Microbial desalination cell: Desalination through conserving energy

被引:95
作者
Zahid, Masirah [1 ]
Savla, Nishit [1 ]
Pandit, Soumya [2 ]
Thakur, Vijay Kumar [3 ,4 ]
Jung, Sokhee P. [5 ]
Gupta, Piyush Kumar [2 ]
Prasad, Ram [6 ]
Marsili, Enrico [7 ]
机构
[1] Amity Univ, Amity Inst Biotechnol, Mumbai, Maharashtra, India
[2] Sharda Univ, Sch Basic Sci & Res, Dept Life Sci, Greater Noida 201306, India
[3] Scotlands Rural Coll, Biorefining & Adv Mat Res Ctr, Edinburgh EH9 3JG, Midlothian, Scotland
[4] Univ Petr & Energy Studies UPES, Sch Engn, Dehra Dun 248007, Uttarakhand, India
[5] Chonnam Natl Univ, Dept Environm & Energy Engn, Gwangju 61186, South Korea
[6] Mahatma Gandhi Cent Univ, Dept Bot, Motihari 845401, Bihar, India
[7] Nazarbayev Univ, Dept Chem & Mat Engn, Nur Sultan 010000, Kazakhstan
关键词
Microbial desalination cells; Osmotic microbial desalination cells; Microbial Reverse Electrodialysis Cells; WASTE-WATER TREATMENT; REVERSE-OSMOSIS MEMBRANE; LIFE-CYCLE ASSESSMENT; CHEMICAL-PRODUCTION CELL; ANION-EXCHANGE MEMBRANES; LONG-TERM PERFORMANCE; ELECTRICITY-GENERATION; ELECTROLYSIS DESALINATION; CAPACITIVE DESALINATION; FUEL-CELLS;
D O I
10.1016/j.desal.2021.115381
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The increased requirement of potable water led to the development of efficient desalination technologies such as reverse osmosis membranes, which are currently mass-manufactured. However, other approaches are being explored, as emerging countries contribute to the global demand for drinking water. Microbial desalination cells (MDC), in which microbial consortia use chemical energy to remove ions from low-salinity aqueous solutions, have been investigated for some time but the actual relevance of this technology in the overall desalination industry remains unclear. pH maintenance on the cathodic side, internal resistance along with membrane fouling and its longevity are some technical shortcomings related to the practical use of MDCs, which can be partially circumvented by using multiple interconnected configurations. Further research is required to scale up the MDC technology while decreasing its cost and environmental impact. This review summarizes the operative principle of MDCs, the most common MDC cells configurations, and describes the variables that influence their performance in light of full-scale applications. A techno-economic analysis and lifecycle assessment of microbial desalination systems is also included, along with the description of electrode fabrication and genetic manipulation strategies that can improve the MDC cells performance.
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页数:27
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  • [21] Comparison of the removal of monovalent and divalent cations in the microbial desalination cell
    Chen, Shanshan
    Luo, Haiping
    Hou, Yanping
    Liu, Guangli
    Zhang, Renduo
    Qin, Bangyu
    [J]. FRONTIERS OF ENVIRONMENTAL SCIENCE & ENGINEERING, 2015, 9 (02) : 317 - 323
  • [22] Integrated utilization of seawater using a five-chamber bioelectrochemical system
    Chen, Shanshan
    Luo, Haiping
    Liu, Guangli
    Zhang, Renduo
    Wang, Haohao
    Qin, Bangyu
    Hou, Yanping
    [J]. JOURNAL OF MEMBRANE SCIENCE, 2013, 444 : 16 - 21
  • [23] Development of the Microbial Electrolysis Desalination and Chemical-Production Cell for Desalination as Well as Acid and Alkali Productions
    Chen, Shanshan
    Liu, Guangli
    Zhang, Renduo
    Qin, Bangyu
    Luo, Yong
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2012, 46 (04) : 2467 - 2472
  • [24] Optimization of membrane stack configuration in enlarged microbial desalination cells for efficient water desalination
    Chen, Xi
    Sun, Haotian
    Liang, Peng
    Zhang, Xiaoyuan
    Huang, Xia
    [J]. JOURNAL OF POWER SOURCES, 2016, 324 : 79 - 85
  • [25] Sustainable water desalination and electricity generation in a separator coupled stacked microbial desalination cell with buffer free electrolyte circulation
    Chen, Xi
    Liang, Peng
    Wei, Zhimou
    Zhang, Xiaoyuan
    Huang, Xia
    [J]. BIORESOURCE TECHNOLOGY, 2012, 119 : 88 - 93
  • [26] Stacked Microbial Desalination Cells to Enhance Water Desalination Efficiency
    Chen, Xi
    Xia, Xue
    Liang, Peng
    Cao, Xiaoxin
    Sun, Haotian
    Huang, Xia
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2011, 45 (06) : 2465 - 2470
  • [27] Novel Methanogenic Rotatable Bioelectrochemical System Operated with Polarity Inversion
    Cheng, Ka Yu
    Ho, Goen
    Cord-Ruwisch, Ralf
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2011, 45 (02) : 796 - 802
  • [28] Surface modification of a commercial thin-film composite polyamide reverse osmosis membrane through graft polymerization of N-isopropylacrylamide followed by acrylic acid
    Cheng, Qibo
    Zheng, Yinping
    Yu, Sanchuan
    Zhu, Huiwen
    Peng, Xiangyang
    Liu, Jia
    Liu, Jingqun
    Liu, Meihong
    Gao, Congjie
    [J]. JOURNAL OF MEMBRANE SCIENCE, 2013, 447 : 236 - 245
  • [29] Continuous electricity generation in stacked air cathode microbial fuel cell treating domestic wastewater
    Choi, Jeongdong
    Ahn, Youngho
    [J]. JOURNAL OF ENVIRONMENTAL MANAGEMENT, 2013, 130 : 146 - 152
  • [30] Methanogenesis in membraneless microbial electrolysis cells
    Clauwaert, Peter
    Verstraete, Willy
    [J]. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2009, 82 (05) : 829 - 836