A concise review on wastewater treatment through microbial fuel cell: sustainable and holistic approach

IF 5.8 3区 环境科学与生态学 0 ENVIRONMENTAL SCIENCES Environmental Science and Pollution Research Pub Date : 2023-12-29 DOI:10.1007/s11356-023-31696-x
Saloni Kunwar, Neha Pandey, Pooja Bhatnagar, Gurasees Chadha, Neha Rawat, Naveen Chandra Joshi, Mahipal Singh Tomar, Murat Eyvaz, Prateek Gururani
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Abstract

Research for alternative sources for producing renewable energy is rising exponentially, and consequently, microbial fuel cells (MFCs) can be seen as a promising approach for sustainable energy production and wastewater purification. In recent years, MFC is widely utilized for wastewater treatment in which the removal efficiency of heavy metal ranges from 75–95%. They are considered as green and sustainable technology that contributes to environmental safety by reducing the demand for fossil fuels, diminishes carbon emissions, and reverses the trend of global warming. Moreover, significant reduction potential can be seen for other parameters such as total carbon oxygen demand (TCOD), soluble carbon oxygen demand (SCOD), total suspended solids (TSS), and total nitrogen (TN). Furthermore, certain problems like economic aspects, model and design of MFCs, type of electrode material, electrode cost, and concept of electro-microbiology limit the commercialization of MFC technology. As a result, MFC has never been accepted as an appreciable competitor in the area of treating wastewater or renewable energy. Therefore, more efforts are still required to develop a useful model for generating safe, clean, and CO2 emission-free renewable energy along with wastewater treatment. The purpose of this review is to provide a deep understanding of the working mechanism and design of MFC technology responsible for the removal of different pollutants from wastewater and generate power density. Existing studies related to the implementation of MFC technology in the wastewater treatment process along with the factors affecting its functioning and power outcomes have also been highlighted.

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通过微生物燃料电池处理废水的简明综述:可持续的综合方法。
对生产可再生能源的替代能源的研究正在急剧增加,因此,微生物燃料电池(MFC)可被视为可持续能源生产和废水净化的一种前景广阔的方法。近年来,MFC 被广泛用于废水处理,其重金属去除率在 75-95% 之间。它们被认为是绿色和可持续的技术,通过减少对化石燃料的需求、减少碳排放和扭转全球变暖的趋势来促进环境安全。此外,总碳氧需求量 (TCOD)、可溶性碳氧需求量 (SCOD)、总悬浮固体 (TSS) 和总氮 (TN) 等其他参数也具有明显的减排潜力。此外,经济方面、MFC 的模型和设计、电极材料类型、电极成本和电微生物学概念等问题也限制了 MFC 技术的商业化。因此,在废水处理或可再生能源领域,MFC 一直未被视为一个重要的竞争者。因此,还需要做出更多努力,才能开发出一种有用的模式,在废水处理的同时产生安全、清洁、无二氧化碳排放的可再生能源。本综述旨在深入了解 MFC 技术的工作机制和设计,该技术负责去除废水中的不同污染物并产生功率密度。此外,还重点介绍了与在废水处理过程中实施 MFC 技术有关的现有研究,以及影响其功能和发电结果的因素。
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来源期刊
CiteScore
8.70
自引率
17.20%
发文量
6549
审稿时长
3.8 months
期刊介绍: Environmental Science and Pollution Research (ESPR) serves the international community in all areas of Environmental Science and related subjects with emphasis on chemical compounds. This includes: - Terrestrial Biology and Ecology - Aquatic Biology and Ecology - Atmospheric Chemistry - Environmental Microbiology/Biobased Energy Sources - Phytoremediation and Ecosystem Restoration - Environmental Analyses and Monitoring - Assessment of Risks and Interactions of Pollutants in the Environment - Conservation Biology and Sustainable Agriculture - Impact of Chemicals/Pollutants on Human and Animal Health It reports from a broad interdisciplinary outlook.
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