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Recovery of Gasoline-Range Hydrocarbons From Petroleum Basic Plastic Wastes

机译:从石油基础塑料废料中回收汽油范围的碳氢化合物

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摘要

A solid waste management system based on the 3R principle: reduce, reuse, and recycle. There are two major recycling methods for conversion of plastic wastes to synthetic fuels: (a) pyrolysis in absence and presence of catalyst and (b) thermal and/or catalytic cracking. Pyrolysis is a complex series of chemical and thermal reactions to decompose or depolymerize organic material under oxygen-free conditions. The most affecting variables of plastic pyrolysis are catalyst type and shape, temperature, and residence time. Certain types of waste plastics such as polystyrene (PS), polyethylene (PE), and polypropylene (PP) are generally used in pyrolysis. The plastic wastes can be pyrolyzed into liquid, gas, and solid residue products. The pyrolysis of plastic wastes produces a whole spectrum of hydrocarbons including paraffins, olefins, naphthalenes, and aromatics. The total yields of paraffins and olefins of PE and PP wastes obtained by pyrolysis were higher than that of PS. The oil obtained from plastic pyrolysis could improve performance by modifying engine. The addition of catalyst in the pyrolysis can be a more efficient method to produce high valuable products with mainly gasoline-range hydrocarbons. The catalytic decomposition was produced much more light hydrocarbons than that of thermal decomposition. Especially, ZSM-5 with a smaller pore size, rather than that of zeolite Y was more cracked into light hydrocarbons such as C6-C12 hydrocarbons and gas products.
机译:一个基于3R原理的固体废物管理系统:减少,再利用和回收。有两种主要的将塑料废物转化为合成燃料的再循环方法:(a)在不存在和存在催化剂的情况下进行热解,以及(b)热裂解和/或催化裂解。热解是一系列复杂的化学和热反应,用于在无氧条件下分解或解聚有机材料。塑料热解的影响最大的变量是催化剂的类型和形状,温度和停留时间。某些类型的废塑料,例如聚苯乙烯(PS),聚乙烯(PE)和聚丙烯(PP)通常用于热解。塑料废料可以热解为液体,气体和固体残留物产品。塑料废料的热解会产生各种烃,包括石蜡,烯烃,萘和芳烃。通过热解得到的PE和PP废料的链烷烃和烯烃的总收率高于PS。通过塑料热解获得的机油可以通过改进发动机来提高性能。在热解过程中添加催化剂可能是一种更有效的方法,以主要由汽油范围的烃生产高价值的产品。与热分解相比,催化分解产生的轻烃要多得多。特别是,孔径较小的ZSM-5(而不是沸石Y的孔径)更易裂化为轻质烃,例如C6-C12烃和气体产物。

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