Suppr超能文献

变废为宝:源自炼油厂和煤炭副产品的先进碳基电极用于下一代储能

Transforming Waste into Wealth: Advanced Carbon-Based Electrodes Derived from Refinery and Coal By-Products for Next-Generation Energy Storage.

作者信息

Ferdous Ar Rafi, Shah Syed Shaheen, Shah Syed Niaz Ali, Johan Bashir Ahmed, Al Bari Md Abdullah, Aziz Md Abdul

机构信息

Department of Petroleum and Mining Engineering, Chittagong University of Engineering and Technology, Chittagong 4349, Bangladesh.

Department of Material Chemistry, Graduate School of Engineering, Kyoto University, Nishikyo-ku, Kyoto 615-8520, Japan.

出版信息

Molecules. 2024 Apr 30;29(9):2081. doi: 10.3390/molecules29092081.

Abstract

This comprehensive review addresses the need for sustainable and efficient energy storage technologies against escalating global energy demand and environmental concerns. It explores the innovative utilization of waste materials from oil refineries and coal processing industries as precursors for carbon-based electrodes in next-generation energy storage systems, including batteries and supercapacitors. These waste-derived carbon materials, such as semi-coke, coal gasification fine ash, coal tar pitch, petroleum coke, and petroleum vacuum residue, offer a promising alternative to conventional electrode materials. They present an optimal balance of high carbon content and enhanced electrochemical properties while promoting environmental sustainability through effectively repurposing waste materials from coal and hydrocarbon industries. This review systematically examines recent advancements in fabricating and applying waste-derived carbon-based electrodes. It delves into the methodologies for converting industrial by-products into high-quality carbon electrodes, with a particular emphasis on carbonization and activation processes tailored to enhance the electrochemical performance of the derived materials. Key findings indicate that while higher carbonization temperatures may impede the development of a porous structure, using KOH as an activating agent has proven effective in developing mesoporous structures conducive to ion transport and storage. Moreover, incorporating heteroatom doping (with elements such as sulfur, potassium, and nitrogen) has shown promise in enhancing surface interactions and facilitating the diffusion process through increased availability of active sites, thereby demonstrating the potential for improved storage capabilities. The electrochemical performance of these waste-derived carbon materials is evaluated across various configurations and electrolytes. Challenges and future directions are identified, highlighting the need for a deeper understanding of the microstructural characteristics that influence electrochemical performance and advocating for interdisciplinary research to achieve precise control over material properties. This review contributes to advancing electrode material technology and promotes environmental sustainability by repurposing industrial waste into valuable resources for energy storage. It underscores the potential of waste-derived carbon materials in sustainably meeting global energy storage demands.

摘要

这篇全面的综述探讨了面对不断增长的全球能源需求和环境问题,对可持续且高效的储能技术的需求。它探索了将炼油厂和煤炭加工行业的废料创新性地用作下一代储能系统(包括电池和超级电容器)中碳基电极的前驱体。这些源自废料的碳材料,如半焦、煤气化细灰、煤焦油沥青、石油焦和石油减压渣油,为传统电极材料提供了一个有前景的替代方案。它们在高碳含量和增强的电化学性能之间实现了最佳平衡,同时通过有效回收煤炭和烃类行业的废料来促进环境可持续性。本综述系统地研究了制备和应用源自废料的碳基电极的最新进展。它深入探讨了将工业副产品转化为高质量碳电极的方法,特别强调了为增强衍生材料的电化学性能而量身定制的碳化和活化过程。主要研究结果表明,虽然较高的碳化温度可能会阻碍多孔结构的形成,但使用氢氧化钾作为活化剂已被证明在形成有利于离子传输和存储的中孔结构方面是有效的。此外,掺入杂原子掺杂(如硫、钾和氮等元素)在增强表面相互作用和通过增加活性位点的可用性促进扩散过程方面显示出前景,从而证明了提高存储能力的潜力。这些源自废料的碳材料的电化学性能在各种配置和电解质中进行了评估。确定了挑战和未来方向,强调需要更深入地了解影响电化学性能的微观结构特征,并提倡跨学科研究以实现对材料性能的精确控制。本综述有助于推进电极材料技术,并通过将工业废料重新利用为储能的宝贵资源来促进环境可持续性。它强调了源自废料的碳材料在可持续满足全球储能需求方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be06/11085522/d81172c847f1/molecules-29-02081-g001.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验