Stabilizing the framework of SAPO-34 zeolite toward long-term methanol-to-olefins conversion

Author:

Yang Liu,Wang Chang,Zhang Lina,Dai WeiliORCID,Chu Yueying,Xu JunORCID,Wu Guangjun,Gao MingbinORCID,Liu Wenjuan,Xu Zhaochao,Wang Pengfei,Guan Naijia,Dyballa Michael,Ye MaoORCID,Deng Feng,Fan WeibinORCID,Li LandongORCID

Abstract

AbstractAs a commercial MTO catalyst, SAPO-34 zeolite exhibits excellent recyclability probably due to its intrinsic good hydrothermal stability. However, the structural dynamic changes of SAPO-34 catalyst induced by hydrocarbon pool (HP) species and the water formed during the MTO conversion as well as its long-term stability after continuous regenerations are rarely investigated and poorly understood. Herein, the dynamic changes of SAPO-34 framework during the MTO conversion were identified by 1D 27Al, 31P MAS NMR, and 2D 31P-27Al HETCOR NMR spectroscopy. The breakage of T-O-T bonds in SAPO-34 catalyst during long-term continuous regenerations in the MTO conversion could be efficiently suppressed by pre-coking. The combination of catalyst pre-coking and water co-feeding is established to be an efficient strategy to promote the catalytic efficiency and long-term stability of SAPO-34 catalysts in the commercial MTO processes, also sheds light on the development of other high stable zeolite catalyst in the commercial catalysis.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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