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Efficiently 'pumping out' value-added resources from wastewater by bioelectrochemical systems: A review from energy perspectives

机译:通过生物电化学系统有效地从废水中“抽出”增值资源:能源角度的回顾

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Bioelectrochemical systems (BES) can accomplish simultaneous wastewater treatment and resource recovery via interactions between microbes and electrodes. Often deemed as "energy efficient" technologies, BES have not been well evaluated for their energy performance, such as energy production and consumption. In this work, we have conducted a review and analysis of energy balance in BES with parameters like normalized energy recovery, specific energy consumption, and net energy production. Several BES representatives based on their functions were selected for analysis, including direct electricity generation in microbial fuel cells, hydrogen production in microbial electrolysis cells, nitrogen recovery in BES, chemical production in microbial electrosynthesis cells, and desalination in microbial desalination cells. Energy performance was normalized to water volume (kWh m(-3)), organic removal (kWh kg COD-1), nitrogen recovery (kWh kg N-1), chemical production (kWh kg(-1)), or removed salt during desalination (kWh kg(-1)). The key operating factors such as pumping system (recirculation/feeding pumps) and external power supply were discussed for their effects on energy performance. This is an in-depth analysis of energy performance of various BES and expected to encourage more thinking, analysis, and presentation of energy data towards appropriate research and development of BES technology for resource recovery from wastewater. (C) 2017 Elsevier Ltd. All rights reserved.
机译:生物电化学系统(BES)可以通过微生物和电极之间的相互作用完成废水的同时处理和资源回收。 BES通常被认为是“节能”技术,但尚未对其能源性能(例如能源生产和消耗)进行很好的评估。在这项工作中,我们对BES中的能量平衡进行了回顾和分析,并使用了标准化能量回收,比能耗和净能量生产等参数。根据其功能选择了多个BES代表进行分析,包括微生物燃料电池中的直接发电,微生物电解池中的氢产生,BES中的氮回收,微生物电合成池中的化学产生以及微生物脱盐池中的脱盐。将能源性能标准化为水量(kWh m(-3)),有机物去除量(kWh kg COD-1),氮回收量(kWh kg N-1),化学生产量(kWh kg(-1))或去除的盐分脱盐期间(kWh kg(-1))。讨论了诸如泵送系统(再循环/给水泵)和外部电源之类的关键操作因素对能源性能的影响。这是对各种BES能源性能的深入分析,并有望鼓励对能源数据进行更多的思考,分析和展示,以期对BES技术进行适当的研究和开发以从废水中回收资源。 (C)2017 Elsevier Ltd.保留所有权利。

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