张捍民

个人信息Personal Information

教授

博士生导师

硕士生导师

性别:女

毕业院校:哈尔滨工业大学

学位:博士

所在单位:环境学院

学科:环境工程. 环境科学

电子邮箱:zhanghm@dlut.edu.cn

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Iron and carbon granules added to anode enhanced the sludge decrement and electrical performance of sludge microbial fuel cell

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论文类型:期刊论文

发表时间:2019-09-15

发表刊物:CHEMICAL ENGINEERING JOURNAL

收录刊物:SCIE、EI

卷号:372

页面范围:572-580

ISSN号:1385-8947

关键字:Sludge microbial fuel cell; Iron and carbon granules; Micro-electrolysis; Sludge decrement

摘要:Sludge microbial fuel cell (SMFC) can utilize the organics in sludge to generate power, and has attracted widespread attention. However, the low efficiency of organics utilization and limited power-output are the main challenges that need to be addressed. This study proposed an in situ method without additional energy to enhance the performance of SMFC by adding the package of iron and carbon granules (FeC). In the reactors including FeC-SMFC (the FeC package placed under the carbon felt anode and separated from the closed-circuit), FeC-OSMFC (FeC-SMFC in open-circuit), and FeCSMFC (the FeC package attached to the anodic bottom and closed-circuit), the degradation of refractory organics especially humic acid-like substances was significantly promoted, due to the FeC micro-electrolysis at neutral pH. More organics were beneficial for the enrichment of typical exoelectrogens belonging to Proteobacteria and Firmicutes, thereby improving the electrical performance of FeC-SMFC and FeCSMFC, compared with normal SMFC without FeC package (NSMFC). In FeCSMFC, the soluble and total chemical oxygen demand removal efficiencies were 65.60% and 52.64%. The removal efficiency of volatile suspended solids in FeCSMFC was 69.26%, which was 30.05%, 14.97%, 9.87% and 6.62% higher than that in open-circuit SMFC, NSMFC, FeC-OSMFC and FeC-SMFC, respectively. The power output of FeCSMFC was 37.28 W m(-3), 6.06 and 1.76 times higher than that of NSMFC and FeC-SMFC, respectively. The addition of FeC package to anode is a cost-saving and effective method to enhance electricity generation and sludge decrement of SMFC.