循环经济
持续性
材料科学
塑料污染
可持续发展
纳米材料基催化剂
纳米技术
业务
环境污染
价值(数学)
环境经济学
废物管理
氢
可再生能源
蒸汽重整
化石燃料
产业组织
制氢
塑料废料
附加值
自然资源经济学
桥接(联网)
作者
Eng‐Soon Gan,Wee‐Jun Ong
标识
DOI:10.1002/adfm.202525034
摘要
Abstract Escalating plastic pollution demands innovative strategies that couple waste mitigation with clean energy generation. Artificial photosynthesis‐driven plastic reforming (APPR) has emerged as a solar‐powered “trash‐to‐treasure” approach aligned with the broader goals of circular economy and carbon neutrality, positioning it as a compelling frontier for converting plastics into green hydrogen and value‐added chemicals. This review examines advances in nanocatalyst engineering, emphasizing structure‐activity relationships that underpin photocatalytic efficiency across cocatalyst loading, heterojunction construction, lattice and structure engineering, and morphological engineering. The socioeconomic and sustainability dimensions of APPR are evaluated relative to alternative plastic upcycling technologies, offering a critical perspective on its real‐world potential in terms of product marketability and environmental footprint. Finally, forward‐looking strategies are presented to address translational challenges in bridging nanoscale catalyst innovations with macroscale APPR applications for carbon‐neutral hydrogen and marketable chemical production.
科研通智能强力驱动
Strongly Powered by AbleSci AI