Qiao YANG
Associate Professor Supervisor of Master's Candidates
Gender:Female
Alma Mater:哈尔滨工业大学
Degree:Doctoral Degree
School/Department:化工海洋与生命学院
Discipline:Environmental Engineering. Environmental Science
Business Address:D05 314
Contact Information:0427 2631787
E-Mail:yangqiao@dlut.edu.cn
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Indexed by:期刊论文
Date of Publication:2019-01-24
Journal:FRONTIERS IN CHEMISTRY
Included Journals:SCIE、PubMed、Scopus
Volume:7
Issue:JAN
Page Number:19
ISSN No.:2296-2646
Key Words:microbial electrochemical systems; perchlorate removal; Fe/C; cathode; coulombic efficiency
Abstract:Perchlorate removal was tested in the cathode chamber of microbial electrochemical systems (MESs). Dual-chambers MESs were constructed and operated in batch mode with four kinds of cathode materials including Fe/C particles (Fe/C), zero valent iron particles (ZVI), blank carbon felt (CF), and active carbon (AC). Without external energy supply or perchlorate-reducing microbial pre-enrichment, perchlorate (ClO4-) removal could be achieved in the cathode chambers of MESs at different efficiencies. The highest CIO4- removal rates in these reactors were 18.96 (Fe/C, 100 Omega, 2 days), 15.84 (ZVI,100 Omega, 2 days), 14.37 (CF, 100 Omega, 3 days), and 19.78 mg/L/day (AC, 100 Omega, 2 days). ClO4- degradation products were mainly Cl- and ClO3-, and the total chlorine in the products was lower than the theoretical input. The non-conservation of the total chlorine may be caused by the adsorption and co-precipitation related to the electrode materials. Coulombs and coulombic efficiency calculation showed that electron provided by MESs was partially responsible for ClO4- reduction, for the Fe/C cathode reactors, about a quarter of electron was provided by MESs.
杨俏,女,毕业于哈尔滨工业大学,环境科学与工程博士。现任大连理工大学海洋科学与技术学院副教授,硕士生导师。研究方向为水污染治理与资源化,包括生物电化学法去除水中污染物、污水发电、微生物燃料电池等,联系邮箱 yangqiao@dlut.edu.cn。