A kind of ruthenium catalyst for producing vinyl chloride and preparation method thereof
A ruthenium catalyst and catalyst technology, applied in the direction of catalyst activation/preparation, chemical instruments and methods, hydrogen halide addition preparation, etc., can solve the problems of ruthenium catalyst sublimation and loss, achieve good economy and industrial application value, and low loading capacity , improve the effect of activity
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Embodiment 1
[0052] Select columnar activated carbon as the carrier, its particle size is 40 mesh, the ash content is 3.0wt%, and the specific surface area is 800m 2 / g, pore volume 0.6ml / g, and treated with 200ml of 10wt% hydrochloric acid at 25°C for 3.5h. Dry at 110°C for 10 hours and set aside. 50ml of RuCl 3 The solution (wherein the Ru content is 0.002g / ml) is mixed with 5g of 1-butyl-3-methylimidazolium chloride salt, and the mixed solution is added dropwise on the 100g activated carbon carrier under the action of ultrasonic waves at 30°C. The soaking time is 8 hours. Then at 30°C, add 10ml of Na to the above system dropwise under the action of ultrasound. 2 S solution (wherein the S content is 0.01g / ml), and soaked for 10 hours under the action of ultrasonic waves. The impregnated catalyst was vacuum-dried at 110°C for 6 hours to obtain catalyst A, wherein the Ru loading (relative to the mass of the support) was 0.1wt%, the S loading (relative to the mass of the support) was 0....
Embodiment 2
[0055] Select columnar carbon nanotubes as the carrier, the particle size is 50 mesh, the ash content is 3.0wt%, and the specific surface area is 200m 2 / g, the pore volume is 0.66ml / g. Mix 12.5ml of ammonium hexachlororuthenate solution (wherein the Ru content is 0.08g / ml) and 20g of tributylethylphosphine bromide, and add the mixed solution dropwise to 100g of carbon nanotubes under ultrasonic action at 40°C On the carrier, the impregnation time is 5 hours under the action of ultrasonic waves. Then, at 40°C, 10ml of KHS solution (in which the S content is 0.5g / ml) and 43.5ml of deionized water were added dropwise to the above system under the action of ultrasonic waves, and immersed for 6 hours under the action of ultrasonic waves. The impregnated catalyst was vacuum-dried at 100°C for 8 hours to obtain catalyst B, in which the Ru loading (relative to the mass of the support) was 1 wt%, the S loading (relative to the mass of the support) was 5 wt%, and the loading of the io...
Embodiment 3
[0058] Select columnar graphene as the carrier, its particle size is 80 mesh, the ash content is 2.1wt%, and the specific surface area is 2630m 2 / g, the pore volume is 1.5ml / g. Mix 100ml of potassium pentachlororuthenate (III) solution (wherein the Ru content is 0.004g / ml) and 10g of tributylmethylammonium chloride, and add the mixed solution dropwise to 100g of graphene carrier under the action of ultrasonic waves at 20°C On, the immersion time is 4 hours under the action of ultrasonic waves. Then at 20°C, add 20ml of (NH 4 ) 2 S 2 o 3 solution (wherein the S content is 0.2g / ml) and 30ml deionized water, and soaked for 8 hours under the action of ultrasonic waves. The impregnated catalyst was vacuum-dried at 90°C for 9 hours to obtain catalyst C, in which the Ru loading (relative to the mass of the support) was 0.4wt%, the S loading (relative to the mass of the support) was 4wt%, and the loading of the ionic liquid was 10wt%. .
[0059] Take 2g of this catalyst and appl...
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