Highly dispersed palladium/carbon nanometer tube catalyst for anthraquinone hydrogenation and preparation method thereof
A technology of carbon nanotubes and high dispersion, which is applied in the field of highly dispersed palladium/carbon nanotube catalysts and preparations, can solve the problems of unsatisfactory reduction effect of palladium active components, insignificant catalyst effect, and small amount of reducing agent, etc., to achieve Improve the effective utilization rate, improve the reduction effect, and improve the catalytic effect
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Embodiment 1
[0062] In the slurry bed of the reaction vessel, add carbon nanotubes and water according to the mass ratio of CNTs (carbon nanotubes): water = 1:45, stir mechanically and ultrasonically until the carbon nanotubes are uniformly dispersed, and prepare a carbon nanotube suspension. After 20 minutes, keep mechanical and ultrasonic stirring, slowly add palladium chloride hydrochloric acid with an appropriate concentration of 0.25g / L to the carbon nanotube suspension according to the loading of Pd (nano-palladium particles) being 0.28wt% of the carbon nanotubes Solution, obtain palladium ion / carbon nanotube suspension, after 20 minutes, add the NaOH alkaline solution of 15wt% to adjust the pH of palladium ion / carbon nanotube suspension to be 9~12, continue to keep mechanical and ultrasonic stirring, be warming up to 40 ℃ and add excess formaldehyde solution, and continue to adjust with NaOH solution and keep the pH at 10~14 until the pH is basically unchanged within 30min, filter, w...
Embodiment 2
[0072] In the slurry bed of the reaction vessel, add carbon nanotubes and water according to the mass ratio of CNTs (carbon nanotubes): water = 1:45, stir mechanically and ultrasonically until the carbon nanotubes are uniformly dispersed, and prepare a carbon nanotube suspension. After 22 minutes, keep mechanical and ultrasonic stirring, slowly add palladium chloride hydrochloric acid with an appropriate concentration of 0.50g / L to the carbon nanotube suspension according to the loading of Pd (nano-palladium particles) being 0.84wt% of the carbon nanotubes Solution, obtain palladium ion / carbon nanotube suspension, after 15 minutes, add the NaOH alkaline solution of 15wt% to adjust the pH of palladium ion / carbon nanotube suspension to be 9~12, keep mechanical and ultrasonic stirring, be warming up to 40 ℃ and add excess formaldehyde solution, and continue to adjust with NaOH solution and keep the pH at 10~14 until the pH is basically unchanged within 30min, filter, wash, and...
Embodiment 3
[0074] In the slurry bed of the reaction vessel, add carbon nanotubes and water according to the mass ratio of CNTs (carbon nanotubes): water = 1:45, stir mechanically and ultrasonically until the carbon nanotubes are uniformly dispersed, and prepare a carbon nanotube suspension. After 26 minutes, keep mechanical and ultrasonic stirring, slowly add palladium chloride hydrochloric acid with an appropriate concentration of 1.0g / L to the carbon nanotube suspension according to the loading of Pd (nano-palladium particles) at 2.52wt% of the carbon nanotubes Solution, obtain palladium ion / carbon nanotube suspension, after 18 minutes, add the NaOH alkaline solution of 15wt% to adjust the pH of palladium ion / carbon nanotube suspension to be 10~11, continue to keep mechanical and ultrasonic stirring, be warming up to 40 ℃ and add excess formaldehyde solution, and continue to use NaOH solution to adjust and keep the pH at 12~14 until the pH is basically unchanged within 30min, filter...
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