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Third generation in bio-electrochemical system research - A systematic review on mechanisms for recovery of valuable by-products from wastewater

机译:第三代生物电化学系统研究-从废水中回收有价值的副产物的机制的系统综述

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Bio-electrochemical system (BES) mainly focused on bio-energy generation in the form of methane and bio-hydrogen while treating wastewater in anodic chamber. The potential of BES to produce intermittent chemicals and high-value derivatives has been immensely explored since last decade by adopting modified reaction kinetics. This review article deals with the mechanism of recovery of resources and by-products during redox reactions in BES. The BES offers flexible platform for both oxidation and reduction processes. Development of BES for product synthesis via bio-electrochemical pathway has greatly extended the new horizon in bioenergy research. Microbial fuel cell and microbial electrolysis cell, the major two variants of BES, are useful to convert the energy present in wastewater to recover resources like bio-electricity, hydrogen, nutrients, heavy metals, minerals and industrial chemicals. Thus, after improving the performance of BES, widening the scope for products recovery by developing better understanding of the process and with efforts to reduce its production cost, it can become a sustainable technology for treatment of wastewater with added advantage of recovery of resources and bio-energy generation.
机译:生物电化学系统(BES)主要致力于以甲烷和生物氢的形式产生生物能,同时处理阳极室中的废水。自上个十年以来,通过采用改进的反应动力学,人们已经极大地探索了BES生产间歇性化学品和高价值衍生物的潜力。这篇评论文章涉及在BES的氧化还原反应过程中资源和副产物的回收机制。 BES为氧化和还原过程提供了灵活的平台。通过生物电化学途径合成产品的BES的开发极大地扩展了生物能源研究的新视野。微生物燃料电池和微生物电解电池是BES的主要两个变体,可用于转换废水中的能量以回收资源,例如生物电,氢,养分,重金属,矿物质和工业化学品。因此,在提高BES的性能,通过更好地了解过程并努力降低其生产成本来扩大产品回收的范围之后,它可以成为一种可持续的废水处理技术,并具有资源和生物回收的附加优势。 -能量产生。

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