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水力负荷率对人工湿地的影响分析:了解基质本体和根际相关微生物群落的响应。

Impact analysis of hydraulic loading rate on constructed wetland: Insight into the response of bulk substrate and root-associated microbiota.

机构信息

School of Civil and Environmental Engineering, Ningbo University, Ningbo 315211, China; Institute of Ocean Engineering, Ningbo University, Ningbo 315211, China.

School of Marine Sciences, Ningbo University, Ningbo 315211, China.

出版信息

Water Res. 2022 Jun 1;216:118337. doi: 10.1016/j.watres.2022.118337. Epub 2022 Mar 21.

Abstract

Constructed wetland (CW) is an environment-friendly and low-cost technology for nutrients removal from domestic wastewater. For a well-tuned CW, hydraulic loading rate (HLR) is one of the critical factors, particularly under the challenging circumstance of more frequent heavy rainfall events brought by global warming. In this study, a comprehensive investigation was conducted to explore the influence of different HLRs on the CW's bulk substrate and root-associated microbiota aiming to yield new insight for CW management from a hybrid perspective of environmental microbiology and engineering science. The response of the microbial community and associated nutrients removal performance under different HLR settings were analyzed after a one-year operation. Results showed that the bulk substrate and rhizosphere genera involved in desulfurization and denitrification, such as Ferritrophicum, Sulfurimonas, and Sulfurisoma, were enriched in the higher HLR condition and associated with the higher total nitrogen (TN) and nitrate nitrogen (NO-N) removal compared to the lower HLR condition. Co-occurrence network analysis demonstrated a more complex network under the higher HLR condition. Besides, it was observed that more stochastic in microbial assembly under the higher HLR condition. Surprisingly, zoonotic pathogens were observed and showed a greater prevalence under the higher HLR condition, indicating the potential correlation between HLR and pathogen intrusion. Collectively, this study revealed that the microbiota could be significantly altered under different HLR conditions, thereby resulting in differences in nutrients removal performance.

摘要

人工湿地(CW)是一种从生活污水中去除营养物质的环保且低成本的技术。对于一个经过良好调试的 CW,水力负荷率(HLR)是关键因素之一,尤其是在全球变暖导致的更频繁的强降雨事件的挑战下。本研究从环境微生物学和工程科学的综合角度出发,对不同 HLR 对 CW 基质和根际相关微生物群的影响进行了全面调查,旨在为 CW 管理提供新的见解。在一年的运行后,分析了不同 HLR 条件下微生物群落的响应及其与相关养分去除性能的关系。结果表明,在较高 HLR 条件下,参与脱硫和反硝化的基质和根际属,如 Ferritrophicum、Sulfurimonas 和 Sulfurisoma 得到了富集,与较低 HLR 条件相比,具有更高的总氮(TN)和硝酸盐氮(NO-N)去除率。共生网络分析表明,在较高 HLR 条件下,网络更为复杂。此外,在较高 HLR 条件下,微生物组合表现出更多的随机性。令人惊讶的是,在较高 HLR 条件下观察到了人畜共患病病原体,并且其出现的频率更高,这表明 HLR 与病原体入侵之间可能存在相关性。总的来说,本研究表明,在不同的 HLR 条件下,微生物群可能会发生显著变化,从而导致养分去除性能的差异。

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