High molecular ceramic decoagulant and preparation method thereof
A technology of polymer ceramics and decoagulant, which is applied in the field of polymer ceramic decoagulant and its preparation, can solve the problems of side effects, narrow debonding range, easy solidification, etc., achieves good fluidity and viscosity, and is easy to industrialize production. , the effect of simple production process
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[0025] A preparation method of a polymer ceramic decoagulant is realized through the following steps:
[0026] (1) Put tea saponin and water into the reaction tank, start stirring and heat up after adding, add oxidant after the temperature rises to 60°C-100°C, and react for 3-6 hours;
[0027] (2) Then add hydroquinone diglycidyl ether, lignosulfonate and fatty aldehyde, and react for 3 to 5 hours;
[0028] (3) Cooling and discharging to obtain the ceramic decoagulant.
Embodiment 1
[0031] A polymer ceramic decoagulant of the present invention is made of the following raw material components in mass fraction ratio:
[0032]
[0033] Wherein, the fatty aldehyde is a mixture of formaldehyde and glutaraldehyde, and the mass ratio of formaldehyde and glutaraldehyde is 13:16, that is, the amounts of formaldehyde and glutaraldehyde are 6.5 parts and 8 parts respectively.
[0034] A kind of preparation method of macromolecular ceramic decoagulant of the present invention is realized by following steps:
[0035] (1) Put 15 parts of tea saponin and 61 parts of water into the reaction tank. After the addition, start stirring and heat up. After the temperature rises to 65°C, add 2 parts of hydrogen peroxide and react for 3.5 hours;
[0036] (2) Then add 1.5 parts of hydroquinone diglycidyl ether, 6 parts of sodium lignosulfonate and 6.5 parts of formaldehyde and 8 parts of glutaraldehyde, and react for 3.5 hours;
[0037] (3) Cooling and discharging to obtain th...
Embodiment 2
[0039] A polymer ceramic decoagulant of the present invention is made of the following raw material components in mass fraction ratio:
[0040]
[0041] A kind of preparation method of macromolecular ceramic decoagulant of the present invention is realized by following steps:
[0042] (1) Put 12 parts of tea saponin and 63.5 parts of water into the reaction tank. After the addition, start stirring and heat up. After the temperature rises to 75°C, add 3.5 parts of hydrogen peroxide and react for 4 hours;
[0043] (2) Then add 2 parts of hydroquinone diglycidyl ether, 7 parts of sodium lignosulfonate and 12 parts of acetaldehyde, and react for 4.5 hours;
[0044] (3) Cooling and discharging to obtain the ceramic decoagulant.
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