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不同碳源对硫氧化反硝化微生物效率的影响。

Effects of different carbon sources on the efficiency of sulfur-oxidizing denitrifying microorganisms.

机构信息

State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin, 150090, China.

Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, 300308, China.

出版信息

Environ Res. 2022 Mar;204(Pt A):111946. doi: 10.1016/j.envres.2021.111946. Epub 2021 Aug 25.

Abstract

This study aims to compare the effects of different carbon sources on sulfur-oxidizing denitrifying microorganisms by using glucose, ethanol, and acetate as carbon sources. Under the same chemical oxygen demand Cr (COD), nitrate, and sulfide concentrations, the removal rate of nitrate and total organic carbon, and the yield of elemental sulfur in a static experiment and a continuous flow reactor with glucose as the carbon source were lower than those with ethanol and acetic acid as the carbon source. The core sulfur-oxidizing denitrifying bacteria that use glucose as the carbon source were Azoarcus, Geoalkalibacter, and Mangroviflexus; those that use ethanol as the carbon source were Arcobacter, Pseudomonas, and Thauera; those that use acetate as the carbon source were Pseudomonas and Azoarcus. The metabolic activity of microorganisms that use different carbon sources was explained by functional gene detection. The fluctuation of gltA, a functional gene indicating heterotrophic metabolism of microorganisms, was small in three reactors, but that of the sulfur oxidation gene, Sqr, in the reactor with acetic acid as the carbon source was larger. Our results suggest that acetate is a more suitable carbon source for denitrification-desulfurization systems.

摘要

本研究旨在通过以葡萄糖、乙醇和乙酸作为碳源,比较不同碳源对硫氧化反硝化微生物的影响。在相同的化学需氧量 Cr(COD)、硝酸盐和硫化物浓度下,以葡萄糖作为碳源的静态实验和连续流反应器中,硝酸盐和总有机碳的去除率以及元素硫的产率均低于以乙醇和乙酸作为碳源的情况。以葡萄糖作为碳源的核心硫氧化反硝化细菌为 Azoarcus、Geoalkalibacter 和 Mangroviflexus;以乙醇作为碳源的核心硫氧化反硝化细菌为 Arcobacter、Pseudomonas 和 Thauera;以乙酸作为碳源的核心硫氧化反硝化细菌为 Pseudomonas 和 Azoarcus。通过功能基因检测解释了使用不同碳源的微生物的代谢活性。在三个反应器中,指示微生物异养代谢的功能基因 gltA 的波动都较小,但以乙酸作为碳源的反应器中硫氧化基因 Sqr 的波动较大。我们的结果表明,乙酸是更适合用于脱氮脱硫系统的碳源。

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