首页> 外文会议>11th fuel cell science, engineering, and technology conference 2013 >REVIEW OF MICROBIAL FUEL CELLS FOR WASTEWATER TREATMENT: LARGE-SCALE APPLICATIONS, FUTURE NEEDS AND CURRENT RESEARCH GAPS
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REVIEW OF MICROBIAL FUEL CELLS FOR WASTEWATER TREATMENT: LARGE-SCALE APPLICATIONS, FUTURE NEEDS AND CURRENT RESEARCH GAPS

机译:废水处理用微生物燃料电池的综述:大型应用,未来需求和当前的研究差距

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摘要

There is growing interest in innovative waste water treatment technologies that can utilize the inherent energy-producing potential of organic waste. A microbial fuel cell (MFC) is a type of bioreactor that produces electricity by converting energy in the chemical bonds of organic material, through a catalytic reaction of microorganisms under anaerobic conditions. MFCs provide a promising low cost, highly efficient, and renewable energy-producing alternative to conventional wastewater treatments. MFC technology at the laboratory scale has advanced to the point where chemical oxygen demand (COD) removal efficiencies (RE) over 90% are commonly achieved; however, low coulombic efficiencies (CE) and power densities often result when treating actual industrial and domestic wastewaters. In spite of their low energy recovery and power production, MFCs have been shown to be economically viable when factoring in costs savings from the sale of produced chemical byproducts and reduction of solid waste removal costs. However, further research of large-scale MFC wastewater treatment applications must be performed to determine the extent of their feasibility. This paper reviews several pilot-test MFC systems, addresses promising future industrial applications, and discusses current research gaps in MFC technology for wastewater treatment. Of particular interest in our research program is the use of MFCs to treat liquid-phase organic waste generated at food processing plants. Because of the general scalability of fuel cell systems, there is reason to believe that an MFC treatment system would be better suited to relatively small waste flow rates, unlike other treatment methods (e.g., anaerobic digestion) which typically require large volume to achieve economic viability.
机译:可以利用有机废物的内在能量产生潜力的创新性废水处理技术越来越受到关注。微生物燃料电池(MFC)是一种生物反应器,通过在厌氧条件下微生物的催化反应,通过转换有机材料的化学键中的能量来发电。 MFC提供了一种有希望的低成本,高效,可再生能源生产方法,可替代常规废水处理。实验室规模的MFC技术已经发展到可以达到90%以上的化学需氧量(COD)去除效率(RE)的程度;然而,当处理实际的工业和生活废水时,通常会导致库仑效率(CE)和功率密度低。尽管MFC的能量回收和发电量低,但考虑到从生产化学副产品的销售中节省的成本以及减少固体废物的去除成本,在经济上已经证明是可行的。但是,必须进行大规模的MFC废水处理应用的进一步研究,以确定其可行性的程度。本文回顾了几种MFC系统的中试系统,讨论了有希望的未来工业应用,并讨论了MFC技术在废水处理方面的研究空白。在我们的研究计划中,特别令人感兴趣的是使用MFC处理食品加工厂产生的液相有机废物。由于燃料电池系统具有总体可扩展性,因此有理由相信,MFC处理系统将更适合于相对较小的废物流量,这与通常需要大容量才能实现经济可行性的其他处理方法(例如厌氧消化)不同。

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  • 会议地点 Minneapolis MN(US)
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    Golisano Institute for Sustainability and Center for Sustainable Mobility Rochester Institute of Technology, 111 Lomb Memorial Drive, Rochester, NY 14623;

    Golisano Institute for Sustainability and Center for Sustainable Mobility Rochester Institute of Technology, 111 Lomb Memorial Drive, Rochester, NY 14623;

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