Sakha Mohsen Rostami, Halimitabrizi Parya, Soltanali Saeed, Ektefa Fatemeh, Hajjar Zeinab, Salari Dariush
Reactor and Catalysis Research Lab., Department of Chemistry, University of Tabriz Iran.
Department of Chemical and Petroleum Engineering, University of Tabriz Iran.
RSC Adv. 2023 Mar 8;13(11):7514-7523. doi: 10.1039/d3ra00037k. eCollection 2023 Mar 1.
Investigation of the current industrial processes, such as methanol to olefin (MTO) and hexane to olefin (HTO), in terms of green and sustainable chemistry approaches in order to design the process, catalyst and reactor from the beginning in such a way as to minimize environmental pollution is compulsory. Therefore, the synthesis of a group of multifunctional catalysts, which can be used simultaneously in both industrial processes to produce a variety of products, was studied. The effect of incorporation of different metals (Fe, Mn, Zn, Ga and Al) on the strengthening of each of the products was also studied. The investigation of reactor productivity (WHSV = 25) in HTO showed that the production efficiency of propylene in microchannels is higher than the ideal value for all samples, which is a significant improvement for sustainable approaches in future technologies. Considering the overall performances, Ga-ZM showed the best performance in both processes due to the high / ratio. The significant effect of Ga on the increasing of propylene was confirmed in MTO at 400 °C (/ ≃ ∞), which indicated the dramatic effect of this metal in directing the reaction mechanism to an olefin-based cycle by converting almost all ethylene to propylene by methylation.
从绿色和可持续化学方法的角度对当前的工业过程进行研究,比如甲醇制烯烃(MTO)和己烷制烯烃(HTO),以便从一开始就设计出工艺、催化剂和反应器,从而将环境污染降至最低,这是必不可少的。因此,研究了一组多功能催化剂的合成,这些催化剂可同时用于这两种工业过程以生产多种产品。还研究了掺入不同金属(铁、锰、锌、镓和铝)对每种产品强化效果的影响。对HTO中反应器生产率(WHSV = 25)的研究表明,微通道中丙烯的生产效率高于所有样品的理想值,这对未来技术的可持续方法来说是一项重大改进。考虑到整体性能,由于高/比率,Ga-ZM在这两种过程中表现出最佳性能。在400℃的MTO中(/≃∞)证实了镓对丙烯增产的显著影响,这表明这种金属通过甲基化将几乎所有乙烯转化为丙烯,从而将反应机理导向基于烯烃的循环,具有显著效果。