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废聚合物催化转化为燃料油。

Catalytic transformation of waste polymers to fuel oil.

作者信息

Keane Mark A

机构信息

Chemical Engineering, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, UK.

出版信息

ChemSusChem. 2009;2(3):207-14. doi: 10.1002/cssc.200900001.

Abstract

Waste not, want not: The increase in waste polymer generation, which continues to exceed recycle, represents a critical environmental burden. However, plastic waste may be viewed as a potential resource and, with the correct treatment, can serve as hydrocarbon raw material or as fuel oil, as described in this Minireview.Effective waste management must address waste reduction, reuse, recovery, and recycle. The consumption of plastics continues to grow, and, while plastic recycle has seen a significant increase since the early 1990s, consumption still far exceeds recycle. However, waste plastic can be viewed as a potential resource and can serve, with the correct treatment, as hydrocarbon raw material or as fuel oil. This Minireview considers the role of catalysis in waste polymer reprocessing and provides a critical overview of the existing waste plastic treatment technologies. Thermal pyrolysis results in a random scissioning of the polymer chains, generating products with varying molecular weights. Catalytic degradation provides control over the product composition/distribution and serves to lower significantly the degradation temperature. Incineration of waste PVC is very energy demanding and can result in the formation of toxic chloro emissions. The efficacy of a catalytic transformation of PVC is also discussed.

摘要

不浪费,不匮乏:废弃聚合物产量持续增加且始终超过回收量,这构成了一项严峻的环境负担。然而,塑料废弃物可被视作一种潜在资源,经过恰当处理,能够充当烃类原料或燃料油,本综述对此进行了阐述。有效的废弃物管理必须涵盖减少废弃物产生、再利用、回收及循环利用等方面。塑料的消费量持续增长,尽管自20世纪90年代初以来塑料回收量显著增加,但消费量仍远超回收量。不过,废弃塑料可被视为一种潜在资源,经过正确处理后可作为烃类原料或燃料油。本综述探讨了催化作用在废弃聚合物再加工中的作用,并对现有的废弃塑料处理技术进行了批判性概述。热解会导致聚合物链随机断裂,生成分子量各异的产物。催化降解能够控制产物的组成/分布,并显著降低降解温度。废弃聚氯乙烯的焚烧能耗极大,还可能导致有毒氯排放物的形成。本文还讨论了聚氯乙烯催化转化的效果。

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