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Study of cracking FCC naphtha in a secondary riser of the FCC unit for maximum propylene production

机译:在FCC装置的二级提升管中裂化FCC石脑油以最大程度地生产丙烯的研究

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摘要

To satisfy the increasing propylene demand, reprocessing FCC naphtha in a secondary riser of the FCC unit was investigated. To this aim, a full range FCC naphtha was cracked over a mixture of two kinds of commercial equilibrium FCC catalysts, which contained 951.% Y zeolite-based catalyst and 5 wt.% ZSM-5 zeolite-based additive. The effects of operating parameters such as reaction temperature (temperature of the riser outlet), catalyst-to-oil ratio and residence time on FCC naphtha cracking were studied in a continuous pilot plant. This work demonstrates that FCC naphtha requires high operating severities to crack, and approximately 12-19 wt.% FCC naphtha can be transformed into propylene. The conversion and yield of propylene showed a rapid increase with increasing reaction temperature, and the increase of catalyst-to-oil ratio also enhanced FCC naphtha cracking, even at high reaction temperature. However, at high catalyst-to-oil reactions, hydrogen-transfer reactions constrain further increases in light olefin yields. At these high operating severities, shortening residence time is an appropriate way to obtain high yields of propylene combined with (i) lower yields of dry gas and (ii) a lower apparent hydrogen-transfer coefficient.
机译:为了满足不断增长的丙烯需求,研究了在FCC装置的二级提升塔中对FCC石脑油进行后处理的情况。为此,在两种商业平衡FCC催化剂的混合物上裂解了全系列FCC石脑油,该催化剂包含951.%Y沸石基催化剂和5 wt。%ZSM-5沸石基添加剂。在连续的中试装置中研究了操作参数,例如反应温度(立管出口温度),催化剂与油的比例以及停留时间对FCC石脑油裂解的影响。这项工作表明,FCC石脑油需要很高的操作强度才能裂解,大约12-19 wt%的FCC石脑油可以转化为丙烯。丙烯的转化率和产率随着反应温度的升高而迅速增加,即使在较高的反应温度下,催化剂/油比的增加也增强了FCC石脑油的裂化。然而,在高的催化剂-油反应中,氢转移反应限制了轻质烯烃产率的进一步提高。在这些高操作强度下,缩短停留时间是获得高产率的丙烯的适当方法,同时(i)降低干燥气体的产率和(ii)降低表观氢转移系数。

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