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用于可持续水净化和同步发电的自发微生物脱盐技术进展:综述

Advancements in spontaneous microbial desalination technology for sustainable water purification and simultaneous power generation: A review.

作者信息

Patel Monika, Patel Shiv Singh, Kumar Pradip, Mondal Dehi Pada, Singh Bhupendra, Khan Mohd Akram, Singh Shiv

机构信息

Lightweight Metallic Materials, CSIR- Advanced Materials and Processes Research Institute (CSIR-AMPRI), Hoshangabad Road, Bhopal, Madhya Pradesh, 462026, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India; Water Resources Management and Rural Technology, CSIR- Advanced Materials and Processes Research Institute (CSIR-AMPRI), Hoshangabad Road, Bhopal, Madhya Pradesh, 462026, India.

出版信息

J Environ Manage. 2021 Nov 1;297:113374. doi: 10.1016/j.jenvman.2021.113374. Epub 2021 Jul 26.

Abstract

Population growth and rapid urbanization have put a lot of pressure on the already scarce freshwater around the globe. The availability of freshwater is not only limited but it is non-uniform also. Available desalination technologies help mitigate water shortage; however, these techniques are energy-intensive and unsustainable. Desalination technologies utilizing renewable energy and bio-electrochemical systems have been developed to achieve limited sustainability. With technological advancements, microbial desalination cell (MDC) has been developed which is capable of desalination, wastewater treatment, and power generation simultaneously. This review critically examined the performance of various MDC techniques concerning their stimulus parameters including COD removal, total desalination rate, total dissolved solids reduction rate, Coulombic efficiency, and power density. Limitations of MDCs have also been incorporated in the review. Work on MDC coupled with other robust desalination techniques offering advantages such as better desalination and more water recovery e.g. osmotic-MDC etc. has been included. Researchers have tremendously worked on MDCs with different electro-catalysts. Few of these are not sustainable and costly. Authors have reviewed critically with belief that it will pave a way for the commercialization of this eco-friendly technology.

摘要

人口增长和快速城市化给全球本就稀缺的淡水资源带来了巨大压力。淡水资源不仅有限,而且分布不均。现有的海水淡化技术有助于缓解水资源短缺问题;然而,这些技术能源密集且不可持续。为了实现有限的可持续性,人们已经开发出利用可再生能源和生物电化学系统的海水淡化技术。随着技术的进步,微生物脱盐电池(MDC)应运而生,它能够同时进行脱盐、废水处理和发电。本综述批判性地研究了各种MDC技术在其刺激参数方面的性能,包括化学需氧量去除率、总脱盐率、总溶解固体减少率、库仑效率和功率密度。本综述还纳入了MDC的局限性。文中还介绍了将MDC与其他强大的海水淡化技术相结合的研究工作,这些技术具有更好的脱盐效果和更高的水回收率等优点,例如渗透MDC等。研究人员对使用不同电催化剂的MDC进行了大量研究。其中一些既不可持续又成本高昂。作者进行了批判性综述,相信这将为这项环保技术的商业化铺平道路。

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