Multifunctional modified palm wax emulsion, its preparation method and application
A palm wax, multi-functional technology, applied in the field of papermaking, can solve the problems of affecting the final quality of products and being susceptible to intrusion by microorganisms, and achieve the effects of simple and mature production process, low production cost, and easy operation control.
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Embodiment 1
[0037] Add 2.5 g of solid palm wax and 110 ml of deionized water into a 250 ml beaker. The mixture was heated to 80°C in an oil bath, and then stirred with a 6000 rpm high-speed mixer for 8 minutes. The obtained palm wax emulsion was then placed in an ice water bath to cool, and named CW. Similarly, if 30 mg of surfactant lauryl dimethylamine hydantoin is added in the initial preparation process, another palm wax emulsion can be obtained, named CW-S.
[0038] First, prepare two 100 ml 2.5 wt% palm wax emulsions or their derivatives CW and CW-S, each of which is 100 ml according to the above method. Then add 0.36 grams of PHGH antibacterial agent, 2 grams of coupling reagent 1-(3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride and 3 grams of activator N-hydroxysuccinimide. Amine, control the temperature to react at 25°C, and adjust the pH of the emulsion to 7.5 with sodium bicarbonate. The mixture was maintained at a pH of 7.5 and stirred at room temperature with a magne...
Embodiment 2
[0040] Add 2.5 g of solid palm wax, 75 ml of deionized water and 25 ml of dimethylformamide to a 250 ml beaker. The mixture was heated to 65°C in an oil bath and stirred with a 9000 rpm high-speed mixer for 11 minutes. The obtained palm wax emulsion was then placed in an ice water bath to cool, and named CW. Similarly, if 50 mg of the surfactant, didecyl dimethyl ammonium chloride is added in the initial preparation process, another palm wax emulsion can be obtained, named CW-S.
[0041] First, prepare two 100 ml 2.5 wt% palm wax emulsions or their derivatives CW and CW-S, each of which is 100 ml according to the above method. Subsequently, 0.13 grams of PHGH antibacterial agent, 0.8 grams of coupling reagent N,N'-dicyclohexylcarbodiimide and 1.5 grams of activator 1-hydroxybenzotriazole were added respectively, and the reaction was carried out at 40°C under controlled temperature. The pH of the emulsion was adjusted to 8.0 with sodium bicarbonate. The mixture was maintained a...
Embodiment 3
[0043] Add 2.5 g of solid palm wax, 80 ml of deionized water and 30 ml of methanol into a 250 ml beaker. The mixture was heated to 55°C in an oil bath and stirred with a 12000 rpm high-speed mixer for 14 minutes. The obtained palm wax emulsion was then placed in an ice water bath to cool, and named CW. Similarly, if 65 mg of surfactant sodium lauryl sulfate is added in the initial preparation process, another palm wax emulsion can be obtained, named CW-S.
[0044] First, prepare two 100 ml 2.5 wt% palm wax emulsions or their derivatives CW and CW-S, each of which is 100 ml according to the above method. Subsequently, 0.25 g of PHGH antibacterial agent, 1 g of coupling reagent N,N'-dicyclohexylcarbodiimide and 1.8 g of activator 3-hydroxy-1,2,3-benzotriazine-4 (3H )-Ketone, control the temperature to react at 45°C and adjust the pH of the emulsion to 8.5 with sodium hydroxide. The mixture was maintained at a pH value of 8.5 and stirred at room temperature with a magnetic stirre...
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