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Coke deposition and product distribution in the co-cracking of waste polyolefin derived streams and vacuum gas oil under FCC unit conditions

机译:在FCC单元条件下焦炭沉积和产物分布在废聚烯烃衍生物流和真空煤气中的共裂

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The effect of co-cracking of high-density polyethylene (HDPE) or its pyrolysis wax together with vacuum gasoil (VGO) has been studied. The aim is to determine the content, nature, and location of coke while analyzing the impact on product distribution in the process. Four different feeds were used (VGO, VGO + 5 wt% HDPE, VGO + 20 wt% of wax, and 100 wt% wax) in experiments performed in a laboratory-scaled riser simulator, with similar conditions to those of the fluid catalytic cracking (FCC) unit: equilibrium catalyst; 530 degrees C; catalyst/feed mass ratio, 5; contact time, 6 s. The results of the different characterization techniques of the deactivated catalyst and the coke indicate that the catalyst fouling decreases notably by incorporating these waste streams, changing its nature to a more aliphatic (olefinic) one and its location towards the zeolite micropores. On the contrary, the coke formed from the VGO is more evolved and mainly constituted by polyaromatic components deposited on the mesopores of the catalyst matrix. Product distribution is also affected, increasing the yield of light cycle oil and keeping a relatively similar gasoline yield, with greater olefinity and lower aromaticity. Thus, the FCC shows great perspectives to valorize polyolefins, present in waste plastics, at great scale.
机译:研究了高密度聚乙烯(HDPE)或其热解蜡与真空胃(VGO)共开裂的影响。目的是确定焦炭的内容,性质和位置,同时分析过程中对产品分布的影响。在实验室缩放的提升管模拟器中进行的实验中使用四种不同的饲料(VgO,VgO + 5wt%HDPE,VgO + 20wt%的蜡和100wt%蜡),其具有与流体催化裂化的类似条件(FCC)单位:平衡催化剂; 530℃;催化剂/进料质量比,5;接触时间,6秒。去活化催化剂和焦炭的不同表征技术的结果表明催化剂污染通过掺入这些废物流,使其性质改变为更脂族(烯烃)的脂肪族(烯烃)及其朝向沸石微孔的位置来降低。相反,由VGO形成的焦化更进一步,主要由沉积在催化剂基质的中孔上的多芳族成分构成。产物分布也受到影响,增加了光循环油的产率,并保持相对相似的汽油产率,具有更大的烯烃和较低的芳香性。因此,FCC以大规模纳入废塑料中存在的储存聚烯烃的伟大观点。

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