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Mechanisms of anaerobic treatment of sulfate-containing organic wastewater mediated by Fe0 under different initial pH values.

Authors :
Li, Ke
Ji, Linyu
Gao, Meng
Liang, Qiaochu
Lan, Huixia
Lu, Weiwei
Zhang, Wudi
Zhang, Yang
Source :
Bioprocess & Biosystems Engineering; Mar2024, Vol. 47 Issue 3, p417-427, 11p
Publication Year :
2024

Abstract

The anaerobic treatment of sulfide-containing organic wastewater (SCOW) is significantly affected by pH, causing dramatic decrease of treatment efficiency when pH deviates from its appropriate range. Fe<superscript>0</superscript> has proved as an effective strategy on mitigating the impact of pH. However, systematic analysis of the influence mechanism is still lacking. To fill this gap, the impact of different initial pH values on anaerobic treatment efficiency of SCOW with Fe<superscript>0</superscript> addition, the change of fermentation type and methanogens, and intra-extracellular electron transfer were explored in this study. The results showed that Fe<superscript>0</superscript> addition enhanced the efficacy of anaerobic treatment of SCOW at adjusted initial pH values, especially at pH 6. Mechanism analysis showed that respiratory chain-related enzymes and electron shuttle secretion and resistance reduction were stimulated by soluble iron ions generated by Fe<superscript>0</superscript> at pH 6, which accelerated intra-extracellular electron transfer of microorganisms, and ultimately alleviated the impact of acidic pH on the system. While at pH 8, Fe<superscript>0</superscript> addition increased the acetogenic bacteria abundance, as well as optimized the fermentation type and improved the F420 coenzyme activity, resulting in the enhancement of treatment efficiency in the anaerobic system and remission of the effect of alkaline pH on the system. At the neutral pH, Fe<superscript>0</superscript> addition had both advantages as stimulating the secretion of respiratory chain and electron transfer-related enzymes at pH 6 and optimizing the fermentation type pH 8, and thus enhanced the treatment efficacy. This study provides important insights and scientific basis for the application of new SCOW treatment technologies. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16157591
Volume :
47
Issue :
3
Database :
Complementary Index
Journal :
Bioprocess & Biosystems Engineering
Publication Type :
Academic Journal
Accession number :
176032905
Full Text :
https://doi.org/10.1007/s00449-024-02974-w