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Dependence of Fluid Catalytic Cracking Unit Performance on H-Oil Severity, Catalyst Activity, and Coke Selectivity

机译:流体催化裂化单元性能对H-油严重程度,催化剂活性和焦炭选择性的依赖性

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摘要

The effect of the quality of ebullated bed vacuum residue H-Oil hydrocracking gas oils cracked in a commercial fluid catalytic cracking unit (FCCU) on its performance was studied. Six different catalysts were employed in this study. Four catalysts were tested in a commercial FCCU, and two in a laboratory FCCU. An increase of the H-Oil hydrocracker reaction temperature was associated with a decrease in theK(W)factor of the H-Oil gas oils. The diminishedK(W)factor of H-Oil gas oils resulted in lower FCCU conversion and higher regenerator temperatures. The FCC conversion at maximum gasoline yield is best predicted by the feedK(W)factor. The higher-activity, higher-Delta coke catalyst is unfavorable for FCCU performance because the excessive regenerator temperature excursions require reduction of the throughput.
机译:研究了商业流体催化裂化单元(FCCU)在其性能下裂解的沸腾床真空残留物H-油加氢裂化瓦斯的效果。 本研究采用六种不同的催化剂。 在商业FCCU中测试了四种催化剂,两种催化剂在实验室FCCU中进行了测试。 H-油加氢裂剂反应温度的增加与H-油气油的k(w)系数的降低有关。 H型油气油的DiminisheK(W)因子导致FCCU转换和更高的再生器温度降低。 最大汽油产量的FCC转化最佳通过进料(W)因子预测。 更高的活性,高度达焦焦催化剂对于FCCU性能不利,因为过度的再生温度偏移需要降低吞吐量。

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