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氟喹诺酮类抗生素对地下水系统中反硝化过程的影响研究进展

邹华 何江涛 刘菲 夏绮文 褚宴佳

岩矿测试2025,Vol.44Issue(5):844-862,19.
岩矿测试2025,Vol.44Issue(5):844-862,19.DOI:10.15898/j.ykcs.202505050114

氟喹诺酮类抗生素对地下水系统中反硝化过程的影响研究进展

Effects of Fluoroquinolone Antibiotics on Denitrification in Groundwater:A Review

邹华 1何江涛 1刘菲 1夏绮文 1褚宴佳1

作者信息

  • 1. 水利部地下水保护重点实验室(筹),北京 100083||中国地质大学(北京)水资源与环境学院,北京 100083
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摘要

Abstract

Microbially mediated denitrification is essential for nitrate removal in groundwater.Fluoroquinolones(FQs)pollution,mainly from reclaimed water and livestock farming,often co-occurs with nitrate and may influence denitrification.Recent studies have identified the effects of FQs on denitrification in groundwater systems under varying exposure patterns of FQs,microbial characteristics,and environmental conditions.The underlying mechanisms have been elucidated from multiple perspectives,including community structure,metabolic pathways,and molecular-level responses.(1)FQs exhibit concentration-and compound-specific effects.At low concentrations,they may act as signaling molecules that regulate metabolic pathways and reshape microbial communities,thereby indirectly affecting denitrification.High concentrations of FQs inhibit bacterial growth,resulting in reduced denitrification efficiency and a delayed response.Combined FQs effects can be rapidly assessed using the microbial biomass determination method.(2)Environmental-microbial interactions modulate FQs effects.Microbial responses follow a"sensitive-non-sensitive-sub-sensitive"succession pattern,driven by bacterial abundance and resistance,with carbon metabolism and community structure changes as major regulatory pathways.Future research should focus on three areas:(1)the mechanisms and recovery pathways of denitrification inhibition under different FQs input scenarios;(2)the occurrence forms of FQs in groundwater and their multilayered impacts on denitrification functions;and(3)the development of a multi-scale coupled"FQs-microbe-environment"model to identify thresholds of critical drivers,thereby providing theoretical support and technical solutions for groundwater nitrogen pollution control.The BRIEF REPORT is available for this paper at http://www.ykcs.ac.cn/en/article/doi/10.15898/j.ykcs.202505050114.

关键词

地下水/氟喹诺酮类抗生素/硝酸盐/反硝化/微生物

Key words

groundwater/fluoroquinolone antibiotics/nitrate/denitrification/microorganisms

分类

资源环境

引用本文复制引用

邹华,何江涛,刘菲,夏绮文,褚宴佳..氟喹诺酮类抗生素对地下水系统中反硝化过程的影响研究进展[J].岩矿测试,2025,44(5):844-862,19.

基金项目

国家自然科学基金重点项目"典型抗生素对地下水系统中反硝化过程的影响机理研究"(41731282) (41731282)

北京市地下水污染风险源分类分级管控项目(HCZB-2023-ZB0078) (HCZB-2023-ZB0078)

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