Indoor air deodorant having sterilizing function and preparation method thereof
A technology for indoor air and deodorant, applied in the directions of fungicides, botanical equipment and methods, biocides, etc., can solve the problems of poor adsorption effect, short action time, long-lasting, etc., and achieves good film-forming properties, easy to obtain, Simple steps to operate
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Embodiment 1
[0038] This example provides a method for synthesizing hyperbranched polyamidoamine (used in the following examples), and the specific process is as follows:
[0039] (1) Add methyl acrylate to a methanol solution of divinyltriamine with a volume concentration of 35%, and an addition reaction occurs at 0-20°C, and the reaction time is 5 hours; among them, divinyltriamine and methyl acrylate The molar ratio of ester is 1:1;
[0040] (2) After the reaction, the temperature is increased to 60°C, 100°C, 120°C and 140°C in four stages. In the initial stage (heating up to 60°C, 100°C, the rate of temperature rise can be used empirical values), the vacuum is maintained with a water pump, and the third (The temperature is increased to 120°C, 140°C, and the rate of temperature rise can be empirical) and then use an oil pump. The total reaction time is 24 hours. The hyperbranched polyamidoamine is obtained.
Embodiment 2
[0042] This embodiment provides an indoor air deodorant with sterilization function. The raw material components include hyperbranched polyamidoamine, plant extract, glycol ether, propylene glycol and deionized water, and the weight ratio of each raw material component is: hyperbranched Polyamidoamine accounts for 5%, Sophora flavescens extract accounts for 2.5%, wild chrysanthemum extract accounts for 2.5%, propylene glycol n-propyl ether accounts for 5%, propylene glycol n-butyl ether accounts for 5%, propylene glycol accounts for 10%, and deionized water accounts for 70%. %.
Embodiment 3
[0044] This embodiment provides an indoor air deodorant with sterilization function. The raw material components include hyperbranched polyamidoamine, plant extract, glycol ether, propylene glycol and deionized water, and the weight ratio of each raw material component is: hyperbranched Polyamidoamine accounts for 5%, Sophora flavescens extract accounts for 2.5%, mugwort extract accounts for 2.5%, propylene glycol n-propyl ether accounts for 5%, propylene glycol n-butyl ether accounts for 5%, propylene glycol accounts for 10%, and deionized water accounts for 70%. .
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