CHA molecular sieve with characteristic skeleton structure as well as synthesis method and application of CHA molecular sieve
A synthesis method and skeleton structure technology, applied in the field of CHA molecular sieve with characteristic skeleton structure and its synthesis and application, can solve the problem of low activity
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Embodiment 1
[0065] A kind of CHA type SSZ-13 molecular sieve and catalyst preparation method:
[0066] 1) 45.59g HY molecular sieve (silicon aluminum ratio nSiO 2 / nAl 2 o 3 =5.20, dry basis 78.1%), 26.68g NaOH sheet alkali, 69.98g deionized water after fully dissolving and dispersing, obtain the slurry component molar ratio to be nNa 2 O:nSiO 2 :nAl 2 o 3 :nOH - :nH 2 O=0.75:1.0:0.192:1.5:10, aged at 85°C for 36 hours to obtain a silica-alumina gel;
[0067] 2) Add 507.51g of silica gel solution (Na2O: 0.24wt%, SiO 2 : 30.36wt%), 173.23g N,N,N-dimethylethylcyclohexyl ammonium hydroxide (concentration 20wt%, represented by OSDA1, CAS: 105197-93-1), 27.94gN,N,N,1 -Tetramethyl-4-piperidinium ammonium hydroxide (concentration 25wt%, represented by OSDA2, CAS: 1379151-27-5), 56.31g NaOH caustic soda and 216.79g deionized water are fully mixed with ultrasonic stirring, add 5% HCl solution to adjust nOH in the system - / nSiO 2 Ratio, so that the molar ratio of the mixed slurry compo...
Embodiment 2
[0073] The process method of synthesizing CHA type SSZ-13 molecular sieve is similar to embodiment 1, difference is step 1) and step 2) in the mol ratio of mixed sol, the kind of organic template agent, the kind of silicon source, the kind of transcrystalline zeolite and Silicon-aluminum ratio, crystallization temperature and crystallization time, etc., step 3) take 50.0g of H-type SSZ-13 molecular sieve, adopt different soluble metal salt types, concentrations, solution volumes and metal loadings, and take 40.0g in step 4) g copper modified CHA type SSZ-13 molecular sieve, and 20.0g silica sol (SiO 2 content: 30.0wt%) and 104.29g deionized water were evenly mixed to make a catalyst slurry with a solid content of 28.0wt%, which was coated on the cordierite structured material by dipping method. Specific parameters in this embodiment are shown in Table 1, Table 2, Table 3 and Table 4.
Embodiment 3
[0075] The process method of synthesizing CHA type SSZ-13 molecular sieve is similar to embodiment 1, difference is step 1) and step 2) in the mol ratio of mixed sol, the kind of organic template agent, the kind of silicon source, the kind of transcrystalline zeolite and Silicon-aluminum ratio, crystallization temperature and crystallization time, etc., step 3) take 50.0g of H-type SSZ-13 molecular sieve, adopt different soluble metal salt types, concentrations, solution volumes and metal loadings, and take 40g in step 4) Copper modified CHA type SSZ-13 molecular sieve, with 20.0g silica sol (SiO 2 content: 30.0wt%) and 76.50g of deionized water were evenly mixed to make a catalyst slurry with a solid content of 33.7wt%, which was coated on the cordierite structured material by dipping method. Specific parameters in this embodiment are shown in Table 1, Table 2, Table 3 and Table 4.
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