烯烃纤维
危险废物
碳纤维
氢
材料科学
工作(物理)
化学工程
还原(数学)
塑料废料
废物管理
化学
一氧化碳
碳氢化合物
纳米技术
碳纳米管
生命周期评估
催化作用
气相
有机化学
聚氯乙烯
相(物质)
镍
城市固体废物
作者
Qingyun Bai,Jiuyi Wang,Xing Xu,Xuning Li,Xie Quan,Yanbiao Liu
标识
DOI:10.1021/acs.est.6c07414
摘要
Poly(vinyl chloride) (PVC) poses a persistent environmental challenge due to its high chlorine content and additive-mediated recalcitrance. Herein, we report an N,O-dual-coordinated iron single-atom catalyst (Fe–N 2 O 2 -hCN) integrated with palladium nanoparticles (Pd NPs) for efficient hydrothermal Fenton-like upcycling of PVC into fuel-range hydrocarbons. The asymmetric Fe–N 2 O 2 configuration modulates the electronic structure of Fe centers, promoting H 2 O 2 activation and hydroxyl radical generation for efficient C–Cl and C–C bond cleavage under mild conditions, outperforming the conventional Fe–N 4 catalyst. The bifunctional Pd NPs/Fe–N 2 O 2 -hCN system achieves high PVC degradation efficiency (97.38%) and near-complete dechlorination, while selectively hydrogenating depolymerized intermediates into fuel-range alkanes (C 3 –C 20 ) with a high selectivity (86.01%). Mechanistic studies reveal enhanced electron transfer and a lowered energy barrier for H 2 O 2 dissociation, with Pd NPs generating reactive hydrogen species for olefin saturation. Life cycle assessment (LCA) demonstrates a 77% reduction in carbon emissions and significantly lower eco-costs than incineration. This work provides a coordination-engineered platform for converting hazardous plastic waste into valuable fuels, advancing a circular plastic economy.
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