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Biorefinery perspectives of microbial electrolysis cells (MECs) for hydrogen and valuable chemicals production through wastewater treatment

机译:通过废水处理对微生物电解细胞(MEC)进行微生物电解细胞(MEC)的生物术透视

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The degradation of waste organics through microbial electrolysis cell (MEC) generates hydrogen (Hsub2/sub) gas in an economically efficient way. MEC is known as the advanced concept of the microbial fuel cell (MFC) but requires a minor amount of supplementary electrical energy to produce Hsub2/sub in the cathode microenvironment. Different bio/processes could be integrated to generate additional energy from the substrate used in MECs, which would make the whole process more sustainable. On the other hand, the energy required to drive the MEC mechanism could be harvested from renewable energy sources. These integrations could advance the efficiency and economic feasibility of the whole process. The present review critically discusses all the integrations investigated to date with MECs such as MFCs, anaerobic digestion, microbial desalination cells, membrane bioreactors, solar energy harvesting systems, etc. Energy generating non-biological and eco-friendly processes (such as dye-sensitized solar cells and thermoelectric microconverters) which could also be integrated with MECs, are also presented and reviewed. Achieving a comprehensive understanding about MEC integration could help with developing advanced biorefineries towards more sustainable energy management. Finally, the challenges related to the scaling up of these processes are also scrutinized with the aim to identify the practical hurdles faced in the MEC processes.
机译:通过微生物电解细胞(MEC)通过微生物电池(MEC)的降解以经济有效的方式产生氢气(H 2 )气体。 MEC被称为微生物燃料电池(MFC)的先进概念,但需要少量的补充电能,以在阴极微环境中产生H 2 。可以集成不同的生物/过程以从MEC中使用的基板产生额外的能量,这将使整个过程更加可持续。另一方面,可以从可再生能源收获驱动MEC机制所需的能量。这些集成可以推进整个过程的效率和经济可行性。本综述批判性地讨论了迄今为止迄今为止的MFC,厌氧消化,微生物脱盐细胞,膜生物反应器,太阳能收集系统等的所有集成。能量产生非生物和环保过程(如染料敏化还可以介绍和审查也可以与MEC集成的太阳能电池和热电微谐波。实现对MEC集成的全面了解,可以帮助开发高级生物猎物,以实现更可持续的能源管理。最后,还审查了与扩大这些过程的挑战,目的是识别MEC过程中面临的实际障碍。

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