Preparation method and applications of supported ionic liquid catalyst
An ionic liquid and supported technology, which is used in the preparation and application of supported ionic liquid catalysts, can solve the problems of ruthenium sublimation and loss, and achieve the effects of not easy to lose, easy to operate, excellent catalytic activity and stability
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Embodiment 1
[0043] Select columnar activated carbon as the carrier, its particle size is 30 mesh, the ash content is 2.5wt%, 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. 25ml of RuCl 3 After mixing the solution (in which the Ru content is 0.004g / ml) and 5g of 1-butyl-3-methylimidazolium chloride salt, add an appropriate amount of deionized water to make the volume to 60ml, and dissolve the mixed solution under the action of ultrasonic waves at 30°C Add it dropwise onto 100g of activated carbon carrier, and soak for 5 hours under the action of ultrasonic waves. Then, the above mixture was pre-frozen at -40°C for 10 hours; the frozen mixture was moved into a freeze dryer with a vacuum of 0.09MPa, and the temperature was raised to -15°C at a heating rate of 4°C / min , the frozen mixture was maintained at this temperature for 15 hours; continue to maintain the vac...
Embodiment 2
[0046] Columnar carbon nanotubes are selected as the carrier, the particle size is 40 mesh, the ash content is 3.5wt%, and the specific surface area is 200m 2 / g, the pore volume is 0.66ml / g. After mixing 50ml of ammonium hexachlororuthenate solution (in which the Ru content is 0.02g / ml) and 20g of tributylethylphosphine bromide, add an appropriate amount of deionized water to make the volume reach 66ml. The mixed solution was added dropwise to 100 g of carbon nanotube carrier, and the soaking time was 4 hours under the action of ultrasonic waves. Then, the above mixture was pre-frozen at -35°C for 14 hours; the frozen mixture was moved into a freeze dryer with a vacuum of 0.08 MPa, and the temperature was raised to -20°C at a heating rate of 3°C / min , the frozen mixture was maintained at this temperature for 12 hours; continue to maintain the vacuum degree of the freeze dryer at 0.08MPa, and then raise the temperature of the frozen mixture to 35°C at a heating rate of 3°C / mi...
Embodiment 3
[0049] Choose columnar graphene as carrier, its particle size is 70 mesh, ash content 1.5wt%, specific surface area 2630m 2 / g, the pore volume is 1.5ml / g. After mixing 10ml of potassium pentachlororuthenate (III) solution (wherein the Ru content is 0.05g / ml) and 15g of tetrabutylphosphine chloride, add an appropriate amount of deionized water to make the volume to 150ml. The mixed solution is added dropwise on the 100g graphene carrier under the action of ultrasonic waves, and the immersion time is 4 hours under the action of ultrasonic waves. Then the above mixture was pre-frozen at -50°C for 12 hours; the frozen mixture was moved into a freeze dryer with a vacuum of 0.1 MPa, and the temperature was raised to -25°C at a heating rate of 3°C / min. The frozen mixture was maintained at this temperature for 19 hours; the vacuum degree of the freeze dryer was maintained at 0.1 MPa, and then the temperature of the frozen mixture was raised to 45°C at a heating rate of 3°C / min, and ...
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