected in differences of crop root development at different landscape positions. Contrasting root densities revealed positive relations of root and aboveground plant characteristics. Differences in the spatially-distributed root growth between different eroded soil types provided indications that root development was affected by the erosion-induced soil evolution processes. Overall, the current thesis corroborated the hypothesis that erosion-induced soil profile modifications affect the soil water balance, carbon leaching and soil hydraulic properties, but also the crop root system is influenced by erosion-induced spatial patterns of soil properties in the arable hummocky post glacial soil landscape. The results will help to improve model predictions of water and solute movement in arable soils and to understand interactions between soil erosion and carbon pathways regarding sink-or-source terms in landscapes. N2 - Hydropedologische Wechselwirkungen zwischen Wasserflüssen und erosionsbedingten Veränderungen im Profilaufbau ackerbaulich genutzter Böden treten insbesondere in der Jungmoränenlandschaft auf, die sich durch eine überwiegend flachwellige bis kuppige Topographie auszeichnet. Mit der dynamischen Veränderung von Bodenprofilen, wie etwa der veränderten Solumtiefe und Horizontabfolgen, sowie deren Verteilungen in der Landschaft gehen Veränderungen in den bodenhydraulischen Eigenschaften einher. Über deren Auswirkungen auf den Wasser- und Stoffhaushalt ist bislang nur wenig bekannt. Im Rahmen dieser Dissertation wurden kontinuierliche Messungen aus vier Jahren (2011 bis 2014) unter Verwendung von wägbaren Lysimetern in der ackerbaulich genutzten Bodenlandschaft Nordostdeutschlands (Uckermark) erhoben. Dabei sollte die zentrale Frage, inwieweit die erosionsbedingte Pedogenese, in Wechselwirkung mit der pflanzenbaulichen Nutzung, den Wasser- und Kohlenstoffhaushalt beeinflusst, beantwortet werden. Ziel dieser Arbeit war es, 1D-Wasserflüsse und Austräge an gelöstem Kohlenstoff für unterschiedlich erodierte Bodenprofile zu quantifizieren. Damit einhergehend wurden Untersuchungen zu hydraulischen Bodeneigenschaften sowie möglichen Veränderungen im System Boden-Pflanze (Wurzeluntersuchungen) durchgeführt. Um derartige Veränderungen zwischen unterschiedlich erodierten Böden beschreiben zu können, wurden Bodenmonolithe in ungestörter Lagerung entnommen und in Lysimeteranlagen installiert. Zudem erfolgte eine Instrumentierung der einzelnen Lysimeter mit verschiedener Sensorik, u.a. um Wassergehalte und Matrixpotentiale zu messen. Für stoffhaushaltliche Untersuchungen wurden darüber hinaus Konzentrationen der gelösten Kohlenstofffraktion in der Bodenlösung in 14-tägigen Intervallen bestimmt. Der Wasserhaushalt von sechs gering bis stark erodierten Parabraunerden unterschied sich im Hinblick auf die bilanzierten Wasserhaushaltskomponenten deutlich. Anhand dieser Ergebnisse liegt die Vermutung nahe, dass die dynamischen Veränderungen im Gefüge- und Profilaufbau (in Abhängigkeit von der Bodenerosion) einen Effekt auf die Wasserbilanzen aufweisen. Über die mehrjährige Messperiode von 2011 bis 2014 konnte für das mit einer stark erodierten Parabraunerde gefüllte Lysimeter ein circa 83 Prozent höherer Abfluss als für das Lysimeter mit einer wenig erodierten Parabraunerde gemessen werden. Somit variierte der Abfluss am unteren Rand in Abhängigkeit zum Erosionsgrad. Neben dem unterschiedlichen Abflussverhalten variierten die Bodenmonolithe innerhalb der Lysimeter ebenfalls in den Evapotranspirations- und Niederschlagsmengen, hervorgerufenen durch die Differenzierung in den Horizontabfolgen, -mächtigkeiten und deren Einfluss auf die bodenhydraulischen Eigenschaften in Abhängigkeit vom Pflanzenbewuchs. Aufgrund der homogen verteilten Stoffkonzentrationen des gelösten organischen und anorganischen Kohlenstoffs am unteren Rand waren Kohlenstoffausträge maßgeblich von den Wasserflüssen abhängig. Als Grundlage der Lysimeter-basierten Wasserhaushaltsanalyse diente ein im Rahmen dieser Dissertation entwickeltes Auswertungsverfahren von kontinuierlichen Gewichtsänderungen unter Berücksichtigung der zeitlichen Autokorrelation. Um eine mögliche Periodizität in zeitlich hochaufgelösten Änderungen des Lysimeterwaagensystems zu ermitteln, fand eine Autokorrelationsfunktion in der Zeitreihenanalyse von vier saisonalen Messzeiträumen Anwendung. Die Ergebnisse der Arbeit deuten darauf hin, dass hochaufgelöste Lysimeterzeitreihen in einem Bereich von circa 30 min bis circa 60 min zeitlich autokorreliert sind. Die ermittelten Autokorrelationslängen bieten wiederum eine Möglichkeit zur Annäherung von (optimalen) Zeitintervallen für die Niederschlagsberechnung, basierend auf Änderungen in den Wiegedaten. Im Vergleich zu einem Kippwaagenregenmesser nahe der Lysimeterstation überstiegen die ermittelten Niederschlagsmengen der Lysimeter in Bodennähe die der in zwei Metern Höhe erfolgten Messung deutlich. Zur Charakterisierung der zeitlichen (Hysterese), als auch räumlichen (erosionsbedingter Pedogenese) Veränderungen der bodenhydraulischen Eigenschaften der Lysimeterböden wurden kontinuierliche Datenreihen des Wassergehaltes und Matrixpotentials analysiert. Die daraus abgeleiteten Wasserretentionskurven wurden in 3 Messtiefen (10, 30, 50 cm) unter Feldbedingungen ausgewertet und mit Labormessungen von Bodenkernen verglichen. Sowohl zwischen den unterschiedlich erodierten Bodenprofilen als auch zwischen den Feld- und Labormessungen waren Unterschiede in den Wasserretentionseigenschaften ersichtlich. Innerhalb eines Jahres (eingeschränkte Benetzbarkeit) sowie zwischen den Jahren (Veränderung der Porenmatrix) zeigten die Ergebnisse zudem eine zeitliche Veränderung der Wasserretentionseigenschaften. Diese dynamische Variabilität der Wasserretention wiederum unterliegt der räumlichen Heterogenität von Bodeneigenschaften, wie Textur und Lagerungsdichte. Für die Interpretation der unterschiedlichen bodenhydraulischen Eigenschaften sowie im Hinblick auf Veränderungen im Wasserhaushalt von ackerbaulich genutzten Lysimetern spielt das System Boden-Pflanze eine bedeutende Rolle. Diesbezüglich wurden Biomasse- und Wurzeluntersuchungen an unterschiedlich erodierten Böden durchgeführt. Die erzielten Ergebnisse verdeutlichen, dass erosionsbedingte Veränderungen im Profilaufbau beziehungsweise Horizonteigenschaften die Wurzelentwicklung beeinflussen können. Zudem stehen die Durchwurzelungsraten an grundwasserbeeinflussten Senkenstandorten in enger Beziehung zum Grundwasserstand (insbesondere im Frühjahr). Die oberirdisch beobachteten Unterschiede in der Biomasse korrelierten stark mit den ermittelten Wurzeldichten (Winterweizen), dies lässt vermuten, dass eine Abschätzung der Wurzelentwicklung mittels oberirdischer Biomasse möglich ist. Zusammenfassend zeigen die Ergebnisse der vorliegenden Lysimeterstudie komplexe Wechselwirkungen zwischen dem pedogenetischen Zustand erodierter Böden und dem Wasserhaushalt, den bodenhydraulischen Eigenschaften sowie der Wurzelentwicklung angebauter Kulturen. Zudem leisten die ermittelten unterschiedlichen Austragsraten an gelöstem Kohlenstoff einen Beitrag zur Abschätzung der langfristigen, in die Tiefe fortschreitenden Entkalkung sowie zur Beantwortung der Fragestellung, ob ackerbaulich genutzte Böden eher als Quell- oder als Senkenterm für Kohlendioxid fungieren. KW - Lysimeter KW - Wasserhaushalt KW - Kohlenstoff KW - lysimeter KW - water balance KW - carbon Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-408561 ER - TY - THES A1 - Eren, Enis Oğuzhan T1 - Covalent anode materials for high-energy sodium-ion batteries T1 - Kovalente Anodenmaterialien für hoch-energetische Natrium-Ionen-Batterien N2 - The reliance on fossil fuels has resulted in an abnormal increase in the concentration of greenhouse gases, contributing to the global climate crisis. In response, a rapid transition to renewable energy sources has begun, particularly lithium-ion batteries, playing a crucial role in the green energy transformation. However, concerns regarding the availability and geopolitical implications of lithium have prompted the exploration of alternative rechargeable battery systems, such as sodium-ion batteries. Sodium is significantly abundant and more homogeneously distributed in the crust and seawater, making it easier and less expensive to extract than lithium. However, because of the mysterious nature of its components, sodium-ion batteries are not yet sufficiently advanced to take the place of lithium-ion batteries. Specifically, sodium exhibits a more metallic character and a larger ionic radius, resulting in a different ion storage mechanism utilized in lithium-ion batteries. Innovations in synthetic methods, post-treatments, and interface engineering clearly demonstrate the significance of developing high-performance carbonaceous anode materials for sodium-ion batteries. The objective of this dissertation is to present a systematic approach for fabricating efficient, high-performance, and sustainable carbonaceous anode materials for sodium-ion batteries. This will involve a comprehensive investigation of different chemical environments and post-modification techniques as well. This dissertation focuses on three main objectives. Firstly, it explores the significance of post-synthetic methods in designing interfaces. A conformal carbon nitride coating is deposited through chemical vapor deposition on a carbon electrode as an artificial solid-electrolyte interface layer, resulting in improved electrochemical performance. The interaction between the carbon nitride artificial interface and the carbon electrode enhances initial Coulombic efficiency, rate performance, and total capacity. Secondly, a novel process for preparing sulfur-rich carbon as a high-performing anode material for sodium-ion batteries is presented. The method involves using an oligo-3,4-ethylenedioxythiophene precursor for high sulfur content hard carbon anode to investigate the sulfur heteroatom effect on the electrochemical sodium storage mechanism. By optimizing the condensation temperature, a significant transformation in the materials’ nanostructure is achieved, leading to improved electrochemical performance. The use of in-operando small-angle X-ray scattering provides valuable insights into the interaction between micropores and sodium ions during the electrochemical processes. Lastly, the development of high-capacity hard carbon, derived from 5-hydroxymethyl furfural, is examined. This carbon material exhibits exceptional performance at both low and high current densities. Extensive electrochemical and physicochemical characterizations shed light on the sodium storage mechanism concerning the chemical environment, establishing the material’s stability and potential applications in sodium-ion batteries. N2 - Die Abhängigkeit von fossilen Brennstoffen hat zu einem abnormalen Anstieg von Treibhausgasen in der Atmosphäre geführt, was zur globalen Klimakrise beiträgt. Als Reaktion darauf hat eine rasche Umstellung auf erneuerbare Energiequellen begonnen, insbesondere Lithium-Ionen-Batterien, die eine entscheidende Rolle in der grünen Energiewende spielen. Bedenken hinsichtlich der Verfügbarkeit und geopolitischen Implikationen von Lithium haben jedoch die Erforschung alternativer wiederaufladbarer Batteriesysteme wie Natrium-Ionen-Batterien angeregt. Natrium ist in der Erdkruste und im Meerwasser deutlich häufiger und gleichmäßiger verteilt, was seine Extraktion im Vergleich zu Lithium einfacher und kostengünstiger macht. Aufgrund der geheimnisvollen Natur ihrer Komponenten sind Natrium-Ionen-Batterien derzeit noch nicht ausreichend fortgeschritten, um Lithium-Ionen-Batterien zu ersetzen. Insbesondere weist Natrium einen stärker metallischen Charakter und einen größeren Ionenradius auf, was zu einem anderen Ionen-Speichermechanismus führt, der in Lithium-Ionen-Batterien verwendet wird. Innovationen in synthetischen, post-synthetischen Methoden und Schnittstellentechnik zeigen deutlich die Bedeutung der Entwicklung hochleistungsfähiger kohlenstoffhaltiger Anodenmaterialien für Natrium-Ionen-Batterien auf. Das Ziel dieser Dissertation ist es, einen systematischen Ansatz zur Herstellung effizienter, leistungsstarker und nachhaltiger kohlenstoffhaltiger Anodenmaterialien für Natrium-Ionen-Batterien zu untersuchen. Diese Dissertation konzentriert sich auf drei Hauptziele. Erstens untersucht sie die Bedeutung von post-synthetischen Methoden bei der Gestaltung von Schnittstellen. Eine konforme Kohlenstoffnitrid-Beschichtung wird durch chemische Gasphasenabscheidung auf einer Kohlenstoffelektrode als künstliche Festelektrolytschnittstelle abgeschieden, was zu einer verbesserten elektrochemischen Leistung führt. Die Wechselwirkung zwischen der künstlichen Kohlenstoffnitrid-Schnittstelle und der Kohlenstoffelektrode trägt zu einer verbesserten anfänglichen kolumbischen Effizienz, Leistung bei hohen Raten und Gesamtkapazität bei. Zweitens wird ein neuartiger Prozess zur Herstellung von schwefelreichem Kohlenstoff als hochleistungsfähiges Anodenmaterial für Natrium-Ionen-Batterien vorgestellt. Die Methode verwendet einen Oligo-3,4-ethylendioxythiophen-Vorläufer für eine harte Kohlenstoffanode mit hohem Schwefelgehalt, um den Effekt des Schwefelheteroatoms auf den elektrochemischen Natriumspeichermechanismus zu untersuchen. Durch Optimierung der Kondensationstemperatur wird eine bedeutende Transformation in der Nanostruktur des Materials erreicht, was zu einer verbesserten elektrochemischen Leistung führt. Der Einsatz von in-operando-Röntgenkleinwinkelstreuung liefert wertvolle Erkenntnisse über die Wechselwirkung zwischen Mikroporen und Natriumionen während der elektrochemischen Prozesse. Letzendlich wird die Entwicklung einer hochkapazitiven harten Kohlenstoffanode, die aus 5-Hydroxymethylfurfural gewonnen wird, untersucht. Dieses Kohlenstoffmaterial zeigt eine außergewöhnliche Leistung sowohl bei niedrigen als auch bei hohen Stromdichten. KW - sodium-ion battery KW - sulfur KW - carbon KW - CN KW - anode KW - in-operando SAXS KW - Kohlenstoffnitrid (CN) KW - Anode KW - Kohlenstoff KW - in-operando SAXS KW - Natrium-Ionen-Batterie KW - Schwefel Y1 - 2024 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-622585 ER - TY - JOUR A1 - Wolter, Juliane A1 - Lantuit, Hugues A1 - Wetterich, Sebastian A1 - Rethemeyer, Janet A1 - Fritz, Michael T1 - Climatic, geomorphologic and hydrologic perturbations as drivers for mid- to late Holocene development of ice-wedge polygons in the western Canadian Arctic JF - Permafrost and Periglacial Processes N2 - Ice-wedge polygons are widespread periglacial features and influence landscape hydrology and carbon storage. The influence of climate and topography on polygon development is not entirely clear, however, giving high uncertainties to projections of permafrost development. We studied the mid- to late Holocene development of modern ice-wedge polygon sites to explore drivers of change and reasons for long-term stability. We analyzed organic carbon, total nitrogen, stable carbon isotopes, grain size composition and plant macrofossils in six cores from three polygons. We found that ail sites developed from aquatic to wetland conditions. In the mid-Holocene, shallow lakes and partly submerged ice-wedge polygons existed at the studied sites. An erosional hiatus of ca 5000 years followed, and ice-wedge polygons re-initiated within the last millennium. Ice-wedge melt and surface drying during the last century were linked to climatic warming. The influence of climate on ice-wedge polygon development was outweighed by geomorphology during most of the late Holocene. Recent warming, however, caused ice-wedge degradation at all sites. Our study showed that where waterlogged ground was maintained, low-centered polygons persisted for millennia. Ice-wedge melt and increased drainage through geomorphic disturbance, however, triggered conversion into high-centered polygons and may lead to self-enhancing degradation under continued warming. KW - carbon KW - lowland coasts KW - permafrost degradation KW - plant macrofossil analysis KW - tundra vegetation KW - western Canadian Arctic Y1 - 2018 U6 - https://doi.org/10.1002/ppp.1977 SN - 1045-6740 SN - 1099-1530 VL - 29 IS - 3 SP - 164 EP - 181 PB - Wiley CY - Hoboken ER - TY - JOUR A1 - Ramachandran, Srikanthan A1 - Rupakheti, Maheswar A1 - Lawrence, Mark T1 - Black carbon dominates the aerosol absorption over the Indo-Gangetic Plain and the Himalayan foothills JF - Environment international : a journal of science, technology, health, monitoring and policy N2 - This study, based on new and high quality in situ observations, quantifies for the first time, the individual contributions of light-absorbing aerosols (black carbon (BC), brown carbon (BrC) and dust) to aerosol absorption over the Indo-Gangetic Plain (IGP) and the Himalayan foothill region, a relatively poorly studied region with several sensitive ecosystems of global importance, as well as highly vulnerable populations. The annual and seasonal average single scattering albedo (SSA) over Kathmandu is the lowest of all the locations. The SSA over Kathmandu is < 0.89 during all seasons, which confirms the dominance of light-absorbing carbonaceous aerosols from local and regional sources over Kathmandu. It is observed here that the SSA decreases with increasing elevation, confirming the dominance of light absorbing carbonaceous aerosols at higher elevations. In contrast, the SSA over the IGP does not exhibit a pronounced spatial variation. BC dominates (>= 75%) the aerosol absorption over the IGP and the Himalayan foothills throughout the year. Higher BC concentration at elevated locations in the Himalayas leads to lower SSA at elevated locations in the Himalayas. The contribution of dust to aerosol absorption is higher throughout the year over the IGP than over the Himalayan foothills. The aerosol absorption over South Asia is very high, exceeding available observations over East Asia, and also exceeds previous model estimates. This quantification will be valuable as observational constraints to help improve regional simulations of climate change, impacts on the glaciers and the hydrological cycle, and will help to direct the focus towards BC as the main contributor to aerosol-induced warming in the region. KW - atmospheric aerosols KW - characteristics KW - absorption KW - black carbon KW - brown KW - carbon KW - dust KW - Himalayas KW - IGP KW - South Asia Y1 - 2020 U6 - https://doi.org/10.1016/j.envint.2020.105814 SN - 0160-4120 SN - 1873-6750 VL - 142 PB - Elsevier CY - Oxford ER - TY - THES A1 - Schipper, Florian T1 - Biomass derived carbon for new energy storage technologies N2 - The thesis deals with the production and evaluation of porous carbon materials for energy storage technologies, namely super capacitors and lithium sulfur batteries. N2 - Die Doktorarbeit befasst sich mit der Produktion und Evaluierung poröser Kohlenstoffmaterialien für die Anwendung in Energiespeichertechnologien, namentlich Superkondensatoren und Lithiumschwefelbatterien. T2 - Biomasse basierende Kohlenstoffe für neue Energiespeichertechnologien KW - Batterien KW - Superkondensatoren KW - Energiespeicher KW - Lithium-Schwefel-Batterien KW - Kohlenstoff KW - battery KW - supercapacitors KW - energy storage KW - lithium sulfur battery KW - carbon Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-72045 ER - TY - GEN A1 - Frieler, Katja A1 - Levermann, Anders A1 - Elliott, J. A1 - Heinke, J. A1 - Arneth, A. A1 - Bierkens, M. F. P. A1 - Ciais, Philippe A1 - Clark, D. B. A1 - Deryng, D. A1 - Doell, P. A1 - Falloon, P. A1 - Fekete, B. A1 - Folberth, Christian A1 - Friend, A. D. A1 - Gellhorn, C. A1 - Gosling, S. N. A1 - Haddeland, I. A1 - Khabarov, N. A1 - Lomas, M. A1 - Masaki, Y. A1 - Nishina, K. A1 - Neumann, K. A1 - Oki, T. A1 - Pavlick, R. A1 - Ruane, A. C. A1 - Schmid, E. A1 - Schmitz, C. A1 - Stacke, T. A1 - Stehfest, E. A1 - Tang, Q. A1 - Wisser, D. A1 - Huber, V. A1 - Piontek, Franziska A1 - Warszawski, L. A1 - Schewe, Jacob A1 - Lotze-Campen, Hermann A1 - Schellnhuber, Hans Joachim T1 - A framework for the cross-sectoral integration of multi-model impact projections BT - land use decisions under climate impacts uncertainties T2 - Earth system dynamics N2 - Climate change and its impacts already pose considerable challenges for societies that will further increase with global warming (IPCC, 2014a, b). Uncertainties of the climatic response to greenhouse gas emissions include the potential passing of large-scale tipping points (e.g. Lenton et al., 2008; Levermann et al., 2012; Schellnhuber, 2010) and changes in extreme meteorological events (Field et al., 2012) with complex impacts on societies (Hallegatte et al., 2013). Thus climate change mitigation is considered a necessary societal response for avoiding uncontrollable impacts (Conference of the Parties, 2010). On the other hand, large-scale climate change mitigation itself implies fundamental changes in, for example, the global energy system. The associated challenges come on top of others that derive from equally important ethical imperatives like the fulfilment of increasing food demand that may draw on the same resources. For example, ensuring food security for a growing population may require an expansion of cropland, thereby reducing natural carbon sinks or the area available for bio-energy production. So far, available studies addressing this problem have relied on individual impact models, ignoring uncertainty in crop model and biome model projections. Here, we propose a probabilistic decision framework that allows for an evaluation of agricultural management and mitigation options in a multi-impact-model setting. Based on simulations generated within the Inter-Sectoral Impact Model Intercomparison Project (ISI-MIP), we outline how cross-sectorally consistent multi-model impact simulations could be used to generate the information required for robust decision making. Using an illustrative future land use pattern, we discuss the trade-off between potential gains in crop production and associated losses in natural carbon sinks in the new multiple crop-and biome-model setting. In addition, crop and water model simulations are combined to explore irrigation increases as one possible measure of agricultural intensification that could limit the expansion of cropland required in response to climate change and growing food demand. This example shows that current impact model uncertainties pose an important challenge to long-term mitigation planning and must not be ignored in long-term strategic decision making. T3 - Zweitveröffentlichungen der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe - 457 KW - global food demand KW - water availability KW - elevated CO2 KW - future KW - carbon KW - system KW - productivity KW - agriculture KW - emissions KW - scarcity Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-407968 ER -