Hydrogenation catalyst containing molecular sieves and amorphous silica-alumina
A technology of amorphous silica-alumina and hydrogenation catalysts, applied in molecular sieve catalysts, physical/chemical process catalysts, chemical instruments and methods, etc., can solve the agglomeration of amorphous silica-alumina, reduction of catalyst specific surface area and pore volume, and easy access to each other. pore channels or blockage of molecular sieves, etc., to enhance the binding force and avoid agglomeration.
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Embodiment 1
[0040] Add 218g of solid aluminum chloride, 11g of sodium tungstate, and 9g of nickel nitrate into 1 liter of distilled water while heating and stirring until dissolved to obtain solution (a). Dilute the concentrated ammonia water with an appropriate amount of distilled water to form about 10wt% dilute ammonia water (b), and dissolve 33.4 g of xylitol in 500 ml of water to form a solution (c). Take 10L of water glass (industrial grade, modulus 3.0) and dilute it in 20L of deionized water to prepare solution (d). Dissolve 7.2g of diethanolamine in 100ml of water, heat to 60°C, add 18.5g of Y-type molecular sieve Y-1 (SiO 2 / Al 2 o 3 =11.0, unit cell constant is 24.42 Å, relative crystallinity is 95%) beating for 2 hours to obtain slurry (e). Take a stainless steel reaction tank, add (a) into the tank, stir and heat to 65°C, open the valve of the container containing (b), control the system in the tank to drop to pH = 4.5 within 10 minutes, and continue to drop (b), open the...
Embodiment 2
[0043] Add 330g of solid aluminum sulfate, 74g of sodium tungstate, and 65g of nickel nitrate into 1 liter of distilled water while heating and stirring until dissolved to obtain solution (a). Add an appropriate amount of distilled water to the concentrated ammonia water and dilute it into about 10wt% dilute ammonia water (b), and dissolve 98g of 1,4-butanediol in 500ml of water to form a solution (c). Take 10L of water glass (industrial grade, modulus 3.0) and dilute it in 20L of deionized water to prepare solution (d). Dissolve 52.5g of ethanolamine in 100ml of water, heat to 60°C, add 260g of Y-type molecular sieve Y-1 (SiO 2 / Al 2 o 3 =11.0, unit cell constant is 24.42 Å, relative crystallinity is 95%) beating for 2 hours to obtain slurry (e). Take a stainless steel reaction tank, add (a) into the tank, stir and heat to 65°C, open the valve of the container containing (b), and control the system in the tank to drop to pH=4.5 within 10 minutes, at this time, add Add in ...
Embodiment 3
[0046] Add 211g of solid aluminum sulfate, 902g of sodium tungstate, and 795g of nickel nitrate into 1 liter of distilled water while heating and stirring until dissolved to obtain solution (a). Prepare the solid sodium metaaluminate to a concentration of 20g Al 2 o 3 / l sodium aluminate solution (b). 151 g of 1,4-butanedioic acid was dissolved in 1 L of water to form solution (c). 179g of ethylenediamine was dissolved in 500ml of water, heated to 60°C, and 1783g of Y-type molecular sieve Y-1 (SiO 2 / Al 2 o 3 =11.0, the unit cell constant is 24.42 Å, and the relative crystallinity is 95%), and the slurry (d) is obtained after stirring for 2 hours. Take 10L water glass (industrial grade, modulus 3.0) and dilute it in 20L deionized water to prepare solution (e). Take a steel reaction tank, put 2l of deionized water into it, stir and heat it to 65°C, open the valves of the containers containing (a), (b), (c) and (d) at the same time, and control the pH of the system to 8.0 ...
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