聚氯乙烯
碳化
光热治疗
废物管理
材料科学
碳纤维
碳足迹
热解
环境科学
纳米技术
复合材料
工程类
扫描电子显微镜
生态学
复合数
温室气体
生物
作者
Hao Han,Penglei Yan,Qingye Li,Shuyi Zhang,Binglei Jiao,Gaolei Wei,Zhao Wang,Muhan Cao,Panpan Xu,Qiao Zhang,Jinxing Chen
标识
DOI:10.1021/acs.est.4c07350
摘要
Upgrading the most difficult-to-recycle waste polyvinyl chloride remains a significant challenge due to the potential formation of highly toxic substances, such as polychlorinated biphenyls. Here, we introduce a paradigm shift with a mild photothermal dechlorination–carbonization process that converts waste polyvinyl chloride plastics into valuable carbon materials. Through detailed techno-economic assessment (TEA) process modeling, based on recycling 96,000 tons of plastics, we demonstrate that utilizing clean solar energy for photothermal conversion can save approximately 2.34 × 1012 kJ electricity and reduce the carbon footprint by 261,912.2 tons compared to traditional thermal-driven methods, offering clear environmental benefits. Notably, this photothermal recycling method can process more than 10 types of postconsumer and mixed waste polyvinyl chloride plastics, yielding carbon materials that exhibit excellent performance as components in sodium-ion energy storage batteries. Photothermal catalytic recycling of plastics thus emerges as a green and sustainable technology with promising applications.
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