Adaptation of Sulfate-Reducing Bacteria to Sulfide Exposure

Journal Article (2016)
Author(s)

Tessa P H Van Den Brand (KWR Water Research Institute)

Kees Roest (KWR Water Research Institute)

Guanghao Chen (The Hong Kong University of Science and Technology)

D Brdjanovic (IHE Delft Institute for Water Education)

Mark M.C. van Loosdrecht (TU Delft - BT/Environmental Biotechnology, KWR Water Research Institute)

Research Group
BT/Environmental Biotechnology
DOI related publication
https://doi.org/10.1089/ees.2015.0208
More Info
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Publication Year
2016
Language
English
Research Group
BT/Environmental Biotechnology
Issue number
4
Volume number
33
Pages (from-to)
242-249

Abstract

Sulfate-reducing bacteria (SRB) can beneficially be applied to domestic wastewater treatment. In general, formed sulfide will stay in liquid phase, resulting in an elevated sulfide content, which might have inhibiting effects on the SRB. To study effects of environmental conditions on the SRB resistance against sulfide, two sequencing batch reactors fed with artificial domestic wastewater were operated at sulfate-reducing conditions. Required sulfide concentration within the reactor was achieved by adding 400 or 800 mg COD/L (acetate and propionate), the latter resulting in proportionally more sulfide production. Batch tests revealed that sulfide inhibited the rate of sulfate reduction by 50% at a concentration of 200 mg/L sulfide for biomass from the reactor fed with 400 mg COD/L. After adaptation to a feed of 800 mg COD/L, resulting in higher sulfide exposures, sulfide was less inhibitive to SRB. Complete COD removal was achieved in the reactor fed with 800 mg COD/L, and the SRB population changed from one (Desulfotalea arctica) to two (Desulfobacter postgatei and Desulfocapsa sulfexigens) dominant species. Results indicate that SRB are capable of adapting to higher sulfide exposure. Therefore, the SRB can also be applied to treat wastewater with higher COD levels, blackwater for instance.

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