Graphite powder purification method and high-purity graphite powder prepared by method thereof
A graphite powder, high-purity technology, applied in the field of high-temperature purification powder, can solve the problems of inconvenient popularization and application, inability to melt graphite impurities, and increase investment costs, so as to shorten the time for impurity removal, accelerate melting or vaporization, and speed up discharge. Effect
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Embodiment 1
[0036] The finished graphite powder with a carbon content of 98% and a particle size of 10 μm-80 μm is selected for purification.
[0037]First, put an appropriate amount of graphite powder to be purified into an isostatic graphite crucible, and place it in a high-temperature closed kiln for calcination. Seal the high-temperature airtight kiln well to ensure that there will be no air leakage in the high-temperature airtight kiln. Then, the high-temperature closed kiln is evacuated by a vacuum pump connected with the high-temperature closed kiln, so that the pressure in the high-temperature kiln is 200 Pa. The calcination temperature of the high-temperature kiln was set at 2000° C., and the heating rate was 10° C. / min. Then, inert gas is filled into the high-temperature airtight kiln, and nitrogen is selected as the protective atmosphere in this embodiment. The amount of inert gas charged is controlled so that the air pressure in the high-temperature airtight kiln is lower th...
Embodiment 2
[0049] The finished graphite powder with a carbon content of 98.6% and a particle size of 80 μm-120 μm is selected for purification.
[0050] First, put an appropriate amount of graphite powder to be purified into an isostatic graphite crucible, and place it in a high-temperature closed kiln for calcination. Seal the high-temperature airtight kiln well to ensure that there will be no air leakage in the high-temperature airtight kiln. Then, the high-temperature closed kiln is evacuated by a vacuum pump connected with the high-temperature closed kiln, so that the pressure in the high-temperature kiln is 1000Pa. The calcination temperature of the high-temperature kiln was set at 2400° C., and the heating rate was 18° C. / min. Then, inert gas is filled into the high-temperature airtight kiln, and argon is selected as the protective atmosphere in this embodiment. The amount of inert gas charged is controlled so that the air pressure in the high-temperature airtight kiln is lower t...
Embodiment 3
[0062] The finished graphite powder with a carbon content of 99% and a particle size of 120 μm-200 μm is selected for purification.
[0063] First, put an appropriate amount of graphite powder to be purified into an isostatic graphite crucible, and place it in a high-temperature closed kiln for calcination. Seal the high-temperature airtight kiln well to ensure that there will be no air leakage in the high-temperature airtight kiln. Then, the high-temperature closed kiln is evacuated by a vacuum pump connected with the high-temperature closed kiln, so that the pressure in the high-temperature kiln is 1800Pa. The calcination temperature of the high-temperature kiln was set at 2800° C., and the heating rate was 25° C. / min. Then, inert gas is filled into the high-temperature airtight kiln, and helium is selected as the protective atmosphere in this embodiment. The amount of inert gas charged is controlled so that the air pressure in the high-temperature airtight kiln is lower t...
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