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微生物脱盐燃料电池高效除盐研究进展
引用本文:刘崇涛,李同,刘壮壮,李洋洋,宋建超,陶秀萍. 微生物脱盐燃料电池高效除盐研究进展[J]. 精细化工, 2024, 41(3): 465-478
作者姓名:刘崇涛  李同  刘壮壮  李洋洋  宋建超  陶秀萍
作者单位:中国农业科学院都市农业研究所,中国农业科学院都市农业研究所,中国农业科学院农业环境与可持续发展研究所,中国农业科学院农业环境与可持续发展研究所,中国农业科学院都市农业研究所,中国农业科学院都市农业研究所
基金项目:国家自然科学基金项目(32272934);中国农业科学院科技创新工程项目(ASTIP-CAAS)
摘    要:微生物脱盐燃料电池(MDC)是一种新兴的绿色可持续循环能源技术,利用微生物胞外呼吸作用同步驱动除盐、产电及降解有机污染物。首先,概括了传统能源密集型除盐技术(热浓缩法和膜法)的能耗及局限性;然后,介绍了MDC运行机制、耦合系统及可持续发展影响因素;重点阐述了多种MDC耦合工艺协同高效处理废水的研究进展及其可持续发展面临的挑战;最后,展望了MDC在高效、可持续和低碳废水处理、盐水淡化和能源/资源回收方面的研究前景。

关 键 词:微生物脱盐燃料电池  耦合系统  除盐  膜污染  生物膜
收稿时间:2023-03-30
修稿时间:2023-05-15

Research progress on microbial desalination cells for high desalination efficiency
LIU Chongtao,LI Tong,LIU Zhuang-zhuang,LI Yang-yang,SONG Jian-chao and TAO Xiu-ping. Research progress on microbial desalination cells for high desalination efficiency[J]. Fine Chemicals, 2024, 41(3): 465-478
Authors:LIU Chongtao  LI Tong  LIU Zhuang-zhuang  LI Yang-yang  SONG Jian-chao  TAO Xiu-ping
Affiliation:Institute of Urban Agriculture,Chinese Academy of Agricultural Sciences,Institute of Urban Agriculture,Chinese Academy of Agricultural Sciences,Institute of Environment and Sustainable Development in Agriculture,Chinese Academy of Agricultural Sciences,Institute of Environment and Sustainable Development in Agriculture,Chinese Academy of Agricultural Sciences,Institute of Urban Agriculture,Chinese Academy of Agricultural Sciences,Institute of Urban Agriculture,Chinese Academy of Agricultural Sciences
Abstract:Microbial desalination cells (MDCs) are an emerging green and sustainable energy recycling technology, which utilize microbial extracellular respiration to simultaneously drive salinity removal, electricity generation and degradation organic pollutants. Firstly, the energy consumption and limitations of conventional energy-intensive desalination techniques (thermal and membrane processes) are summarized. Secondly, the MDCs was systematically analyzed from the aspects of work mechanism, configuration evolution, operative parameters and microbial community of the classic MDC system. The collaborative efficient treatment of wastewater by multiple MDC coupled technologies and its challenges for sustainable development are described in detail. Finally, the future strategies are prospected from the perspective of MDCs in efficient, sustainable and low-carbon wastewater treatment, saltwater desalination and energy/resource recovery.
Keywords:microbial desalination cells   coupling system   desalination   membrane fouling   biofilm
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