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Metagenomics reveal the mechanisms of integrated heterotrophic and sulfur autotrophic denitrification (HSAD) using PBAT/starch as carbon source

文献类型: 外文期刊

作者: Deng, Yale 1 ; Li, Junchi 1 ; Taherzadeh, Mohammad J. 4 ; Lu, Huifeng 5 ; Kong, Dedong 6 ; Ma, Bin 7 ; Hu, Yiming 1 ; Chen, Guangsuo 2 ; Ruan, Yunjie 1 ;

作者机构: 1.Zhejiang Univ, Inst Agr Bioenvironm Engn, Coll Biosyst Engn & Food Sci, Hangzhou 310058, Peoples R China

2.Zhejiang Univ, Rural Dev Acad, Hangzhou 310058, Peoples R China

3.Univ Minnesota, Dept Vet Populat Med, St Paul, ID 55108 USA

4.Univ Boras, Swedish Ctr Resource Recovery, S-50190 Boras, Sweden

5.Zhejiang Water Healer Environm Technol Co Ltd, Hangzhou 313299, Peoples R China

6.Zhejiang Acad Agr Sci, Inst Digital Agr, Hangzhou 310021, Peoples R China

7.Zhejiang Univ, Inst Soil & Water Resources & Environm Sci, Coll Environm & Resource Sci, Hangzhou 310058, Peoples R China

关键词: Heterotrophic sulfur autotrophic denitrification; Salinity; Metagenomics; Metatranscriptomics; Functional genes

期刊名称:JOURNAL OF HAZARDOUS MATERIALS ( 影响因子:11.3; 五年影响因子:12.4 )

ISSN: 0304-3894

年卷期: 2025 年 495 卷

页码:

收录情况: SCI

摘要: The accumulation of nitrate in recirculating aquaculture system constrains the sustainable development of aquaculture industry. This study evaluated the performance of two heterotrophic sulfur autotrophic denitrification (HSAD) reactors packed with PBAT/starch granules and supplemented with thiosulfate in the influent, operating at salinities of 0 %o (Reactor I) and 25 %o (Reactor II) over a 163-day period. Reactor I achieved an average nitrate removal rate of 0.17 kg/m3/d with minimal accumulation of nitrite, total ammonia nitrogen (TAN) and dissolved organic carbon (DOC). In contrast, Reactor II exhibited a slower start-up, a lower denitrification rate of 0.08 kg/m3/d, and higher fluctuations in water quality parameters. Over time, both reactors transitioned from heterotrophic to sulfur autotrophic denitrification, as evidenced by increased effluent sulfate concentration, acidification and a decline in microbial biomass. Metagenomics and metatranscriptomics analyses revealed the coexistence of autotropic and heterotrophic denitrifying bacteria, with salinity inhibiting the abundance of denitrifying bacteria and expression of functional genes associated with nitrogen and sulfur metabolism. Network analysis further identified positive correlations among microorganisms involved in carbon, nitrogen and sulfur cycling. This study provides insights into the microbial mechanisms in HSAD process and offers a promising approach for the treatment of nitrate-rich aquaculture wastewater.

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