Impact of Different Sulfur Sources on the Structure and Function of Sulfur Autotrophic Denitrification Bacteria

Author:

Chen Zhenguo1,Lou Minlan2,Fang Peizhen3,Xiao Dunquan3,Zhu Wenting4,Chen Hongwei2,Qian Wei2

Affiliation:

1. Suzhou Fangzhou Environmental Protection Technology Co., Ltd

2. Suzhou University of Science and Technology

3. Zhejiang Construction Environmental Protection Engineering Co., Ltd

4. Suzhou Polytechnic Institute of Agriculture

Abstract

Abstract Nitrate pollution in surface water has become a significant environmental concern. Sulfur autotrophic denitrification (SAD) technology is gaining attention for its cost-effectiveness and efficiency in nitrate removal. This study aimed to investigate the structure and function of sulfur autotrophic denitrification microbial communities in systems using sodium thiosulfate (Group A) and elemental sulfur (Group B) as the sole electron donors. Metagenomic amplicon sequencing and physicochemical analysis were performed to examine the microbial communities. The results revealed that on day 13, the nitrate nitrogen removal rate in Group A was significantly higher (89.2%) compared to Group B (74.4%). The dominant genus in both Groups was Thiobacillus, with average abundances of 34.15% and 16.34% in Groups A and B, respectively. β-diversity analysis based on species level showed significant differences in bacterial community structure between the two Groups (P < 0.001). Group A exhibited a greater potential for nitrate reduction and utilized both thiosulfate and elemental sulfur (P < 0.01) compared to Group B. This study provides valuable technical insights into applying autotrophic denitrification with different sulfur sources and offers new prospects for in-depth mechanistic analysis.

Publisher

Research Square Platform LLC

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