Bioelectrochemical systems: Sustainable bio-energy powerhouses

被引:87
|
作者
Gul, Mahwash Mahar [1 ]
Ahmad, Khuram Shahzad [1 ]
机构
[1] Fatima Jinnah Women Univ, Dept Environm Sci, Rawalpindi 46000, Pakistan
来源
关键词
Microbial fuel cells; Photo MFCs; Plant MFCs; Biophotovoltaics; Bioelectricity; MICROBIAL FUEL-CELL; WASTE-WATER TREATMENT; PROTON-EXCHANGE MEMBRANE; CONTINUOUS ELECTRICITY-GENERATION; ALTERNATIVE CATHODE CATALYST; FLOW CONSTRUCTED WETLAND; DIRECT ELECTRON-TRANSFER; LONG-TERM PERFORMANCE; SCALABLE AIR-CATHODE; ACTIVATED-CARBON;
D O I
10.1016/j.bios.2019.111576
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Bioelectrochemical systems comprise of several types of cells, from basic microbial fuel cells (MFC) to photosynthetic MFCs and from plant MFCs to biophotovoltaics. All these cells employ bio entities at anode to produce bioenergy by catalysing organic substrates while some systems convert solar irradiation to energy. The current review epitomizes the above-mentioned fuel cell systems and elucidates their electrical performances. Microbial fuel cells have advantages over conventional fuel cells in terms of being sustainable whilst producing impressive power efficiencies without any net carbon emissions. They can be utilized for several environmentally friendly applications including wastewater treatment and bio-hydrogen generation, apart from producing clean and green electricity. Multifarious heterotrophic and autotrophic microbes and plants have been studied for their potential as imperative components of fuel cell technology. MFCs also display some interesting applications, such as integration of plant MFCs into architecture to produce "green" cities. Biophotovoltaic technology is the current hot cake in this field, which aspires to achieve significant electrical efficiencies by light-induced water splitting mechanisms. Furthermore, the utilization of BPVs in space renders it a technology for the future. Compared with other fuel cell systems, this technology is still in its inception and requires further efforts to endeavour its use on commercial or industrial level.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] Theory of bio-energy transport in living systems and its properties
    不详
    [J]. EUROPEAN BIOPHYSICS JOURNAL WITH BIOPHYSICS LETTERS, 2005, 34 (06): : 602 - 602
  • [22] Investigation of GDH/Laccase Enzymes for Bio-energy Generation Systems
    Chau, Long-ho
    Leung, Ken C. F.
    Li, Wen J.
    [J]. 2009 IEEE INTERNATIONAL CONFERENCE ON MECHATRONICS AND AUTOMATION, VOLS 1-7, CONFERENCE PROCEEDINGS, 2009, : 1855 - +
  • [23] Comparing centralized and decentralized bio-energy systems in rural China
    He, Guizhen
    Bluemling, Bettina
    Mol, Arthur P. J.
    Zhang, Lei
    Lu, Yonglong
    [J]. ENERGY POLICY, 2013, 63 : 34 - 43
  • [24] Fouling mitigation in environmentally friendly sugarcane bio-energy systems
    Beeharry, RP
    Bott, TR
    [J]. PROCEEDINGS OF AN INTERNATIONAL CONFERENCE ON MITIGATION OF HEAT EXCHANGER FOULING AND ITS ECONOMIC AND ENVIRONMENTAL IMPLICATIONS, 2001, : 123 - 131
  • [25] Bio-Energy Systems at the Community Level in the South Pacific: Impacts & Monitoring
    J. Woods
    Sarah Hemstock
    William Burnyeat
    [J]. Mitigation and Adaptation Strategies for Global Change, 2006, 11 (2) : 469 - 500
  • [26] A linear programming tool for optimizing bio-energy and waste treatment systems
    Meuleman, B
    Faaij, A
    [J]. BIOMASS: A GROWTH OPPORTUNITY IN GREEN ENERGY AND VALUE-ADDED PRODUCTS, VOLS 1 AND 2, 1999, : 497 - 502
  • [27] The Role of Bio-productivity on Bio-energy Yields
    Janssens, M. J. J.
    Keutgen, N.
    Pohlan, J.
    [J]. JOURNAL OF AGRICULTURE AND RURAL DEVELOPMENT IN THE TROPICS AND SUBTROPICS, 2009, 110 (01) : 39 - 47
  • [28] Bio-energy supply chains and stakeholders
    Gold, Stefan
    [J]. MITIGATION AND ADAPTATION STRATEGIES FOR GLOBAL CHANGE, 2011, 16 (04) : 439 - 462
  • [29] Williams Bio-Energy to market ethanol
    不详
    [J]. CHEMICAL & ENGINEERING NEWS, 2001, 79 (17) : 16 - 16
  • [30] Greenhouse gas savings potential of sugar cane bio-energy systems
    Nguyen, Thu Lan T.
    Gheewala, Shabbir H.
    Sagisaka, Masayuki
    [J]. JOURNAL OF CLEANER PRODUCTION, 2010, 18 (05) : 412 - 418