欢迎访问《金属矿山》杂志官方网站,今天是 分享到:
×

扫码分享

金属矿山 ›› 2026, Vol. 55 ›› Issue (5): 260-267.

• • 上一篇    下一篇

黄铁矿-模拟太阳光体系对抗性菌和污泥微生物灭活效应的影响及其机理

许丹宁1,2 吴 莉1 黄馨慧1 汝 旋1 舒小华2 李宗宸1 张 倩1   

  1. 1. 桂林电子科技大学生命与环境科学学院,广西 桂林 541004;2. 桂林理工大学环境科学与工程学院,广西 桂林 541006
  • 出版日期:2026-05-15 发布日期:2026-06-03
  • 通讯作者: 舒小华(1984—),男,教授,博士,博士研究生导师。
  • 作者简介:许丹宁(2000—),女,硕士研究生。
  • 基金资助:
    国家自然科学基金项目(编号:U21A20179,42477432);广西八桂青年拔尖人才项目(编号:桂人才办[2024]1)。

Inactivation Effects and Mechanisms of Pyrite-Simulated Sunlight System on Antibiotic-Resistant Bacteria and Sludge Microorganisms

XU Danning1,2 WU Li1 HUANG Xinhui1 RU Xuan1 SHU Xiaohua2 LI Zongchen1 ZHANG Qian1   

  1. 1. School of Life and Environmental Science,Guilin University of Electronic Technology,Guilin 541004,China;
    2. College of Environmental Science and Engineering,Guilin University of Technology,Guilin 541006,China
  • Online:2026-05-15 Published:2026-06-03

摘要: 针对剩余污泥中抗生素抗性菌(ARB)污染严重、处理率低的问题,本研究旨在探索一种基于天然黄铁
矿(FeS2)光催化作用的高效、低成本污泥微生物灭活技术,并评估其在实际污泥处理中的应用可行性。以耐甲氧西
林金黄色葡萄球菌(MRSA)为典型ARB,在不同FeS2 投加量及pH 条件下考察FeS2 光催化体系的灭活性能及其对
MRSA 最小抑菌浓度(MIC)的影响。在此基础上,构建“CaCO3 +FeS2 +光”复合体系,应用于实际污泥浓缩池中微生物
的灭活处理,分析微生物去除率、污泥沉降性能及作用机制。FeS2 光催化体系在投加量为0. 25 g/ L、酸性条件下对
MRSA 的灭活效果最佳,可实现完全灭活,MIC 值降至初始值的1/4。在中性条件下(CaCO3 介导),“CaCO3 +FeS2 +光”
体系对实际污泥中微生物的去除率达99%以上,且未对污泥浓缩效果产生负面影响。机制分析表明,FeS2 光催化通
过光致电子转移加速铁循环,促进羟基自由基(·OH)生成,累计浓度达7. 17 μM,从而破坏微生物细胞膜结构与代谢
功能。基于FeS2 光催化的“CaCO3 +FeS2 +光”体系兼具高效、低成本及良好的实际应用兼容性,是一种具有推广潜力
的污泥微生物灭活技术,可为污泥中ARB 的控制提供理论依据和技术支撑。

关键词: 黄铁矿 , 光催化 , 耐甲氧西林金黄色葡萄球菌 , 污泥 , 抗生素抗性菌 , 碳酸钙 , 羟基自由基

Abstract: To address the serious pollution of antibiotic-resistant bacteria (ARB) in excess sludge and the low treatment
rate,this study aims to develop an efficient and low-cost technology for inactivating sludge microorganisms based on the photocatalytic
effect of natural pyrite (FeS2),and to evaluate its feasibility for practical sludge treatment. Using methicillin-resistant
Staphylococcus aureus (MRSA) as a typical ARB,the inactivation performance of the FeS2 photocatalytic system and its effect
on the minimum inhibitory concentration (MIC) of MRSA were investigated under different FeS2 dosages and pH conditions.
On this basis,a " CaCO3 +FeS2 +light" composite system was constructed and applied to inactivate microorganisms in actual
sludge thickening tanks. The microbial removal efficiency,sludge settling performance,and underlying mechanisms were analyzed.
The FeS2 photocatalytic system achieved optimal inactivation of MRSA at a dosage of 0. 25 g/ L under acidic conditions,
leading to complete inactivation and a reduction of the MIC value to one-quarter of its initial level. Under neutral conditions
(mediated by CaCO3),the "CaCO3 +FeS2 +light" system achieved over 99% removal of microorganisms from actual sludge,
without negatively affecting sludge thickening performance. Mechanistic analysis revealed that FeS2 photocatalysis accelerated iron
cycling through photoinduced electron transfer,promoting the generation of hydroxyl radicals (·OH) with an accumulated
concentration of 7. 17 μM,which subsequently disrupted the cell membrane structure and metabolic functions of the microorganisms.
The "CaCO3 +FeS2 +light" system based on FeS2 photocatalysis combines high efficiency,low cost,and good compatibility
with practical applications. It represents a promising technology for inactivating sludge microorganisms and provides theo
retical and technical support for controlling ARB in sludge.

中图分类号: