放热反应
催化作用
聚烯烃
吸热过程
材料科学
氢解
化学工程
热解
有机化学
化学
吸附
工程类
图层(电子)
作者
Wei Zhang,Johannes A. Lercher,Sung Min Kim,Michele L. Sarazen,Mingyuan He,Jingguang G. Chen
标识
DOI:10.1002/anie.202500559
摘要
Polyolefin waste is the largest polymer waste stream that could potentially serve as an advantageous hydrocarbon feedstock. Upcycling polyolefins poses significant challenges due to their inherent kinetic and thermodynamic stability. Traditional methods, such as thermal and catalytic cracking, are straightforward but require temperatures exceeding 400 °C for complete conversion because of thermodynamic constraints. We summarize and critically compare recent advances in upgrading of spent polyolefins and model reactants via kinetic (and thermodynamic) coupling of the endothermic C−C bond cleavage of polyolefins with exothermic reactions including hydrogenation, hydrogenolysis, metathesis, cyclization, oxidation, and alkylation. These approaches enable complete conversion to desired products at low temperatures (< 300 °C). The goal is to identify challenges and possible pathways for catalytic conversions that minimize energy and carbon footprint.
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