Suppr超能文献

改良型地下污水渗滤系统中的氮去除:机制、微生物指标及磷的局限性

Nitrogen removal in improved subsurface wastewater infiltration system: Mechanism, microbial indicators and the limitation of phosphorus.

作者信息

Jia Liping, Cheng Xuelin, Fang Linchuan, Huang Xuguang

机构信息

College of Chemistry and Environmental Science, Minnan Normal University, Zhangzhou, 363000, China.

CAS Center for Excellence in Quaternary Science and Global Change, Xi'an, 710061, China.

出版信息

J Environ Manage. 2023 Jun 1;335:117456. doi: 10.1016/j.jenvman.2023.117456. Epub 2023 Feb 21.

Abstract

To enhance the nitrogen removal capacity, scrap iron filings and Si-Al porous clay mineral material (PCMW) was used to improve a subsurface wastewater infiltration system (SWIS). The results showed TN and NH-N removal efficiencies of improved SWIS were 20.72% and 5.49% higher than those of the control SWIS, respectively. Based on the response of the removal performance, microbial community and function analysis of 16s rRNA amplicon sequencing results, the amending soil matrix substantially enriched the nitrogen removal bacteria (Rhizobiales_Incertae_Sedis and Gemmatimonadaceae), and significantly improved the activities of key enzymes (Hao, NasAB, NarGHI, NirK, NorBC, NirA and NirBD), particularly at co-occurrence zone of nitrification and denitrification (70-130 cm depth). The amending soil matrix not only extended the growth space of microbes, but also provided additional electrons and carbon sources for denitrifying bacteria by regulating the structure and function of the microbial community. In addition, amending soil matrix could enhance phosphate metabolism genes and phosphate solubilizing microbes in the denitrification zone by increasing the phosphorus source, thus strengthening nitrogen metabolism. Nitrospiraceae, Rhizobiales_Incertae_Sedis and Gemmatimonadaceae related to nitrogen removal and Bacillaceae with phosphate-solubilizing ability could be used as microbial indicators of nitrogen removal in SWISs. The reciprocal action of environmental on microbial characteristics exhibited microbial functional were related to DO, Fe, TOC, TP, TN, NH-N and NO-N. Those could be used as physicochemical and biological indicators for application and monitoring of SWIS. In conclusion, this study provided a low-cost and efficient enhancement approach for the application of SWIS in decentralized domestic sewage treatment, and furnished theoretical support for subsequent applications.

摘要

为提高脱氮能力,采用废铁屑和硅铝多孔粘土矿物材料(PCMW)对地下污水渗滤系统(SWIS)进行改良。结果表明,改良后的SWIS对TN和NH-N的去除效率分别比对照SWIS高20.72%和5.49%。基于去除性能响应、微生物群落及16s rRNA扩增子测序结果的功能分析,改良土壤基质显著富集了脱氮细菌(根瘤菌目未定类和芽单胞菌科),并显著提高了关键酶(Hao、NasAB、NarGHI、NirK、NorBC、NirA和NirBD)的活性,尤其是在硝化和反硝化共生区(70-130厘米深度)。改良土壤基质不仅扩展了微生物的生长空间,还通过调节微生物群落的结构和功能为反硝化细菌提供了额外的电子和碳源。此外,改良土壤基质可通过增加磷源增强反硝化区的磷酸盐代谢基因和溶磷微生物,从而强化氮代谢。与脱氮相关的硝化螺旋菌科、根瘤菌目未定类和芽单胞菌科以及具有溶磷能力的芽孢杆菌科可作为SWISs脱氮的微生物指标。环境对微生物特性的相互作用表明,微生物功能与溶解氧、铁、总有机碳、总磷、总氮、氨氮和硝态氮有关。这些可作为SWIS应用和监测的理化及生物学指标。总之,本研究为SWIS在分散式生活污水处理中的应用提供了一种低成本、高效的强化方法,并为后续应用提供了理论支持。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验