Preparation method of pyridine and 3-picoline
A technology of picoline and pyridine, which is applied in the field of preparation of pyridine and 3-picoline, can solve the problem of low yield of pyridine and 3-picoline and by-products 2-picoline and 4-picoline Problems such as high content, to achieve the effect of good technical effect
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Embodiment 1
[0028] Using water glass and aluminum sulfate as silicon source and aluminum source respectively, and tetrapropylammonium bromide as template agent, ZSM-5 raw powder was synthesized by hydrothermal synthesis method. The crystallization is carried out in a stainless steel reactor, the stirring speed is 100-200 rpm, the pressure is the pressure of the reaction system itself, and the crystallization temperature is 100-150°C. 700 grams of synthesized ZSM-5 raw powder was wet-mixed with 300 grams of alumina binder after alkylamine, and then extruded into strips, and then exchanged with ammonium nitrate solution to obtain hydrogen-type molecular sieve H-ZSM-5, whose silicon-aluminum mole than SiO2 / Al 2 o 3 for 250. This zeolite was designated as Catalyst A.
Embodiment 2
[0030] A certain amount of lead nitrate is dissolved in an appropriate amount of water to obtain a certain concentration of lead-containing solution, then a certain amount of molecular sieve H-ZSM-5 prepared in Example 1 is added to the solution for impregnation, and the obtained product is in Drying at 110°C, followed by calcination at 550°C for 4 hours gave Catalyst B with a lead content of 2.5% by weight in terms of metal.
Embodiment 3
[0032] The preparation method is the same as in Example 2, except that cobalt nitrate is used instead of lead nitrate to obtain catalyst C with a cobalt content of 1.5% (weight) in terms of metal.
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