Ismail Intan Syafiqah, Othman Muhamad Farhan Haqeem, Rashidi Nor Adilla, Yusup Suzana
Chemical Engineering Department, Higher Institution of Center of Excellence (HICoE): Centre for Biofuel and Biochemical Research (CBBR), Institute of Self-Sustainable Building, Universiti Teknologi PETRONAS, Seri Iskandar, Malaysia.
Generation Unit (Fuel & Combustion), TNB Research Sdn. Bhd., No 1, Kawasan Institusi Penyelidikan, Jalan Ayer Hitam, 43000 Kajang, Malaysia.
Biomass Convers Biorefin. 2023 Jan 17:1-17. doi: 10.1007/s13399-023-03763-3.
The abundance of food waste across the globe has called for the mitigation and reduction of these discarded wastes. Herein, the potential of biochar derived from food waste is unquestionable as it provides a sustainable way of utilizing the abundance of available biomass, as well as an effective way of preserving the ecosystem through the reduction of concerning environmental issues. This review focuses on the food waste-based biochar as advanced electrode materials in the energy storage devices. Efforts have been made to present and discuss the current exploration of the food waste utilization, along with the biochar production technologies through thermochemical conversion, including combustion, gasification, and pyrolysis method. Finding its limitation in literatures, discussion on the food waste-based biochar fabrication method as the electrode materials is elaborated, alongside the current food waste-based biochar that has been explored in the energy application thus far. Towards the end, the outlook and perspective on the further development of food waste-based biochar have been outlined.
全球食物浪费现象严重,因此需要减轻和减少这些废弃垃圾。在此,源自食物垃圾的生物炭潜力不容置疑,因为它提供了一种可持续利用大量可用生物质的方式,也是通过减少相关环境问题来保护生态系统的有效途径。本综述聚焦于基于食物垃圾的生物炭作为储能设备中的先进电极材料。已努力呈现并讨论当前对食物垃圾利用的探索,以及通过热化学转化(包括燃烧、气化和热解方法)生产生物炭的技术。鉴于在文献中发现了其局限性,本文详细讨论了基于食物垃圾的生物炭作为电极材料的制备方法,以及目前在能源应用中已探索的基于食物垃圾的生物炭。最后,概述了基于食物垃圾的生物炭进一步发展的前景和展望。