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Prediction of wastewater quality using amperometric bioelectronic tongues

  • Wastewater samples from a Swedish chemi-thermo-mechanical pulp (CTMP) mill collected at different purification stages in a wastewater treatment plant (WWTP) were analyzed with an amperometric enzyme-based biosensor array in a flow-injection system. In order to resolve the complex composition of the wastewater, the array consists of several sensing elements which yield a multidimensional response. We used principal component analysis (PCA) to decompose the array's responses, and found that wastewater with different degrees of pollution can be differentiated. With the help of partial least squares regression (PLS-R), we could link the sensor responses to the toxicity parameter, as well as to global organic pollution parameters (COD, BOD, and TOC). From investigating the influences of individual sensors in the array, it was found that the best models were in most cases obtained when all sensors in the array were included in the PLS-R model. We find that fast simultaneous determination of several global environmental parametersWastewater samples from a Swedish chemi-thermo-mechanical pulp (CTMP) mill collected at different purification stages in a wastewater treatment plant (WWTP) were analyzed with an amperometric enzyme-based biosensor array in a flow-injection system. In order to resolve the complex composition of the wastewater, the array consists of several sensing elements which yield a multidimensional response. We used principal component analysis (PCA) to decompose the array's responses, and found that wastewater with different degrees of pollution can be differentiated. With the help of partial least squares regression (PLS-R), we could link the sensor responses to the toxicity parameter, as well as to global organic pollution parameters (COD, BOD, and TOC). From investigating the influences of individual sensors in the array, it was found that the best models were in most cases obtained when all sensors in the array were included in the PLS-R model. We find that fast simultaneous determination of several global environmental parameters characterizing wastewaters is possible with this kind of biosensor array, in particular because of the link between the sensor responses and the biological effect onto the ecosystem into which the wastewater would be released. In conjunction with multivariate data analysis tools, there is strong potential to reduce the total time until a result is yielded from days to a few minutes.zeige mehrzeige weniger

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Metadaten
Verfasserangaben:Ilja Czolkos, Eva Dock, Erik Tonning, Jakob Christensen, Margrethe Winther-Nielsen, Charlotte Carlsson, Renata Mojzikova, Petr Skladal, Ursula WollenbergerORCiDGND, Lars Norgaard, Tautgirdas Ruzgas, Jenny Emneus
DOI:https://doi.org/10.1016/j.bios.2015.08.055
ISSN:0956-5663
ISSN:1873-4235
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/26342573
Titel des übergeordneten Werks (Englisch):Marine policy
Verlag:Elsevier
Verlagsort:Oxford
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Jahr der Erstveröffentlichung:2016
Erscheinungsjahr:2016
Datum der Freischaltung:22.03.2020
Freies Schlagwort / Tag:Amperometric sensor; Biosensor array; Chemometrics; Electronic tongue; Multivariate data analysis; Phenolic compounds; Screen-printed electrode; Toxicity; Wastewater
Band:75
Seitenanzahl:8
Erste Seite:375
Letzte Seite:382
Fördernde Institution:European Commission [IntelliSens: QLK3-2000-01481]; Swedish Research Council (Vetenskapsradet)
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
Peer Review:Referiert
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