Mixed type high-mesoporous-ratio core-shell structure multiphase nickel-loaded activated carbon
A core-shell structure, high mesoporous technology, applied in the direction of electrodes, metal/metal oxide/metal hydroxide catalysts, electrolysis process, etc., can solve the problems of complex composition, unsatisfactory, difficult raw material pretreatment, etc.
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Embodiment 1
[0014] a. 20 parts of poly(4-styrenesulfonic acid-co-maleic acid) sodium salt, 0.2 parts of nickel chloride solution, 20 parts of NH 4 Put the OH solution into an oil bath at 200 degrees Celsius for 2 hours, take it out and dry it to obtain the precursor I. The concentration of nickel chloride solution is 130g / L, NH 4 The concentration of OH solution is 525g / L.
[0015] b. Place precursor I in a tube furnace and pyrolyze it in a nitrogen atmosphere at 800 degrees Celsius for 40 minutes to obtain and take out precursor II; the flow rate of nitrogen gas is 300 mL / min; the heating rate of the tube furnace is 50 degrees Celsius / min.
[0016] c. Disperse the precursor II into 50 parts of water, then add 25 parts of sodium hydroxide solid, stir for 36 hours, filter and dry to obtain the product.
[0017] d. Finally, wash the product until it is neutral, take it out and dry it to get the activated carbon.
[0018] The specific surface area of the hybrid high-mesopority ratio c...
Embodiment 2
[0020] a. 40 parts of poly(4-styrenesulfonic acid-copolymerization-maleic acid) sodium salt, 4 parts of nickel chloride solution, 80 parts of NH 4 Put the OH solution into an oil bath at 200 degrees Celsius for 2 hours, take it out and dry it to obtain the precursor I. The concentration of nickel chloride solution is 130g / L, and the concentration of NH4OH solution is 525g / L.
[0021] b. Place precursor I in a tube furnace and pyrolyze it in a nitrogen atmosphere at 800 degrees Celsius for 40 minutes to obtain and take out precursor II; the flow rate of nitrogen gas is 300 mL / min; the heating rate of the tube furnace is 50 degrees Celsius / min.
[0022] c. Disperse the precursor II into 50 parts of water, then add 50 parts of sodium hydroxide solid, stir for 36 hours, filter and dry to obtain the product.
[0023] d. Finally, wash the product until it is neutral, take it out and dry it to get the activated carbon.
[0024] The specific surface area of the hybrid high-mesop...
Embodiment 3
[0026] a. 30 parts of poly(4-styrenesulfonic acid-copolymerization-maleic acid) sodium salt, 0.3 parts of nickel chloride solution, 50 parts of NH 4 Put the OH solution into an oil bath at 200 degrees Celsius for 2 hours, take it out and dry it to obtain the precursor I. The concentration of nickel chloride solution is 130g / L, and the concentration of NH4OH solution is 525g / L.
[0027] b. Place precursor I in a tube furnace and pyrolyze it in a nitrogen atmosphere at 800 degrees Celsius for 40 minutes to obtain and take out precursor II; the flow rate of nitrogen gas is 300 mL / min; the heating rate of the tube furnace is 50 degrees Celsius / min.
[0028] c. Disperse the precursor II into 50 parts of water, then add 50 parts of sodium hydroxide solid, stir for 36 hours, filter and dry to obtain the product.
[0029] d. Finally, wash the product until it is neutral, take it out and dry it to get the activated carbon.
[0030] The specific surface area of the hybrid high-mes...
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