Reimagining plastics waste as energy solutions: challenges and opportunities

Angie F. J. Tan, Sam Yu, Cheng Wang, Guan Heng Yeoh, Wey Yang Teoh, Alex C. K. Yip
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Abstract

Recent statistics portray a stark reality, particularly highlighting the inadequate recycling measures and the consequent environmental threats, most notably in developing nations. The global ramifications of plastic pollution are elucidated, specifically focusing on the alarming accumulation in regions such as the “Great Pacific Garbage Patch” and evolving waste management practices in Southeast Asian countries. We emphasize the significance of Waste-to-Energy (W2E) and Waste-to-Fuel (W2F) technologies, e.g., pyrolysis and gasification, for converting difficult-to-recycle plastic waste into a dense-energy source. However, we identify a critical gap in current research: the emission of CO2 during these processes. This perspective spotlights emergent CO2 capture and utilization technologies, underscoring their role as a robust turnkey solution in making W2E and W2F methods more sustainable and unleashing the huge potential of using waste plastics as a dense-energy source. The scientific community is urged to develop tailored solutions for reducing CO2 emissions in plastic waste conversion processes. This approach promotes circular resource utilization and realizes the socio-economic and environmental advantages of plastic waste utilization technologies, advocating their implementation in economically disadvantaged regions.

Abstract Image

将塑料废弃物重新想象为能源解决方案:挑战与机遇
最近的统计数据描绘了一个严酷的现实,特别强调了回收措施的不足以及随之而来的环境威胁,尤其是在发展中国家。我们阐明了塑料污染对全球的影响,特别关注 "太平洋大垃圾场 "等地区令人震惊的积累情况以及东南亚国家不断演变的废物管理方法。我们强调了废物变能源(W2E)和废物变燃料(W2F)技术(如热解和气化)将难以回收的塑料废物转化为高密度能源的重要性。然而,我们发现目前的研究存在一个关键缺口:这些过程中的二氧化碳排放。本视角重点介绍了新兴的二氧化碳捕集与利用技术,强调了这些技术作为强大的交钥匙解决方案的作用,可使 W2E 和 W2F 方法更具可持续性,并释放出利用废塑料作为高密度能源的巨大潜力。敦促科学界开发量身定制的解决方案,以减少塑料废物转化过程中的二氧化碳排放。这种方法促进了资源的循环利用,实现了塑料废物利用技术的社会经济和环境优势,并倡导在经济落后地区实施这些技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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