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不同 pH 值条件下生物膜生长对脱硫反应器中硫氧化途径和微生物协同作用的影响。

The effect of biofilm growth on the sulfur oxidation pathway and the synergy of microorganisms in desulfurization reactors under different pH conditions.

作者信息

Jia Tipei, Zhang Liang, Zhao Qi, Peng Yongzhen

机构信息

National Engineering Laboratory for Advanced Municipal Wastewater Treatment and Reuse Technology, Engineering Research Center of Beijing, Beijing University of Technology, Beijing 100124, China.

National Engineering Laboratory for Advanced Municipal Wastewater Treatment and Reuse Technology, Engineering Research Center of Beijing, Beijing University of Technology, Beijing 100124, China.

出版信息

J Hazard Mater. 2022 Jun 15;432:128638. doi: 10.1016/j.jhazmat.2022.128638. Epub 2022 Mar 7.

Abstract

Biofilm growth affects the oxygen transfer in biofilm and thus the oxidation pathway of sulfur and the synergy of microorganisms. In this study, the effect of biofilm growth on the oxidation pathway of HS and the synergy of microorganisms in desulfurization reactors under different pH conditions was first discussed to enhance the understanding of desulfurization process. A biotrickling filter (BTF) was operated for 168 days under acidic condition (pH<4.7) and 32 days under alkaline condition (7.0 <pH<10.2). In acidic period, the average growth mass (AGM) of biofilm was 0.04 g/L-BTF/d, and most of S-HS was converted to S-SO (>89.0%). In alkaline period, the AGM raised to 0.97 g/L-BTF/d, and 77.0% of S-HS was transferred to elemental sulfur (S) and polysulfanes (R-S-R) accumulated in biofilm. The increase of biofilm and sulfur-oxidizing bacteria activity limited the oxygen transfer in alkaline biofilm, leading to the accumulation of S and the emergence of an obligate anaerobe- Acetoanaerobium (8.1%). The formation of R-S-R may be due to the reaction of S with thiols produced by a thiol-producing bacterium- Pseudomonas (6.7%). The uneven distribution of oxygen in biofilm caused by biofilm growth complicated the transfer pathway of sulfur and the synergy of microorganisms in desulfurization system.

摘要

生物膜的生长会影响生物膜内的氧气转移,从而影响硫的氧化途径和微生物的协同作用。本研究首先探讨了生物膜生长对不同 pH 值条件下脱硫反应器中 HS 氧化途径和微生物协同作用的影响,以增强对脱硫过程的理解。生物滴滤器(BTF)在酸性条件(pH<4.7)下运行了 168 天,在碱性条件(7.0<pH<10.2)下运行了 32 天。在酸性条件下,生物膜的平均生长量(AGM)为 0.04 g/L-BTF/d,大部分 S-HS 被转化为 S-SO (>89.0%)。在碱性条件下,AGM 上升到 0.97 g/L-BTF/d,77.0%的 S-HS 被转化为单质硫(S)和聚硫烷(R-S-R)并在生物膜中积累。生物膜和硫氧化菌活性的增加限制了碱性生物膜内的氧气转移,导致 S 的积累和专性厌氧菌-产乙酸菌(8.1%)的出现。R-S-R 的形成可能是由于 S 与产硫菌-假单胞菌(6.7%)产生的硫醇发生反应所致。生物膜生长引起的生物膜内氧气分布不均匀,使脱硫系统中硫的转移途径和微生物的协同作用变得复杂。

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