Spray for disinfection and acarus killing and preparation method and application thereof

A technology of spray and edible ethanol, which is applied in the direction of disinfectant, botany equipment and method, application, etc., can solve the problems of air and human safety hazards, requires a lot of investment, and is uneconomical, and achieves high anti-mite and bactericidal activity. The process is simple, and the effect of killing the surface of the object is excellent

A technology of spray and edible ethanol, which is applied in the direction of disinfectant, botany equipment and method, application, etc., can solve the problems of air and human safety hazards, requires a lot of investment, and is uneconomical, and achieves high anti-mite and bactericidal activity. The process is simple, and the effect of killing the surface of the object is excellent

CN112219846AInactive Publication Date: 2021-01-15广州洁宜日化用品有限公司

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  • Spray for disinfection and acarus killing and preparation method and application thereof
  • Spray for disinfection and acarus killing and preparation method and application thereof
  • Spray for disinfection and acarus killing and preparation method and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0021] This embodiment is a spray for disinfection and mite removal, and its preparation method comprises the following steps:

[0022] S1. Measure 0.1 mL of bis(3-aminopropyl)dodecylamine, 29.9 mL of reverse osmosis purified water, and 70 mL of edible ethanol with a volume fraction of 95%, and set aside. Among them, the commercially available Lonzabac 12.100 can be used as bis(3-aminopropyl)dodecylamine.

[0023] S2. Put the above-mentioned amount of di(3-aminopropyl) dodecylamine and edible ethanol in a sterilized mixing tank, stir and mix until completely dissolved, then add the above-mentioned amount of reverse osmosis pure The water is stirred and mixed evenly to obtain a spray. Among them, after the physical and chemical indicators of the spray are tested and qualified, it can be filled out of the tank and put into a packaging bottle with a spray head and pre-sterilized by ultraviolet rays.

Embodiment 2

[0025] This embodiment is a spray for disinfection and mite removal, and its preparation method comprises the following steps:

[0026] S1. Measure 2 mL of bis(3-aminopropyl) dodecylamine, 8 mL of reverse osmosis purified water, and 90 mL of edible ethanol with a volume fraction of 60%, and set aside. Among them, the commercially available Lonzabac 12.100 can be used as bis(3-aminopropyl)dodecylamine.

[0027] S2. Put the above-mentioned amount of di(3-aminopropyl) dodecylamine and edible ethanol in a sterilized mixing tank, stir and mix until completely dissolved, then add the above-mentioned amount of reverse osmosis pure The water is stirred and mixed evenly to obtain a spray. Among them, after the physical and chemical indicators of the spray are tested and qualified, it can be filled out of the tank and put into a packaging bottle with a spray head and pre-sterilized by ultraviolet rays.

Embodiment 3

[0029] This embodiment is a spray for disinfection and mite removal, and its preparation method comprises the following steps:

[0030] S1. Measure 0.2 mL of bis(3-aminopropyl) dodecylamine, 21.8 mL of reverse osmosis purified water, and 78 mL of edible ethanol with a volume fraction of 65%, and set aside. Among them, the commercially available Lonzabac 12.100 can be used as bis(3-aminopropyl)dodecylamine.

[0031] S2. Put the above-mentioned amount of di(3-aminopropyl) dodecylamine and edible ethanol in a sterilized mixing tank, stir and mix until completely dissolved, then add the above-mentioned amount of reverse osmosis pure The water is stirred and mixed evenly to obtain a spray. Among them, after the physical and chemical indicators of the spray are tested and qualified, it can be filled out of the tank and put into a packaging bottle with a spray head and pre-sterilized by ultraviolet rays.

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Abstract

The invention is applicable to the technical field of disinfection and acarus killing, and provides a spray for disinfection and acarus killing and a preparation method and application thereof. The spray comprises the following components in parts by volume: 0.1-2 parts of di (3-aminopropyl) dodecylamine, 8-29.9 parts of water and 70-90 parts of edible ethanol, wherein the volume fraction of ethanol in the edible ethanol is 60%-95%. According to the invention, di (3-aminopropyl) dodecylamine is used as the acaricide so that the safety is extremely high, the spray can achieve very high acaricidal and bactericidal activity under the condition of relatively low usage amount, has a remarkable inhibition effect on bacteria, fungi and the like, and is non-toxic and non-irritant to a human body.Moreover, by adding high-concentration edible ethanol, a damage effect on virus envelopes is achieved, viruses can be easily inactivated, almost all enveloped viruses can be killed, and a disinfectioneffect can be achieved while acarus killing is achieved.

Description

technical field [0001] The invention belongs to the technical field of disinfection and mite removal, and in particular relates to a spray for disinfection and mite removal as well as its preparation method and application. Background technique [0002] Mites belong to a class of tiny animals belonging to the subclass Arthropoda Arachnida, which is a general term for all types of Acari except ticks. The body size is generally about 0.5mm, some are as small as 0.1mm, and the larger Most species are smaller than lmm. There are many kinds of mites, and more than 50,000 species of mites have been found in the world, second only to insects. In a broad sense, mites can be said to be ubiquitous, covering the ground, underground, mountains, water, and inside and outside organisms. They reproduce quickly and in large numbers. Mites are everywhere around us, and they can be found in almost every corner of our lives. Fabric sofas, Simmons, carpets, quilts, mattresses, pillows and oth...

Claims

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Application Information

Patent Timeline
15 Jan 2021
Publication
CN112219846A
IPC
A01N33/04; A01N31/02; A01P1/00; A01P3/00; A01P7/02
CPC
A01N31/02; A01N33/04
Inventors
梅正开