首页> 外文会议>EU-Korea Conference on Science and Technology >Application of Bioelectrochemical Process (BES) forElectricity Generation and Sustainable Wastewater Treatment
【24h】

Application of Bioelectrochemical Process (BES) forElectricity Generation and Sustainable Wastewater Treatment

机译:生物电化学过程的应用(BES)电力产生和可持续废水处理

获取原文

摘要

Bioelectrochemical system such as microbial fuel cells (MFCs) and mi-crobial electrolysis cell are an emerging technology which converts biodegradable organic matter to electrical energy or hydrogen using a biofilm on the electrode as the biocatalyst. It has recently been shown that waste-to-energy technology based on MFC can treat organic contaminant in domestic or industrial wastewater and simultaneously produce electricity. The maximum power density increased up to 1kW/m~3 based on reactor volume. Bioelectrochemical systems may reduce the energy consumption for wastewater treatment by replacing energy intensive aeration of present treatment systems, while generate electrical energy from waste. In addition, the biomass production in MFCs has been reported to be 10-50% of conventional wastewater treatment, leading to reduce environmental impact and disposal costs. Various electrochemically active bacteria metabolize biodegradable organic compounds then discharge electrons to an extracellular electron acceptor for bacterial respiration. These bacteria also transfer electrons to electrodes by direct electron transfer, electron mediators or shuttles, and electrically conductive nanowires. Investigation of bacterial electron transport mechanisms may improve understanding of the biomaterial involved and metabolic pathways as well as improving power from MFCs. Biofuel cell systems require interdisciplinary research ranging from electrochemistry, microbiology, material science and surface chemistry to engineering such as reactor design, operation and modelling. Collaboration within each study and integration of systems might increase the performance and feasibility of BES process for sustainable energy.
机译:诸如微生物燃料电池(MFCs)和Mi-Crobial电解细胞的生物电化学系统是一种新兴技术,其使用电极上的生物膜作为生物催化剂将可生物降解的有机物质转化为电能或氢气。最近显示,基于MFC的废物到能源技术可以在国内或工业废水中治疗有机污染物,同时产生电力。基于反应堆体积,最大功率密度增加到1kW / m〜3。通过更换本治疗系统的能量强化曝气,生物电化学系统可以降低废水处理的能量消耗,同时从废物产生电能。此外,据报道,MFCS中的生物质生产是常规废水处理的10-50%,导致对环境的影响和处置成本降低。各种电化学活性细菌代谢可生物降解的有机化合物,然后将电子放电给细胞外电子受体以进行细菌呼吸。这些细菌还通过直接电子传递,电子介质或梭子和导电纳米线将电子传递给电极。对细菌电子传输机制的研究可以改善对生物材料涉及和代谢途径的理解以及改善MFC的功率。生物燃料电池系统需要跨学科研究,从电化学,微生物,材料科学和表面化学到诸如反应器设计,操作和建模等工程。每项研究中的合作和系统的整合可能会增加可持续能量的BES过程的性能和可行性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号