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生物质衍生多孔碳复合材料在储能应用中的潜在发展

Potential Development of Porous Carbon Composites Generated from the Biomass for Energy Storage Applications.

作者信息

Saeed Mohsin, Shahzad Umer, Fazle Rabbee Muhammad, Manzar Rabia, Al-Humaidi Jehan Y, Siddique Amna, Sheikh Tahir Ali, Althomali Raed H, Qamar Tariq, Rahman Mohammed M

机构信息

Department of Chemistry, Faculty of Science, King Abdulaziz University, Jeddah, 21589, Saudi Arabia.

Department of Biotechnology, Yeungnam University, Gyeongsan, 38541, South Korea.

出版信息

Chem Asian J. 2024 Sep 2;19(17):e202400394. doi: 10.1002/asia.202400394. Epub 2024 Jul 24.

Abstract

Creating an innovative and environmentally friendly energy storage system is of vital importance due to the growing number of environmental problems and the fast exhaustion of fossil fuels. Energy storage using porous carbon composites generated from biomass has attracted a lot of attention in the research community. This is primarily due to the environmentally friendly nature, abundant availability in nature, accessibility, affordability, and long-term viability of macro/meso/microporous carbon sourced from a variety of biological materials. Extensive information on the design and the building of an energy storage device that uses supercapacitors was a part of this research. This study examines both porous carbon electrodes (ranging from 44 to 1050 F/g) and biomasses with a large surface area (between 215 and 3532 m/g). Supposedly, these electrodes have a capacitive retention performance of about 99.7 percent after 1000 cycles. The energy density of symmetric supercapacitors is also considered, with values between 5.1 and 138.4 Wh/kg. In this review, we look at the basic structures of biomass and how they affect porous carbon synthesis. It also discusses the effects of different structured porous carbon materials on electrochemical performance and analyzes them. In recent developments, significant steps have been made across various fields including fuel cells, carbon capture, and the utilization of biomass-derived carbonaceous nanoparticles. Notably, our study delves into the innovative energy conversion and storage potentials inherent in these materials. This comprehensive investigation seeks to lay the foundation for forthcoming energy storage research endeavors by delineating the current advancements and anticipating potential challenges in fabricating porous carbon composites sourced from biomass.

摘要

由于环境问题日益增多以及化石燃料迅速枯竭,创建创新且环保的储能系统至关重要。利用生物质生成的多孔碳复合材料进行储能在研究领域已引起广泛关注。这主要归因于源自各种生物材料的宏观/中观/微孔碳具有环境友好的特性、在自然界中丰富的可获取性、易获得性、可承受性以及长期可行性。关于使用超级电容器的储能装置的设计和构建的广泛信息是本研究的一部分。本研究考察了多孔碳电极(电容范围为44至1050 F/g)以及具有大表面积的生物质(表面积在215至3532 m/g之间)。据推测,这些电极在1000次循环后具有约99.7%的电容保持性能。还考虑了对称超级电容器的能量密度,其值在5.1至138.4 Wh/kg之间。在本综述中,我们研究了生物质的基本结构及其对多孔碳合成的影响。它还讨论了不同结构的多孔碳材料对电化学性能的影响并进行分析。在最近的发展中,包括燃料电池、碳捕获以及生物质衍生的碳质纳米颗粒的利用等各个领域都取得了重大进展。值得注意的是,我们的研究深入探讨了这些材料固有的创新能量转换和存储潜力。这项全面的调查旨在通过描绘当前的进展并预测制造源自生物质的多孔碳复合材料时可能面临的挑战,为未来的储能研究努力奠定基础。

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