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电辅助微生物还原降解五氯酚的电子传递机理 被引量:5

Electron transfer mechanism of pentachlorophenol reduction in electro-assisted microbial system
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摘要 针对微生物还原降解五氯酚(PCP)缺乏电子供体及过程缓慢的问题,将电化学(电辅助)引入微生物还原降解过程。研究发现电辅助微生物体系的降解效率为97%,这比微生物体系(降解效率为62%)和电化学体系(降解效率为26%)的加和高约10%。对比研究了电辅助微生物体系和电化学体系对PCP还原降解的循环伏安曲线,结果表明:电辅助微生物体系的循环伏安曲线上存在明显的氧化还原峰,电子传递速率为0.856m.s-1,电子传递系数为2.024,为两电子传递过程,符合生物降解规律,证实了电辅助加速了微生物降解过程的电子传递速率。电辅助微生物体系中存在着电极、细胞色素c、cty.bc1、NAD和污染物间的逆向电子传递途径,可实现电极-微生物-污染物间多相界面的长程电子传递过程。该研究为环境污染治理提供了一种电辅助与微生物协同作用的新理念。 Electrochemistry(electro-assisted)was introduced to the microbial reduction of PCP in order to resolve the lack of electron donor and the slow reduction rate.It was found that the PCP degradation efficiency of 97% in the electro-assisted microbial system was higher than the sum of that of 62% in the microbial system and that of 26% in the electrochemical system by about 10%.The cyclic voltammetry(CV)curves of the PCP reduction degradation in the electro-assisted microbial system and in the electrochemical system were compared.There were obvious redox peaks in the cyclic voltammetry curves of the electro-assisted microbial system and the electron transfer rate was 0.856 m·s-1,the electron transfer coefficient was 2.024 in a two-electron transfer process,which conformed to the biodegradation characteristics.The electron given by the electric field did accelerate the electron transfer during the microbial respiration.There was reverse electronic transfer between the electrodes,cytochrome c,cty·bc1,NAD and pollutants in the electro-assisted microbial system and the long-range electron transfer processes of multiphase interface between the electrode,microorganisms and pollutants were implemented. The study provides a new concept of electrochemical synergy with microbial reduction for environmental pollution control.
出处 《化工学报》 EI CAS CSCD 北大核心 2012年第12期4042-4047,共6页 CIESC Journal
基金 国家自然科学基金项目(51078265)~~
关键词 电辅助微生物 五氯酚 细胞色素C 长程电子传递 逆向传递 electro-assisted microbial system PCP cytochrome c long-range electron transfer reverse transfer
作者简介 联系人:曹占平(1970-),男,博士,副研究员。
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  • 1王旭刚,孙丽蓉.五氯酚的污染现状及其转化研究进展[J].环境科学与技术,2009,32(8):93-100. 被引量:36
  • 2Field J A, Reyes S A. Microbial degradation of chlorinated phenols rJ. Environmental Science Biotechnology , 2008, 7 (3) 211-241.
  • 3滕少香,盛国平,刘贤伟,王曙光,俞汉青.芳香族硝基化合物的微生物降解[J].化学进展,2009,21(2):534-539. 被引量:8
  • 4Karn S K,Chakrabarti S K,Reddy M S. Degradation of pentachlorophenol by Kocuria sp. CL2 isolated from secondary sludge of pulp and paper mill [J]. Biodegradation,2011,22 (1): 63-69.
  • 5Li Z,Yang S,Inoue y,Yoshida N,Katayama A. Complete anaerobic mineralization of pentachloro-phenol ( PCP) under continuous flow conditions by sequential combination of PCP-dechlorinating and phenol-degrading consortia [J]. Biotechnology and Bioeng口leering,2010,107 (5): 775-785.
  • 6She Peng,Song Bo,Xing Xinhui,Loosdrecht M V,Liu Zheng. Electrolytic stimulation of bacteria Enterobacter dissolvents by a direct current [J]. Biochemical Engineering] oumal,2006,28 0): 23-29.
  • 7Huang Liping,Chai Xiaolei,Quan X町,Bruce E L,Chen Guohua. Reductive dechlorination and mineralization of pentachlorophenol in biocathode microbial fuel cells [J]. Bioresource Technology,2012,111 (2): 167-174.
  • 8Thrash C,Coates J D. Review: direct and indirect electrical stimulation of microbial metabolism [J]. Environmental Science &. Technology,2008,42(11): 3914-3924.
  • 9Yang Bo, Yu Gang, Shuai Danmeng. Electrocatalytic hydrodechlorination of 4-chloorobiphenyl in aqueous solution using palladized nickel foam cathode [J]. Chemosphere, 2007, 67 (4) 1361-1367.
  • 10Meaney K L,Omanovic S. Sno. 86 -Sbo. 03 - Mno. 10 - Pto. 01oxide/Ti anode for the electro-oxidation of aqueous organic waste [J]. Materials Chemistγy and Physics,2007,105 (7): 143-147.

二级参考文献409

共引文献157

同被引文献42

  • 1曹宏斌,李玉平,徐红彬,张懿.电催化还原-生物降解耦合处理硝基苯废水[J].环境科学,2004,25(S1):95-97. 被引量:10
  • 2朱又春,张乐华,林美强,汤兵.电解杀菌和反硝化脱氮技术发展及其在水处理中的应用[J].环境保护,2001,29(11):21-23. 被引量:16
  • 3WANG Jianlong, HUANG Yongheng, ZHAO Xuan. Performance and characteristics of an anaerobic baffled reactor[ J ]. Bioresource Technology, 2004,93 : 205 - 208.
  • 4CHANG Y H, GRODZINSKY A J, WANG D I. Augmentation of mass transfer through electrical means for hydrogel-entrapped escherichia coli cultivation[ J ]. Biotechnology and Bioengineering, 1995,48 : 149-157.
  • 5SHE Peng,SONG Bo, XING Xinhul, et al. Electrolytic stimulation of bacteria Enterobacter dissolvens by a direct current [ J ]. Biochemical Engineering Journal ,2006,28:23-29.
  • 6TANAKA T, KURODA M. Improvement of submerged biofiher process by bioelectrochemical method [ J ]. Environmental Engineering Science, 2000,126 : 541 - 548.
  • 7ZAVERI R M, FLORA J R V. Laboratory septic tank performance response to electrolytic stimulation[ J]. Water Research,2002,36: 4513-4524.
  • 8ISLAM S, SUIDAN M T. Electrolytic denitrification: long term performance and effect of current intensity [ J ]. Water Research, 1998,32(2) :528-536.
  • 9LETTINGA G, FIELD J, VAN LIER J, et al. Advanced anaerobic wastewater treatment in the near future [ J]. Water Science and Technology, 1997,35 (10) :5-12.
  • 10DINOPOULOU G, RUDD T, LESTER J N. Anaerobic acidogenesis of a complex wastewater: the influence of operational parameters on reactor performance [ J ]. Biotechnology and Bioengineering, 1988, 31:958-968.

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