Precise control of the size of zeolite B-ZSM-5 based on seed surface crystallization
Author:
Affiliation:
1. State Key Laboratory of Fine Chemicals
2. PSU-DUT Joint Center for Energy Research
3. School of Chemical Engineering
4. Dalian University of Technology
5. Dalian 116024
Abstract
A unified functionD3=d3D03/[xD03+ (1 −x)d3] is established to precise control and predict the particle size of B-ZSM-5 from 153 nm to 14.2 μm in the TPABr and/or TPAOH synthetic systems.
Publisher
Royal Society of Chemistry (RSC)
Subject
General Chemical Engineering,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2017/RA/C6RA28030G
Reference49 articles.
1. Inorganic Solid Acids and Their Use in Acid-Catalyzed Hydrocarbon Reactions
2. Hollow ZSM-5 with Silicon-Rich Surface, Double Shells, and Functionalized Interior with Metallic Nanoparticles and Carbon Nanotubes
3. Hollow Alveolus-Like Nanovesicle Assembly with Metal-Encapsulated Hollow Zeolite Nanocrystals
4. Propane dehydrogenation over Ce-containing ZSM-5 supported platinum–tin catalysts: Ce concentration effect and reaction performance analysis
5. Effect of metal modification of HZSM-5 on catalyst stability in the shape-selective methylation of toluene
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