A kind of method utilizing cusapo-11 molecular sieve to catalyze the preparation of 2,6-dimethylnaphthalene
A technology for dimethylnaphthalene and catalytic preparation, which is applied to molecular sieve catalysts, including molecular sieve catalysts, chemical instruments and methods, etc. High reactivity, convenient for large-scale production, and the effect of overcoming the difficulty of product separation
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Embodiment 1
[0035] A kind of method utilizing CuSAPO-11 molecular sieve to catalyze the preparation of 2,6-dimethylnaphthalene in the present embodiment comprises the following steps:
[0036] 1) Preparation of CuSAPO-11 molecular sieve:
[0037] a. At 30°C, add aluminum isopropoxide and silica sol to 50% phosphoric acid aqueous solution, stir for 3 hours, then add di-n-propylamine and copper nitrate to the phosphoric acid aqueous solution, and stir for another 2 hours to obtain the reaction Mixture, the mol ratio of described aluminum isopropoxide, silica sol, phosphoric acid, di-n-propylamine and copper nitrate consumption is 0.5:0.05:0.6:0.1:0.05;
[0038] b. Sealing and crystallizing the reaction mixture prepared in step a in a polytetrafluoroethylene-lined stainless steel reactor, the crystallization temperature is 170°C, and the crystallization time is 24h;
[0039] c. Cooling the crystallized reactant in step b to room temperature, and repeatedly washing and separating with deioni...
Embodiment 2
[0048] A kind of method utilizing CuSAPO-11 molecular sieve to catalyze the preparation of 2,6-dimethylnaphthalene in the present embodiment comprises the following steps:
[0049] 1) Preparation of CuSAPO-11 molecular sieve:
[0050] a. At a temperature of 100°C, add aluminum isopropoxide and silica sol to an aqueous phosphoric acid solution with a concentration of 85%, stir for 3 hours, then add di-n-propylamine and copper nitrate to the aqueous phosphoric acid solution, and stir for another 2 hours to obtain a reaction Mixture, the mol ratio of described aluminum isopropoxide, silica sol, phosphoric acid, di-n-propylamine and copper nitrate consumption is 2:0.6:2.0:1.0:0.1;
[0051] b. Sealing and crystallizing the reaction mixture prepared in step a in a polytetrafluoroethylene-lined stainless steel reactor, the crystallization temperature is 200°C, and the crystallization time is 48h;
[0052] c. Cooling the crystallized reactant in step b to room temperature, and repeat...
Embodiment 3
[0061] A kind of method utilizing CuSAPO-11 molecular sieve to catalyze the preparation of 2,6-dimethylnaphthalene in the present embodiment comprises the following steps:
[0062] 1) Preparation of CuSAPO-11 molecular sieve:
[0063] a. At a temperature of 60°C, add aluminum isopropoxide and silica sol to a phosphoric acid aqueous solution with a concentration of 75%, stir for 3 hours, then add di-n-propylamine and copper nitrate to the phosphoric acid aqueous solution, and stir for another 2 hours to obtain a reaction Mixture, the mol ratio of described aluminum isopropoxide, silica sol, phosphoric acid, di-n-propylamine and copper nitrate consumption is 1.5:0.3:1:0.5:0.08;
[0064] b. Sealing and crystallizing the reaction mixture prepared in step a in a polytetrafluoroethylene-lined stainless steel reactor, the crystallization temperature is 180°C, and the crystallization time is 35h;
[0065] c. Cooling the crystallized reactant in step b to room temperature, and repeate...
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