Elimination of pyraclostrobin by simultaneous microbial degradation coupled with the Fenton process in microbial fuel cells and the microbial community

被引:48
作者
Zhao, Huanhuan [1 ]
Kong, Chui-Hua [1 ]
机构
[1] China Agr Univ, Coll Resources & Environm Sci, Beijing 100193, Peoples R China
关键词
Microbial fuel cell; Microbial degradation; Fenton process; Pyraclostrobin; Microbial community; BIOELECTROCHEMICAL SYSTEMS; PESTICIDE DEGRADATION; SURFACE-WATER; FUNGICIDES; REMOVAL; BIOREMEDIATION; GENERATION; TOXICITY; BACTERIA; CATHODE;
D O I
10.1016/j.biortech.2018.03.012
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
The elimination of pyraclostrobin by simultaneous microbial degradation and Fenton oxidation was achieved in a microbial fuel cell (MFC) system. After 12 h of incubation, the removal rate of pyraclostrobin was 1.4 mg/L/h at the anode and 1.7 mg/L/h at the cathode. The pyraclostrobin concentration was less than the detection limit (0.1 mg/L) after 72 h at the anode and 24 h at the cathode. The air flow rate, temperature, and pH of the catholyte had significant effects on the generation of H2O2. The maximum production of H2O2 was 1.2 mg/L after reaction for 20 h during the Fenton process. Microbial community analysis indicated that functional bacteria in the genera Chryseobacterium, Stenotrophomonas, Arcobacter, and Comamonas were predominant in the anodic biofilm. In conclusion, the MFC-Fenton system provides an effective approach for treating environmental contaminants.
引用
收藏
页码:227 / 233
页数:7
相关论文
共 37 条
[1]   The strobilurin fungicides [J].
Bartlett, DW ;
Clough, JM ;
Godwin, JR ;
Hall, AA ;
Hamer, M ;
Parr-Dobrzanski, B .
PEST MANAGEMENT SCIENCE, 2002, 58 (07) :649-662
[2]   QIIME allows analysis of high-throughput community sequencing data [J].
Caporaso, J. Gregory ;
Kuczynski, Justin ;
Stombaugh, Jesse ;
Bittinger, Kyle ;
Bushman, Frederic D. ;
Costello, Elizabeth K. ;
Fierer, Noah ;
Pena, Antonio Gonzalez ;
Goodrich, Julia K. ;
Gordon, Jeffrey I. ;
Huttley, Gavin A. ;
Kelley, Scott T. ;
Knights, Dan ;
Koenig, Jeremy E. ;
Ley, Ruth E. ;
Lozupone, Catherine A. ;
McDonald, Daniel ;
Muegge, Brian D. ;
Pirrung, Meg ;
Reeder, Jens ;
Sevinsky, Joel R. ;
Tumbaugh, Peter J. ;
Walters, William A. ;
Widmann, Jeremy ;
Yatsunenko, Tanya ;
Zaneveld, Jesse ;
Knight, Rob .
NATURE METHODS, 2010, 7 (05) :335-336
[3]   Enhancing pesticide degradation using indigenous microorganisms isolated under high pesticide load in bioremediation systems with vermicomposts [J].
Castillo Diaz, Jean Manuel ;
Delgado-Moreno, Laura ;
Nunez, Rafael ;
Nogales, Rogelio ;
Romero, Esperanza .
BIORESOURCE TECHNOLOGY, 2016, 214 :234-241
[4]   Presence of pesticides in surface water from four sub-basins in Argentina [J].
De Geronimo, Eduardo ;
Aparicio, Virginia C. ;
Barbaro, Sebastian ;
Portocarrero, Rocio ;
Jaime, Sebastian ;
Costa, Jose L. .
CHEMOSPHERE, 2014, 107 :423-431
[5]   Novel Electrochemically Active Bacterium Phylogenetically Related to Arcobacter butzleri, Isolated from a Microbial Fuel Cell [J].
Fedorovich, Viatcheslav ;
Knighton, Matthew C. ;
Pagaling, Eulyn ;
Ward, F. Bruce ;
Free, Andrew ;
Goryanin, Igor .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2009, 75 (23) :7326-7334
[6]   A dual-chamber microbial fuel cell with conductive film-modified anode and cathode and its application for the neutral electro-Fenton process [J].
Feng, Chunhua ;
Li, Fangbai ;
Liu, Haiyang ;
Lang, Xuemei ;
Fan, Shuanshi .
ELECTROCHIMICA ACTA, 2010, 55 (06) :2048-2054
[7]   Degradation of p-fluoronitrobenzene in biological and bioelectrochemical systems: Differences in kinetics, pathways, and microbial community evolutions [J].
Feng, Huajun ;
Wang, Yanfeng ;
Zhang, Xueqin ;
Shen, Dongsheng ;
Li, Na ;
Chen, Wei ;
Huang, Bin ;
Liang, Yuxiang ;
Zhou, Yuyang .
CHEMICAL ENGINEERING JOURNAL, 2017, 314 :232-239
[8]   Evaluating Pesticide Degradation in the Environment: Blind Spots and Emerging Opportunities [J].
Fenner, Kathrin ;
Canonica, Silvio ;
Wackett, Lawrence P. ;
Elsner, Martin .
SCIENCE, 2013, 341 (6147) :752-758
[9]   Degradation of n-alkanes and PAHs from the heavy crude oil using salt-tolerant bacterial consortia and analysis of their catabolic genes [J].
Gurav, Ranjit ;
Lyu, Honghong ;
Ma, Jianli ;
Tang, Jingchun ;
Liu, Qinglong ;
Zhang, Hairong .
ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2017, 24 (12) :11392-11403
[10]   Bioremediation of pesticide-contaminated water resources: the challenge of low concentrations [J].
Helbling, Damian E. .
CURRENT OPINION IN BIOTECHNOLOGY, 2015, 33 :142-148