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用于废水处理的陶瓷微生物燃料电池(C-MFC):一篇综述

Ceramic-microbial fuel cell (C-MFC) for waste water treatment: A mini review.

作者信息

James Anina

机构信息

Department of Zoology, Deen Dayal Upadhyaya College, University of Delhi, Dwarka Sector 3, Delhi, 110078, India.

出版信息

Environ Res. 2022 Jul;210:112963. doi: 10.1016/j.envres.2022.112963. Epub 2022 Feb 23.

DOI:10.1016/j.envres.2022.112963
PMID:35217013
Abstract

Microbial fuel cell (MFC) is a bio-electrochemical system that utilizes the activity of electrogenic bacteria to generate electricity. When wastewater is used as feed in MFC, its organic constituents are hydrolyzed and oxidized by the bacteria. Hence, this technology is a source of clean electricity while simultaneously treating wastewater. Over the years much research has been done to improve its efficiency as well as to reduce the cost of implementation and functioning. However, scalability and commercialization of this technology still faces several challenges. This mini review discusses the use of ceramics in MFCs using wastewater feed as a method of overcoming the current technological challenges. Ceramics can be used as separators, chassis or electrode, conferring facile chemical and structural stability. The material is low-cost, environment-friendly and easily available. Studies reporting stacked configurations have been mentioned, and those that have reported field studies and technology oriented practical applications. Critical analysis of the scalability of the use of ceramics for the dual purpose of electricity generation as well as wastewater treatment has been done in this review. Future research directives towards potential sustainable commercialization have also been mentioned. C-MFC is a promising technology and the primary aim of this review is to help enhance the knowledge base for the optimization of use of ceramics in MFC to achieve large-scale clean electricity generation and sewage treatment.

摘要

微生物燃料电池(MFC)是一种生物电化学系统,它利用产电细菌的活性来发电。当废水用作MFC的进料时,其有机成分会被细菌水解和氧化。因此,这项技术在处理废水的同时也是一种清洁电力的来源。多年来,人们进行了大量研究以提高其效率,并降低实施和运行成本。然而,这项技术的可扩展性和商业化仍面临若干挑战。本综述讨论了在以废水为进料的MFC中使用陶瓷作为克服当前技术挑战的一种方法。陶瓷可用作分离器、底盘或电极,具有良好的化学和结构稳定性。这种材料成本低、环保且易于获取。文中提及了报道堆叠配置的研究,以及那些报道了实地研究和面向技术的实际应用的研究。本综述对将陶瓷用于发电和废水处理双重目的的可扩展性进行了批判性分析。还提到了未来潜在可持续商业化的研究方向。C-MFC是一项有前景的技术,本综述的主要目的是帮助增强在MFC中优化使用陶瓷以实现大规模清洁发电和污水处理的知识基础。

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