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用于二甲醚羰基化反应的、铁优先位于12元环孔道中的铁-氢型丝光沸石的制备。

Preparation of Fe-HMOR with a Preferential Iron Location in the 12-MR Channels for Dimethyl Ether Carbonylation.

作者信息

Liu Wenrong, Wang Yaquan, Bu Lingzhen, Chu Kailiang, Huang Yitong, Guo Niandong, Qu Liping, Sang Juncai, Su Xuemei, Zhang Xian, Li Yaoning

机构信息

Key Laboratory for Green Chemical Technology of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.

出版信息

Materials (Basel). 2024 May 17;17(10):2417. doi: 10.3390/ma17102417.

Abstract

As the Brønsted acid sites in the 8-membered ring (8-MR) of mordenite (MOR) are reported to be the active center for dimethyl ether (DME) carbonylation reaction, it is of great importance to selectively increase the Brønsted acid amount in the 8-MR. Herein, a series of Fe-HMOR was prepared through one-pot hydrothermal synthesis by adding the EDTA-Fe complex into the gel. By combining XRD, FTIR, UV-Vis, Raman and XPS, it was found that the Fe atoms selectively substituted for the Al atoms in the 12-MR channels because of the large size of the EDTA-Fe complex. The NH-TPD and Py-IR results showed that with the increase in Fe addition from Fe/Si = 0 to 0.02, the Brønsted acid sites derived from Si-OH-Al in the 8-MR first increased and then decreased, with the maximum at Fe/Si = 0.01. The Fe-modified MOR with Fe/Si = 0.01 showed the highest activity in DME carbonylation, which was three times that of HMOR. The TG/DTG results indicated that the carbon deposition and heavy coke formation in the spent Fe-HMOR catalysts were inhibited due to Fe addition. This work provides a practical way to design a catalyst with enhanced catalytic performance.

摘要

由于据报道丝光沸石(MOR)八元环(8-MR)中的布朗斯台德酸位是二甲醚(DME)羰基化反应的活性中心,选择性增加8-MR中的布朗斯台德酸量具有重要意义。在此,通过将EDTA-Fe络合物加入凝胶中,采用一锅水热合成法制备了一系列Fe-HMOR。通过结合XRD、FTIR、UV-Vis、拉曼和XPS分析发现,由于EDTA-Fe络合物尺寸较大,Fe原子选择性地取代了12-MR通道中的Al原子。NH-TPD和Py-IR结果表明,随着Fe添加量从Fe/Si = 0增加到0.02,8-MR中源自Si-OH-Al的布朗斯台德酸位先增加后减少,在Fe/Si = 0.01时达到最大值。Fe/Si = 0.01的Fe改性MOR在DME羰基化反应中表现出最高活性,是HMOR的三倍。TG/DTG结果表明,由于添加了Fe,失活的Fe-HMOR催化剂中的积碳和重质焦炭形成受到抑制。这项工作为设计具有增强催化性能的催化剂提供了一种实用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2d9/11123140/acf2e7425246/materials-17-02417-sch001.jpg

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