大连理工大学  登录  English 
杨凤林
点赞:

教授   博士生导师   硕士生导师

性别:男

毕业院校:大连工学院

学位:硕士

所在单位:环境学院

电子邮箱:

手机版

访问量:

开通时间: ..

最后更新时间:..

当前位置 : 中文主页 >> 科学研究 >> 论文成果
Combined effects of enrichment procedure and non-fermentable or fermentable co-substrate on performance and bacterial community for pentachlorophenol degradation in microbial fuel cells

点击次数:

发布时间:2019-03-09

论文类型:期刊论文

发表时间:2012-09-01

发表刊物:BIORESOURCE TECHNOLOGY

收录刊物:Scopus、PubMed、EI、SCIE

卷号:120

页面范围:120-126

ISSN号:0960-8524

关键字:Microbial fuel cell; Pentachlorophenol; Bacterial community; Enrichment procedure; Co-substrate

摘要:Combined effects of enrichment procedure and non-fermentable acetate or fermentable glucose on system performance and bacterial community for pentachlorophenol (PCP) degradation in microbial fuel cells (MFCs) were determined in this study. Co-substrate and PCP were added into MFCs either simultaneously or sequentially. Simultaneous addition with glucose (simultaneous-glucose) achieved the shortest acclimation time and the most endurance to heavy PCP shock loads. Species of Alphaproteobacteria (simultaneous-acetate, 33.9%; sequential-acetate, 31.3%), Gammaproteobacteria (simultaneous-glucose, 44.1%) and Firmicutes (sequential-glucose, 31.8%) dominated the complex systems. The genus Sedimentibacter was found to exist in all the cases whereas Spirochaetes were merely developed in simultaneous-acetate and simultaneous-glucose. While Epsilonproteobacteria were only absent from sequential-acetate, simultaneous-glucose benefited to the evolution of Lentisphaerae. These results demonstrate simultaneous-glucose is a strategy for efficient system performance and the microbiological evidence can contribute to improving understanding of and optimizing PCP degradation in MFCs. (C) 2012 Elsevier Ltd. All rights reserved.

辽ICP备05001357号 地址:中国·辽宁省大连市甘井子区凌工路2号 邮编:116024
版权所有:大连理工大学