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ULTRA-SELECTIVE FCC PROCESS WITH DOWNFLOW REACTOR AND OPTIMIZED CATALYST SYSTEM

机译:具有下流反应器和优化催化剂系统的超选择性FCC工艺

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Many recent developments in the FCC area have focused on reducing the contact time between catalyst and hydrocarbon vapor to improve product selectivity: lower delta coke on catalyst, and higher selectivity to gasoline and light olefins. Nevertheless, very special conditions should be used to benefit from such short reaction times, as clearly indicated in pilot tests carried out at PETROBRAS. The downflow reactor provides significant selectivity advantages, mainly in terms of coke and olefins, due to its much more uniform gas-solids flow pattern. However, in downflow reactors, the catalyst residence time and catalyst holdup is lower, considering the same hydrocarbon residence time used in a riser. Thus, for obtaining the adequate conversion levels, higher catalyst to oil ratio, higher reaction temperature or more active catalyst would be necessary. Fortunately, the continuing development of new catalyst technologies has made possible to work with downflow systems without any harm on conversion levels, using regular FCC operating conditions. Experimental studies carried out at a pilot downflow unit, using a pilot riser unit as reference, showed advantages in conversion, LPG and propylene. Following these studies, PETROBRAS will revamp one of its FCC units into a downflow catalytic cracker.
机译:FCC地区最近的许多发展集中在降低催化剂和烃蒸汽之间的接触时间,以改善产物选择性:较低的达到催化剂焦炭,以及对汽油和光烯烃的选择性更高。然而,应该使用非常特殊的条件从这种短反应时间中受益,如在Petrobras的试点测试中清楚地表明。下流电抗器由于其更均匀的气体固体流动图案而提供显着的选择性优势,主要是焦炭和烯烃。然而,在下流反应器中,考虑到在提升板中使用的相同的烃停留时间,催化剂停留时间和催化剂保持较低。因此,为了获得足够的转化水平,需要更高的催化剂与油比,更高的反应温度或更高的活性催化剂。幸运的是,使用普通的FCC操作条件,新型催化剂技术的持续发展已经可以使用下流系统而不会对转换级别造成任何危害。在试验下流动单元进行的实验研究,使用试验提升单元作为参考,表现出转化,LPG和丙烯的优点。在这些研究之后,Petrobras将将其一个FCC单元中的一个重新流入下流催化裂解器。

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