4.8 Article

High-performance thin-felt SS-fiber@HZSM-5 catalysts synthesized via seed-assisted vapor phase transport for methanol-to-propylene reaction: Effects of crystal size, mesoporosity and aluminum uniformity

期刊

JOURNAL OF CATALYSIS
卷 360, 期 -, 页码 40-50

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcat.2018.01.025

关键词

Structured catalyst; ZSM-5; Mesopore; Crystal size; Aluminum uniformity; Methanol-to-propylene

资金

  1. NSF of China [21773069, 21703069, 21473057, U1462129]
  2. 973 program from the MOST of China [2011CB201403]

向作者/读者索取更多资源

A series of thin-felt SS-fiber@HZSM-5 catalysts are fabricated via the seed-assisted vapor-phase transport (VPT) method. The crystal size and mesoporosity of zeolite shell are controllably tuned toward enhanced diffusion by increasing the silicalite-1 seeding gel (SG) amount used. The microstructured catalyst obtained with a high SG amount of 50% contains a smaller crystal size of similar to 70 nm and higher mesopore volume of 0.21 cm(3) g(zeolite)(-1), which markedly prolonged single-run lifetime with a remarkable decrease in the coking rate in the MTP process. The adverse effect of non-uniform aluminum in the zeolite shell on the MTP stability is revealed. The use of aluminum-containing SG to replace the pure-silica one makes the acid sites of as-obtained ZSM-5 mounted on SS-fiber distributed homogeneously thereby leading to a marked suppression of hydrogen transfer, and as a result, the catalyst single-run lifetime is further increased by similar to 40%. This promising SS-fiber@HZSM-5 catalyst is stable for at least 1600 h (>94% conv.) with a high propylene selectivity of similar to 36% at 450 degrees C using a WHSV of 1 h(-1) for a feed of MeOH/H2O molar ratio of 1:1, by taking advantage of improved diffusion from mesoporosity development and uniform aluminum distribution as well as our distinctive microfibrous-engineered design. (C) 2018 Elsevier Inc. All rights reserved.

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