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微生物电解:一种从工业废水中进行处理和资源回收的有前途的方法。

Microbial electrolysis: a promising approach for treatment and resource recovery from industrial wastewater.

机构信息

Paryavaran Bhavan, Gujarat Pollution Control Board, Gandhinagar, India.

School of Environment and Sustainable Development, Central University of Gujarat, Gandhinagar, India.

出版信息

Bioengineered. 2022 Apr;13(4):8115-8134. doi: 10.1080/21655979.2022.2051842.

Abstract

Wastewater is one of the most common by-products of almost every industrial process. Treatment of wastewater alone, before disposal, necessitates an excess of energy. Environmental concerns over the use of fossil fuels as a source of energy have prompted a surge in demand for alternative energy sources and the development of sophisticated procedures to extract energy from unconventional sources. Treatment of municipal and industrial wastewater alone accounts for about 3% of global electricity use while the amount of energy embedded in the waste is at least 2-4 times greater than the energy required to treat the same effluent. The microbial electrolysis cell (MEC) is one of the most efficient technologies for waste-to-product conversion that uses electrochemically active bacteria to convert organic matter into hydrogen or a variety of by-products without polluting the environment. This paper highlights existing obstacles and future potential in the integration of Microbial Electrolysis Cell with other processes like anaerobic digestion coupled system, anaerobic membrane bioreactor and thermoelectric micro converter.

摘要

废水是几乎每个工业过程中最常见的副产品之一。在处理之前,仅对废水进行处理就需要消耗过多的能源。对化石燃料作为能源使用的环境问题的关注,促使人们对替代能源的需求激增,并开发了从非传统能源中提取能源的复杂工艺。仅处理城市和工业废水就占全球用电量的 3%左右,而废水中所含的能量至少是处理相同废水所需能量的 2-4 倍。微生物电解池 (MEC) 是一种将废物转化为产品的最有效技术之一,它利用电化学活性细菌将有机物转化为氢气或多种副产品,而不会对环境造成污染。本文重点介绍了微生物电解池与其他工艺(如厌氧消化耦合系统、厌氧膜生物反应器和热电微转换器)集成的现有障碍和未来潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/394c/9161901/678ca9725953/KBIE_A_2051842_UF0001_OC.jpg

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