聚烯烃
聚氯乙烯
化学
催化作用
氯乙烯
有机化学
聚乙烯
共聚物
化学改性
高分子化学
氯化物
烧焦
氯化聚氯乙烯
聚合物
复分解
化学反应
化学工程
烯烃纤维
二氯甲烷
化学工业
材料科学
盐变质反应
同种类的
格拉布催化剂
环氧化物
聚酯纤维
焚化
金属
烯烃
双环戊二烯
均相催化
双键
作者
Christophe Vos,Galahad O’Rourke,Dirk De Vos
标识
DOI:10.1021/acssuschemeng.5c11948
摘要
The chemical recycling of chlorinated plastics is industrially challenging due to the release of corrosive HCl and char formation. In this work, a novel upcycling route for chlorinated plastics, including polyvinyl chloride (PVC), polyvinylidene chloride (PVDC), and chlorinated polyethylene (CPE), is developed. When ZnCl2-catalyzed dehydrochlorination (DHC) is combined with tandem DHC-hydrogenation, using a homogeneous Ru hydrogenation catalyst and metal oxides as a HCl trap, each plastic type can be selectively converted into an unsaturated polyolefin (UPO), which can be chemically split via metathesis. By rational design of reaction conditions, CPE (25 or 35 m% Cl) as a model substrate, a PVDC–PVC copolymer (66 m% Cl) and PVC (57 m% Cl) were consecutively converted into partially and fully dechlorinated UPOs. Both of these UPO products contained −CH2–CH2–sequences and up to 11 double bonds per 100 carbons. They were chemically split into α,ω-dienes using a second-generation Grubbs catalyst. Via this procedure, chlorinated plastics can be converted into valuable chemical building blocks, while the released HCl is sequestered.
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