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利用微生物燃料电池的力量作为开创性的绿色技术:通过创新纳米技术推进可持续能源和废水处理。

Harnessing the power of microbial fuel cells as pioneering green technology: advancing sustainable energy and wastewater treatment through innovative nanotechnology.

作者信息

Ali Hadeer E, Hemdan Bahaa A, El-Naggar Mehrez E, El-Liethy Mohamed Azab, Jadhav Dipak A, El-Hendawy Hoda H, Ali M, El-Taweel Gamila E

机构信息

Water Pollution Research Department, Environment and Climate Change Research Institute, National Research Centre, 33 El-Bohouth St., Dokki, 12622, Giza, Egypt.

Pre-Treatment and Finishing of Cellulosic Fabric Department, Textile Research and Technology Institute, National Research Centre, 33 EL-Bohouth St., Dokki, 12622, Giza, Egypt.

出版信息

Bioprocess Biosyst Eng. 2025 Mar;48(3):343-366. doi: 10.1007/s00449-024-03115-z. Epub 2025 Jan 4.

Abstract

The purpose of this review is to gain attention about intro the advanced and green technology that has dual action for both clean wastewater and produce energy. Water scarcity and the continuous energy crisis have arisen as major worldwide concerns, requiring the creation of ecologically friendly and sustainable energy alternatives. The rapid exhaustion of fossil resources needs the development of alternative energy sources that reduce carbon emissions while maintaining ecological balance. Microbial fuel cells (MFCs) provide a viable option by producing power from the oxidation of organic and biodegradable chemicals using microorganisms as natural catalysts. This technology has sparked widespread attention due to its combined potential to cleanse wastewater and recover energy. The review presents a complete examination of current advances in MFCs technology, with a focus on the crucial role of anode materials in improving their performance. Moreover, different anode materials and their nanoscale modifications are being studied to boost MFC efficiency. This current review also focused on the effects of surface modifications and different anode compositions on power generation and system stability. It also investigates the electrochemical principles behind these enhancements, providing insights into the economic potential of MFCs. MFCs provide a long-term solution to energy and environmental issues by addressing both wastewater treatment and energy production.

摘要

本综述的目的是引起人们对先进绿色技术的关注,该技术对清洁废水和产生能源具有双重作用。水资源短缺和持续的能源危机已成为全球主要关注的问题,需要创造生态友好型和可持续的能源替代品。化石资源的迅速枯竭需要开发替代能源,在保持生态平衡的同时减少碳排放。微生物燃料电池(MFCs)提供了一种可行的选择,即利用微生物作为天然催化剂,通过有机和可生物降解化学物质的氧化来发电。这项技术因其净化废水和回收能源的综合潜力而引起了广泛关注。本综述全面考察了MFCs技术的当前进展,重点关注阳极材料在提高其性能方面的关键作用。此外,正在研究不同的阳极材料及其纳米级改性,以提高MFC的效率。本综述还关注表面改性和不同阳极组成对发电和系统稳定性的影响。它还研究了这些增强作用背后的电化学原理,深入了解了MFCs的经济潜力。MFCs通过解决废水处理和能源生产问题,为能源和环境问题提供了一个长期解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d45e/11865155/446654e01ea3/449_2024_3115_Fig1_HTML.jpg

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