电子转移
氧化还原
反硝化
化学
电子传输链
细胞外
聚苯胺
生物物理学
硝酸还原酶
生物化学
光化学
聚合物
无机化学
有机化学
聚合
酶
生物
氮气
作者
Tingting Guo,Caicai Lu,Zhi Chen,Yuanyuan Song,Haibo Li,Yuechen Han,Yanan Hou,Yuan Zhang,Jianbo Guo
出处
期刊:Chemosphere
[Elsevier]
日期:2022-05-01
卷期号:295: 133865-133865
被引量:7
标识
DOI:10.1016/j.chemosphere.2022.133865
摘要
Intrinsically conductive polymers, polyaniline and polyaniline sulfonate (PASAni) were used to explore their effect on denitrification. Denitrification was accelerated 1.90 times by 2 mM PASAni and the possible mechanisms were mainly attributed to the accelerated electron transfer and the enhanced microbial metabolism activity. Intracellular electron transfer was accelerated by PASAni and the acceleration sites were from NADH to coenzyme Q (CoQ), quinone loop, from Complex II to CoQ and from QH2 to Cyt. c1. Extracellular electron transfer was accelerated because PASAni promoted more secretion of redox species and PASAni embedded in extracellular polymeric substance (EPS). Moreover, PASAni itselfprovided more electron transfer pathways as redox species. Microbial metabolism activity was also enhanced by PASAni, which was reflected in the increased nitrate/nitrite reductase activity (236.13/155.43%), electron transfer system activity (112.49%), adenosine triphosphate level (133.41%) and EPS content (189.06%). Besides, the enriched Proteobacteria in PASAni supplement system was also conducive to denitrification. This work provided fundamental information for conductive polymers mediating microbial electron transfer and enhancing contaminants biotransformation.
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