硫黄
环境化学
生物修复
污染物
硫代谢
微生物
微生物降解
污染
环境科学
化学
环境污染
污水处理
微生物生态学
微生物代谢
生态学
环境工程
环境保护
生物
细菌
污染
有机化学
遗传学
作者
Bo Wu,Feifei Liu,Wenwen Fang,Tony Yang,Guanghao Chen,Zhili He,Shanquan Wang
标识
DOI:10.1016/j.scitotenv.2021.146085
摘要
Sulfur as a macroelement plays an important role in biochemistry in both natural environments and engineering biosystems, which can be further linked to other important element cycles, e.g. carbon, nitrogen and iron. Consequently, the sulfur cycling primarily mediated by sulfur compounds oxidizing microorganisms and sulfur compounds reducing microorganisms has enormous environmental implications, particularly in wastewater treatment and pollution bioremediation. In this review, to connect the knowledge in microbial sulfur metabolism to environmental applications, we first comprehensively review recent advances in understanding microbial sulfur metabolisms at molecular-, cellular- and ecosystem-levels, together with their energetics. We then discuss the environmental implications to fight against soil and water pollution, with four foci: (1) acid mine drainage, (2) water blackening and odorization in urban rivers, (3) SANI® and DS-EBPR processes for sewage treatment, and (4) bioremediation of persistent organic pollutants. In addition, major challenges and further developments toward elucidation of microbial sulfur metabolisms and their environmental applications are identified and discussed.
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