Purification processing method for superhard grinding medium
A processing method and superabrasive technology, applied in the direction of inorganic pigment processing, chemical instruments and methods, fibrous fillers, etc., can solve the problems of large amount of acid, small amount of beaker feeding, large volatile acid gas, etc., to achieve acid consumption And the effect of reducing power consumption, reducing pollution, and concentrating treatment
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Embodiment 1
[0022] Method steps of the present invention are as follows:
[0023] ①. According to the catalyst components used, the electrolytes matching the iron base, nickel base and cobalt base are respectively prepared, and the metal catalyst is precipitated on the anode plate by electrochemical methods. The matching method is implemented according to the existing technology. In this way, there is no heavy metal pollution, and at the same time, the post-sequence cooking acid also greatly reduces the emission of nitrogen dioxide.
[0024] ② For cubic boron nitride, since most of the catalysts for making cubic boron nitride are composed of alkali metals, alkaline earth metals and their nitrides, it is easy to decompose when exposed to water, without electrolysis, and directly separate hexagonal boron nitride with a shaking table after decomposition And cubic boron nitride, the recovered cubic boron nitride is directly boiled in acid.
[0025] ③. Drop acid during the subsequent acid coo...
Embodiment 2
[0030] Method steps of the present invention are as follows:
[0031] ①. According to the catalyst components used, the electrolytes matching the iron base, nickel base and cobalt base are respectively prepared, and the metal catalyst is precipitated on the anode plate by electrochemical method; the matching method is implemented according to the existing technology.
[0032] ②, and then use a shaker to separate hexagonal boron nitride and cubic boron nitride, and the recovered cubic boron nitride is directly boiled in acid.
[0033] 3. Acid is dripped in the subsequent acid boiling process; the acid used is perchloric acid, and the consumption is 70 drops / min.
[0034] ④. Heat to 250° by oil bath method, and stir evenly in the flask with a glass rod.
[0035] The composition of the electrolyte
[0036] Boric acid / g.l -1
[0037] Table 1
Embodiment 3
[0039] Method steps of the present invention are as follows:
[0040] ①. According to the catalyst components used, the electrolytes matching the iron base, nickel base and cobalt base are respectively prepared, and the metal catalyst is precipitated on the anode plate by electrochemical methods. The matching method is implemented according to the existing technology. In this way, there is no heavy metal pollution, and at the same time, the post-sequence cooking acid also greatly reduces the emission of nitrogen dioxide.
[0041] ② For cubic boron nitride, since most of the catalysts for making cubic boron nitride are composed of alkali metals, alkaline earth metals and their nitrides, it is easy to decompose when exposed to water, without electrolysis, and directly separate hexagonal boron nitride with a shaking table after decomposition And cubic boron nitride, the recovered cubic boron nitride is directly boiled in acid.
[0042] ③. Drop acid during the subsequent acid coo...
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