CHARACTERIZATION OF LARGE AND EXTRA-LARGE ZEOLITE PORES WITH THE HEPTADECANE TEST
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Elsevier
Reference17 articles.
1. Exploration of the void size and structure of zeolites and molecular sieves using chemical reactions
2. Estimation of the void structure and pore dimensions of molecular sieve zeolites using the hydroconversion of n-decane
3. The potential and limitations of the n-decane hydroconversion as a test reaction for characterization of the void space of molecular sieve zeolites
4. Relation Between Paraffin Isomerisation Capability and Pore Architecture of Large-Pore Bifunctional Zeolites
5. Isomorphic Substitution of Silicon in SAPO-37
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1. Toward Superior Hydroisomerization Catalysts through Thermodynamic Optimization;ACS Catalysis;2023-05-01
2. IZM-2: A promising new zeolite for the selective hydroisomerization of long-chain n-alkanes;Journal of Catalysis;2013-05
3. Catalytically Active Sites: Generation and Characterization;Zeolites and Catalysis;2010-06-09
4. Forty Years of Designing Catalytic and Adsorptive Sites in FAU Type Zeolites at K.U. Leuven;Topics in Catalysis;2009-04-28
5. Characterization of the Pore Size of Molecular Sieves Using Molecular Probes;Molecular Sieves
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