Brântuas Pedro F, Henrique Adriano, Wahiduzzaman Mohammad, von Wedelstedt Alexander, Maity Tanmoy, Rodrigues Alírio E, Nouar Farid, Lee U-Hwang, Cho Kyung-Ho, Maurin Guillaume, Silva José A C, Serre Christian
Centro de Investigação de Montanha (CIMO), Instituto Politécnico de Bragança, Campus de Santa Apolónia, Bragança, 5300-253, Portugal.
LSRE-LCM - Laboratory of Separation and Reaction Engineering - Laboratory of Catalysis and Materials, Faculty of Engineering University of Porto, Rua Dr. Roberto Frias, Porto, 4200-465, Portugal.
Adv Sci (Weinh). 2022 Aug;9(22):e2201494. doi: 10.1002/advs.202201494. Epub 2022 Jun 5.
Zeolites and metal-organic frameworks (MOFs) are considered as "competitors" for new separation processes. The production of high-quality gasoline is currently achieved through the total isomerization process that separates pentane and hexane isomers while not reaching the ultimate goal of a research octane number (RON) higher than 92. This work demonstrates how a synergistic action of the zeolite 5A and the MIL-160(Al) MOF leads to a novel adsorptive process for octane upgrading of gasoline through an efficient separation of isomers. This innovative mixed-bed adsorbent strategy encompasses a thermodynamically driven separation of hexane isomers according to the degree of branching by MIL-160(Al) coupled to a steric rejection of linear isomers by the molecular sieve zeolite 5A. Their adsorptive separation ability is further evaluated under real conditions by sorption breakthrough and continuous cyclic experiments with a mixed bed of shaped adsorbents. Remarkably, at the industrially relevant temperature of 423 K, an ideal sorption hierarchy of low RON over high RON alkanes is achieved, i.e., n-hexane ≫ n-pentane ≫ 2-methylpentane > 3-methylpentane ⋙ 2,3-dimethylbutane > isopentane ≈ 2,2-dimethylbutane, together with a productivity of 1.14 mol dm and a high RON of 92, which is a leap-forward compared with existing processes.
沸石和金属有机框架材料(MOFs)被视为新型分离工艺的“竞争者”。目前,高品质汽油的生产是通过全异构化工艺实现的,该工艺可分离戊烷和己烷异构体,但未达到研究法辛烷值(RON)高于92的最终目标。这项工作展示了5A沸石和MIL-160(Al) MOF的协同作用如何通过高效分离异构体,从而实现一种用于汽油辛烷值提升的新型吸附工艺。这种创新的混合床吸附剂策略包括由MIL-160(Al)根据支化程度对己烷异构体进行热力学驱动的分离,以及由分子筛5A对线性异构体进行空间排斥。通过吸附穿透实验和使用成型吸附剂混合床的连续循环实验,在实际条件下进一步评估了它们的吸附分离能力。值得注意的是,在423 K这个与工业相关的温度下,实现了低RON烷烃高于高RON烷烃的理想吸附顺序,即正己烷≫正戊烷≫2-甲基戊烷>3-甲基戊烷⋙2,3-二甲基丁烷>异戊烷≈2,2-二甲基丁烷,同时生产率为1.14 mol dm ,且RON高达92,与现有工艺相比有了飞跃。