Paving the way for biochar production, supply chain, and applications toward a sustainable future

IF 3.9 Cleaner Waste Systems Pub Date : 2025-03-01 Epub Date: 2025-02-07 DOI:10.1016/j.clwas.2025.100227
Siyuan Zhou , Xiaohan Yang , Thien-Khanh Tran , Jian Shen , Chunjiang An
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Abstract

Biochar, which results from biomass pyrolysis in the absence of oxygen, has been considered a beneficial substance that can enhance environmental benefits. This paper discusses its manufacturing, issues, and uses while focusing on the circular economy aspect. In the past, biochar was used to enhance soil fertility and water treatment; nowadays, it is used for the supply of energy, cleaning up pollutants, and construction materials. The use of new feedstocks like algae and invasive plant species enhances its production and applications. In addition, with the help of digital technology, the biochar supply chain has been improved, thus making it productive and efficient. Biochar emerges as a key factor and beneficiary of green technology advancements that have catalyzed applications in batteries and supercapacitors within energy storage systems. Furthermore, biochar can play a role in the sequestration and reuse of greenhouse gases as well as the reduction of pollution to the environment. Lastly, this research provides an overview of how biochar production and usage, in the face of global environmental challenges and dilemmas, should be enhanced and developed to support sustainable industrialization.
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为可持续未来的生物炭生产、供应链和应用铺平道路
生物炭是在无氧条件下由生物质热解产生的,被认为是一种可以提高环境效益的有益物质。本文从循环经济的角度对其制造、存在的问题和应用进行了探讨。过去,生物炭被用于提高土壤肥力和水处理;如今,它被用于提供能源、清除污染物和建筑材料。藻类和入侵植物等新原料的使用提高了其生产和应用。此外,在数字技术的帮助下,生物炭供应链得到了改善,从而提高了生产效率和效率。生物炭是绿色技术进步的关键因素和受益者,它催化了储能系统中电池和超级电容器的应用。此外,生物炭可以在温室气体的封存和再利用以及减少对环境的污染方面发挥作用。最后,本研究概述了面对全球环境挑战和困境,应如何加强和发展生物炭的生产和利用,以支持可持续工业化。
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