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Effect of Cobalt, Nickel, and Selenium/Tungsten Deficiency on Mesophilic Anaerobic Digestion of Chemically Defined Soluble Organic Compounds
Linköping University, Department of Thematic Studies, Tema Environmental Change. Linköping University, Faculty of Arts and Sciences. (Biogas Research Center)
Linköping University, Department of Thematic Studies, Tema Environmental Change. Linköping University, Faculty of Arts and Sciences. (Biogas Research Center)
Linköping University, Department of Thematic Studies, Tema Environmental Change. Linköping University, Faculty of Arts and Sciences. (Biogas Research Center)
Linköping University, Department of Thematic Studies, Tema Environmental Change. Linköping University, Faculty of Arts and Sciences. Department of Molecular Science, Swedish University of Agricultural Science, Uppsala BioCenter, Uppsala, Sweden. (Biogas Research Center)ORCID iD: 0000-0003-0038-553X
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2020 (English)In: Microorganisms, E-ISSN 2076-2607, Vol. 8, no 4, article id 598Article in journal (Refereed) Published
Abstract [en]

Trace elements (TEs) are vital for anaerobic digestion (AD), due to their role as cofactors in many key enzymes. The aim of this study was to evaluate the effects of specific TE deficiencies on mixed microbial communities during AD of soluble polymer-free substrates, thus focusing on AD after hydrolysis. Three mesophilic (37 degrees C) continuous stirred-tank biogas reactors were depleted either of Co, Ni, or a combination of Se and W, respectively, by discontinuing their supplementation. Ni and Se/W depletion led to changes in methane kinetics, linked to progressive volatile fatty acid (VFA) accumulation, eventually resulting in process failure. No significant changes occurred in the Co-depleted reactor, indicating that the amount of Co present in the substrate in absence of supplementation was sufficient to maintain process stability. Archaeal communities remained fairly stable independent of TE concentrations, while bacterial communities gradually changed with VFA accumulation in Ni- and Se-/W-depleted reactors. Despite this, the communities remained relatively similar between these two reactors, suggesting that the major shifts in composition likely occurred due to the accumulating VFAs. Overall, the results indicate that Ni and Se/W depletion primarily lead to slower metabolic activities of methanogenic archaea and their syntrophic partners, which then has a ripple effect throughout the microbial community due to a gradual accumulation of intermediate fermentation products.

Place, publisher, year, edition, pages
MDPI, 2020. Vol. 8, no 4, article id 598
Keywords [en]
artificial substrate; biogas; trace elements; micronutrients; volatile fatty acids; kinetics
National Category
Microbiology
Identifiers
URN: urn:nbn:se:liu:diva-166118DOI: 10.3390/microorganisms8040598ISI: 000533510400125PubMedID: 32326100Scopus ID: 2-s2.0-85084003099OAI: oai:DiVA.org:liu-166118DiVA, id: diva2:1437071
Note

Funding Agencies|European Unions Seventh Framework Programme for research, technological development and demonstrationEuropean Union (EU) [316838]; Swedish Research Council Formas (Svenska Forskningsradet Formas)Swedish Research Council Formas [2016-01054]; Biogas Research Centre - Linkoping University; Swedish Energy Agency (Energimyndigheten)Swedish Energy Agency [35624-2]; Swedish Research CouncilSwedish Research Council; Knut and Alice Wallenberg FoundationKnut & Alice Wallenberg Foundation

Available from: 2020-06-08 Created: 2020-06-08 Last updated: 2023-12-28Bibliographically approved

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Safaric, LukaShakeri Yekta, SepehrSvensson, Bo H.Bastviken, DavidBjörn (Fredriksson), Annika

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Safaric, LukaShakeri Yekta, SepehrSvensson, Bo H.Schnürer, AnnaBastviken, DavidBjörn (Fredriksson), Annika
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Tema Environmental ChangeFaculty of Arts and Sciences
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