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Investigation of the fluid catalytic cracking of different H-Oil vacuum gas oils and their blends with hydrotreated vacuum gas oil

机译:不同H型油真空瓦斯流体催化裂化的研究及其用加氢处理真空瓦斯油的共混物

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摘要

H-Oil vacuum gas oils obtained during hydrocracking of vacuum residual oils originated from the crudes Russian Export Blend, Basrah light, and Heavy Kazakh were cracked in a mixture with a hydrotreated vacuum gas oil in the LUKOIL Neftohim Burgas commercial fluid catalytic cracking (FCC) unit. Some of the H-Oil vacuum gas oils were also cracked in a laboratory FCC (ACE) unit. The results from the commercial and the laboratory tests showed that the laboratory FCC experiments in an ACE unit can be used to evaluate the effect of feed quality on the commercial FCC unit performance. The assumption that the conversion of a vacuum gas oil (VGO) blend in the fluid catalytic cracking could be considered as a linear combination of the conversion of the individual components made by other researchers was also confirmed in this study. The higher the hydrogen content in the vacuum residual oil of a crude is the higher the FCC conversion of the H-Oil VGO, obtained during hydrocracking of that high saturate vacuum residual oil, will be expected.
机译:在真空残留油的加氢裂化期间获得的H-Livuum汽油燃气源于俄罗斯的俄罗斯出口混合物,Basrah光和重哈萨克,在卢克伊氏菌肽海姆布尔尔斯商业液催化裂化(FCC)中的加氢处理真空瓦斯油。单元。其中一些H-油真空瓦斯油也在实验室FCC(ACE)单元中裂开。商业和实验室测试的结果表明,ACE单元的实验室FCC实验可用于评估饲料质量对商业FCC单元性能的影响。假设真空燃气(VgO)混合物在流体催化裂化中可以被认为是在本研究中还证实的其他研究人员的各个组分转化的线性组合。粗产物中的氢含量越高是H-Oil VgO的FCC转化率越高,在高饱和真空残留油的加氢裂化过程中获得的较高。

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