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真菌电化学修复除草剂污染土壤:降解动力学探索

郝大程 郑宇薇 王凡 韩蕾 张赜

生物技术通报2024,Vol.40Issue(3):261-272,12.
生物技术通报2024,Vol.40Issue(3):261-272,12.DOI:10.13560/j.cnki.biotech.bull.1985.2023-0895

真菌电化学修复除草剂污染土壤:降解动力学探索

Fungal Electrochemical Remediation of Herbicide-contaminated Soil:Preliminary Study on Degradation Kinetics

郝大程 1郑宇薇 1王凡 1韩蕾 1张赜2

作者信息

  • 1. 大连交通大学环境与化学工程学院,大连 116028
  • 2. 大连环资科技有限公司,大连 116100
  • 折叠

摘要

Abstract

[Objective]Microbial fuel cell(MFC),which produces electricity while removing pollutants,is a promising means of ecological restoration.We aim to construct a fungal-augmented MFC device,compare the effects,advantages and disadvantages of electrokinetic(EK),fungal and MFC remediation against herbicides in the polluted soil,and explored the application potential of MFC in the remediation of organic pollutants.[Method]A novel MFC with fungal bioaugmentation was designed.The contaminated soil by two herbicides was remediated by three methods of EK,fungi and MFC remediations,and the screened and domesticated Talaromyces dalianensis and Myrothecium verrucaria strains were implemented in the latter two approaches.The effect of fungal augmentation on the removal of herbicides was studied.Soil pH,electrical conductivity,herbicide removal,and MFC electrical performance were quantified,and degradation products of two herbicides were identified by gas chromatography-mass spectrometry.[Result]In EK remediation,when simulated electrolyte,carbon fiber and 10 V were applied for 7 d,the removal rate of florpyrauxifen-benzyl(F)and haloxyfop-P(H)was 71%and 38%,respectively.Compared with H,F was more easily degraded,and fungal and MFC treatments completely removed it.Compared with T.dalianensis,M.verrucaria strain had better degradation capacity to both herbicides.MFC based on two fungi had the removal rate of 62.5%and 24.1%respectively toward H.The degradation product of F and H was halauxifen and 4-methoxybenzyl acetate,respectively,and the degradation pathways and kinetics were speculated.The degradation of F by three methods and the degradation of H by EK followed the first-order kinetic reaction,while the degradation of H by fungi and MFC followed the second-order reaction.[Conclusion]Compared with EK and fungal remediations,MFC remediation had a better effect,which can remediate the soil without the need for additional power supply,making it a cost-effective self-sustaining remediation strategy.

关键词

电化学修复/微生物燃料电池/踝节菌DJTU-SJ5/疣孢漆斑菌DJTU-sh7/土壤修复

Key words

electrochemical remediation/microbial fuel cell/Talaromyces dalianensis DJTU-SJ5/Myrothecium verrucaria DJTU-sh7/soil remediation

引用本文复制引用

郝大程,郑宇薇,王凡,韩蕾,张赜..真菌电化学修复除草剂污染土壤:降解动力学探索[J].生物技术通报,2024,40(3):261-272,12.

基金项目

辽宁省教育厅项目(JDL2019012),国家留学基金项目(202108210156) (JDL2019012)

生物技术通报

OA北大核心CSTPCD

1002-5464

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