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Catalytic plastics cracking for recovery of gasoline-range hydrocarbons from municipal plastic wastes

机译:催化塑料裂解可从市政塑料废物中回收汽油范围的碳氢化合物

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摘要

This paper reviews recent developments in plastics cracking, a process developed to recycle plastic wastes into useful petrochemical materials. Under thermal cracking conditions, plastic wastes can be decomposed into three fractions: gas, liquid and solid residue. The liquid products are usually composed of higher boiling point hydrocarbons. By adopting customary fluid cracking catalysts and reforming catalysts, more aromatics and naphthenes in the C-6-C_8 range can be produced, which are valuable gasoline-range hydrocarbons. More tests are, however, needed to verify the pyrolysis process in a pilot scale particularly for treatment of mixtures of bulk plastics. Plastics cracking is only an elementary conversion technology; its application has to be combined with other technologies such as municipal solid waste collection, classification and pretreatment at the front end, as well as hydrocarbon distillation and purification at the back end. Social, environmental and economic factors are also important in industrial implementation of the technology.
机译:本文回顾了塑料裂化的最新进展,这是一种将塑料废料循环利用为有用的石化材料的工艺。在热裂解条件下,塑料废料可分解为三个部分:气体,液体和固体残留物。液体产物通常由较高沸点的烃组成。通过采用常规的流体裂化催化剂和重整催化剂,可以生产更多的C-6-C_8范围的芳族化合物和环烷烃,它们是有价值的汽油范围的烃。但是,需要更多的测试来验证中试规模的热解过程,特别是用于处理散装塑料混合物的过程。塑料裂化只是一种基本的转化技术;它的应用必须与其他技术相结合,例如市政固体废物的收集,前端的分类和预处理,以及后端的烃类蒸馏和纯化。社会,环境和经济因素在该技术的工业实施中也很重要。

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