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Catalytic coprocessing of waste plastics and petroleum residue into liquid fuel oils

机译:将废塑料和石油残留物催化共处理为液体燃料油

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Waste plastics of different types were catalytically coprocessed with petroleum residue of light Arabian crude oil in the presence of a number of catalysts. The purpose of the study was to explore effects of various conditions such as catalyst type, amount of catalyst, reaction time, pressure and temperature on the product distribution. The waste plastic studied included low-density polyethylene (LDPE), high-density polyethylene (HDPE), polystyrene (PS) and polypropylene (PP). A series of single (waster plastic with catalyst) and binary (waste plastic and residue with catalyst) reactions were carried out in an autoclave reactor under variable reaction conditions. The reaction conditions used were 1, 3 and 5 wt.% catalysts, 30-120 min reaction time, 400-430℃ reaction temperature and 500-1200 psi hydrogen pressure. The product distribution achieved for residue/plastic/catalyst system showed higher yields of liquid fuels as compared to residue/plastic system. Hydrocarbon gases were formed as well along with heavy oils, insoluble gums and coke. At the reaction conditions of 3 wt.% NiMo catalyst, 90 min reaction time, 1200 psi hydrogen gas pressure, 430℃ temperature and residue to plastic feed ratio of 3:2 (wt.) afforded maximum conversion of the plastics into liquid fuel oils.
机译:在多种催化剂的存在下,将不同类型的废塑料与轻质阿拉伯原油的石油残留物进行催化共处理。该研究的目的是探索各种条件的影响,例如催化剂类型,催化剂量,反应时间,压力和温度对产物分布的影响。研究的废塑料包括低密度聚乙烯(LDPE),高密度聚乙烯(HDPE),聚苯乙烯(PS)和聚丙烯(PP)。在可变反应条件下,在高压釜反应器中进行了一系列单反应(废塑料和催化剂)和二元反应(废塑料和催化剂残留物)。所用的反应条件是1、3和5wt。%的催化剂,30-120分钟的反应时间,400-430℃的反应温度和500-1200psi的氢气压力。与渣油/塑料系统相比,渣油/塑料/催化剂系统获得的产品分布显示出更高的液体燃料收率。还会与重油,不溶性树胶和焦炭一起形成碳氢化合物气体。在3 wt。%NiMo催化剂的反应条件下,反应时间为90分钟,氢气压力为1200 psi,温度为430℃,残留物与塑料的进料比为3:2(wt。),可最大程度地将塑料转化为液体燃料油。

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