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Catalytic Pyrolysis of Waste Plastic Mixture

机译:废塑料混合物的催化热解

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Inorganic waste especially plastics still become a major problem in many places. Low biodegradability of this materials causes the effort in recycling become very difficult. Most of the municipal solid waste (MSW) recycling facilities in developing country only use composting method to recover the organic fraction of the waste, while the inorganic fraction is still untreated. By pyrolysis, plastic waste can be treated to produce liquid fuels, flammable gas and chars. Reduction in volume and utilization of the liquid and gas as fuel are the major benefits of the process. By heat integration actually this process can become a self-sufficient system in terms of energy demand. However, the drawback of this process is usually due to the diverse type of plastic in the MSW creating low grade of liquid fuel and harmful gases. In this study, the mixture of plastics i.e. polypropylene (PP) and polyethylene terephthalate (PET) is treated using pyrolysis with catalyst in several operating temperature. PET is problematic to be treated using pyrolysis due to wax-like byproduct in liquid which may cause pipe clogging. The catalyst is the mixture of natural zeolite and bentonite which is able to handle PP and PET mixture feed to produce high grade liquid fuels in terms of calorific value and other fuel properties.
机译:无机废物尤其是塑料仍然成为许多地方的主要问题。这种材料的低生物降解性导致回收措施变得非常困难。大多数城市固体废物(MSW)发展中国家的回收设施只使用堆肥方法来恢复废物的有机分数,而无机级数仍未治疗。通过热解,可以治疗塑料废物以产生液体燃料,易燃气体和焦点。作为燃料的液体和气体的体积和利用率降低是该过程的主要益处。通过热集成实际上,这种过程可以在能源需求方面成为一个自给自足的系统。然而,该过程的缺点通常是由于MSW中的不同类型的塑料,从而产生低等级的液体燃料和有害气体。在该研究中,使用催化剂在几种工作温度下使用热解溶液(PP)和聚对苯二甲酸乙二醇酯(PET)和聚对苯二甲酸酯(PET)的混合物。由于在可能导致管堵塞的液体中,使用因蜡状副产物的热解来治疗PET是有问题的。催化剂是天然沸石和膨润土的混合物,其能够处理PP和PET混合物进料,以在热值和其他燃料特性方面制备高级液体燃料。

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