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Effect of HZSM-5 catalyst addition on the cracking of polyolefin pyrolysis waxes under FCC conditions

机译:HZSM-5催化剂的添加对催化裂化条件下聚烯烃裂解蜡裂解的影响

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摘要

A study has been carried out on the effect of catalyst acidity and composition (mixtures of base catalyst and catalysts provided with HZSM-5 zeolite of different acidity) on the catalytic cracking of polyolefin pyrolysis waxes carried out under standard conditions in a refinery FCC. The experiments have been carried out in a riser simulator, in the 500-550 °C range. The results show that the yields and composition of product stream are acceptable and controlable by refineries without any special adaptation of process conditions. The acidity of the catalysts has a relevant effect on hydrogen transfer capacity, which contributes to decreasing the concentration of olefins in the gases and in the gasoline. The incorporation of HZSM-5 zeolite is very efficient for increasing the yield of gasoline. This gasoline and LPG are more olefinic than those obtained with the base catalyst, given that hydrogen transfer capacity of the catalyst is inhibited.
机译:已经研究了在标准条件下在炼油厂FCC中进行的催化剂酸度和组成(基础催化剂和提供有不同酸度的HZSM-5沸石的催化剂的混合物)对聚烯烃热解蜡的催化裂化的影响。实验已在500-550°C的提升管模拟器中进行。结果表明,在不对工艺条件进行任何特殊调整的情况下,精炼厂可以接受和控制产物流的产率和组成。催化剂的酸度对氢转移能力有重要影响,这有助于降低气体和汽油中烯烃的浓度。 HZSM-5沸石的加入对于提高汽油的收率非常有效。鉴于抑制了催化剂的氢转移能力,该汽油和LPG比用基础催化剂获得的那些烯烃和LPG的烯烃含量更高。

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