Method of preparing micropore carbon
A microporous carbon and carbonization technology, applied in chemical instruments and methods, other chemical processes, etc., can solve problems such as poor controllability
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Embodiment 1
[0006] Embodiment 1: Adopting the phenolic resin with an average molecular weight of 11500 as raw material, dissolving it in ethanol to make a uniform solution, adding 6%% hexamethylenetetramine, coating the solution on a stainless steel support, and drying naturally Afterwards, at a heating rate of 0.5 degree per minute, the temperature is raised to 800 degree, kept at a constant temperature for 1 hour, and naturally cooled to room temperature, the nitrogen adsorption hole diameter of the obtained microporous carbon is
Embodiment 2
[0007] Embodiment 2: adopt the phenolic resin that average molecular weight is 2000 as raw material, dissolve it in ethanol to make uniform solution, add 6% hexamethylenetetramine, the solution is coated on the stainless steel support body, after natural drying With a heating rate of 0.5 degrees per minute, the temperature is raised to 800 degrees, kept at a constant temperature for 1 hour, and naturally cooled to room temperature. The nitrogen adsorption hole diameter of the obtained microporous carbon is
Embodiment 3
[0008] Embodiment 3: adopt the phenolic resin that average molecular weight is 460 as raw material, be dissolved in ethanol and make uniform solution, add 6%% hexamethylenetetramine, solution is coated on the stainless steel support body, naturally dry Afterwards, at a rate of 0.5 degrees per minute, the temperature was raised to 800 degrees, kept at a constant temperature for 1 hour, and naturally cooled to room temperature. The nitrogen adsorption hole diameter of the obtained microporous carbon was
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Abstract
Description
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Application Information
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