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基于微生物诱导碳酸钙沉淀的生物膜反应器中同时去除氨氮、钙和镉:条件优化、机制和群落生物响应。

Simultaneous removal of ammonia nitrogen, calcium and cadmium in a biofilm reactor based on microbial-induced calcium precipitation: Optimization of conditions, mechanism and community biological response.

机构信息

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an, 710055, China; Shaanxi Key Laboratory of Environmental Engineering, Xi'an University of Architecture and Technology, Xi'an, 710055, China.

College of Environmental Science & Engineering, Yancheng Institute of Technology, Yancheng, 224051, China.

出版信息

J Environ Manage. 2024 May;358:120912. doi: 10.1016/j.jenvman.2024.120912. Epub 2024 Apr 17.

Abstract

With the enhancement of environmental governance regulations, the discharge requirements for reverse osmosis wastewater have become increasingly stringent. This study proposes an innovative approach utilizing heterotrophic nitrification and aerobic denitrification (HNAD)-based biomineralization technology, combined with coconut palm silk loaded biochar, to offer a novel solution for resource-efficient and eco-friendly treatment of reverse osmosis wastewater. Zobellella denitrificans sp. LX16 were loaded onto modified coir silk and showed removal efficiencies of up to 97.38, 94.58, 86.24, and 100% for NH-N (65 mg L), COD (900 mg L), Ca (180 mg L), and Cd (25 mg L). Analysis of the metabolites of microorganisms reveals that coconut palm silk loaded with deciduous biochar (BCPS) not only exerts a protective effect on microorganisms, but also enhances their growth, metabolism, and electron transfer capabilities. Characterization of precipitation phenomena elucidated the mechanism of Cd removal via ion exchange, precipitation, and adsorption. Employing high-throughput and KEGG functional analyses has confirmed the biota environmental response strategies and the identification of key genes like HNAD.

摘要

随着环境治理法规的加强,反渗透废水的排放要求变得越来越严格。本研究提出了一种利用异养硝化和好氧反硝化(HNAD)基生物矿化技术,结合椰棕丝负载生物炭的创新方法,为反渗透废水的资源高效和环保处理提供了一种新的解决方案。将 Zobellella denitrificans sp. LX16 负载到改性椰棕丝上,对 NH-N(65mg/L)、COD(900mg/L)、Ca(180mg/L)和 Cd(25mg/L)的去除效率高达 97.38%、94.58%、86.24%和 100%。对微生物代谢产物的分析表明,负载落叶生物炭的椰棕丝(BCPS)不仅对微生物起到保护作用,而且还能增强其生长、代谢和电子传递能力。沉淀现象的特征分析阐明了通过离子交换、沉淀和吸附去除 Cd 的机制。高通量和 KEGG 功能分析证实了生物群的环境响应策略以及 HNAD 等关键基因的鉴定。

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