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首页> 外文期刊>Frontiers of environmental science & eng >'NEW' resource recovery from wastewater using bioelectrochemical systems: Moving forward with functions
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'NEW' resource recovery from wastewater using bioelectrochemical systems: Moving forward with functions

机译:使用生物电化学系统从废水中“新”资源回收:功能向前发展

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摘要

Bioelectrochemical systems (BES) have been extensively studied for resource recovery from wastewater. By taking advantage of interactions between microorganisms and electrodes, BES can accomplish wastewater treatment while simultaneously recovering various resources including nutrients, energy and water ("NEW"). Despite much progress in laboratory studies, BES have not been advanced to practical applications. This paper aims to provide some subjective opinions and a concise discussion of several key challenges in BES-based resource recovery and help identify the potential application niches that may guide further technological development. In addition to further increasing recovery efficiency, it is also important to have more focus on the applications of the recovered resources such as how to use the harvested electricity and gaseous energy and how to separate the recovered nutrients in an energy-efficient way. A change in mindset for energy performance of BES is necessary to understand overall energy production and consumption. Scaling up BES can go through laboratory scale, transitional scale, and then pilot scale. Using functions as driving forces for BES research and development will better guide the investment of efforts. (C) Higher Education Press and Springer- Verlag GmbH Germany, part of Springer Nature 2018
机译:为了从废水中回收资源,已经对生物电化学系统(BES)进行了广泛的研究。通过利用微生物与电极之间的相互作用,BES可以完成废水处理,同时回收包括养分,能量和水在内的各种资源(“新”)。尽管实验室研究取得了很大进展,但BES尚未进入实际应用。本文旨在就基于BES的资源恢复中的几个关键挑战提供一些主观见​​解和简要讨论,并帮助确定可能指导进一步技术发展的潜在应用领域。除了进一步提高回收效率外,重要的是更加关注回收资源的应用,例如如何使用收集的电能和气态能量以及如何以节能的方式分离回收的养分。为了了解总体能源生产和消耗,必须改变BES能源绩效的观念。扩大BES可以经历实验室规模,过渡规模,然后是中试规模。利用功能作为BES研发的驱动力将更好地指导工作投入。 (C)高等教育出版社和Springer- Verlag GmbH德国,Springer Nature 2018的一部分

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