Quantitative spray aerosol product for controlling specific harmful substances, and method for controlling specific harmful substances using the same
The metered spray aerosol product with specific gravity and pressure settings ensures uniform adhesion to ceilings and walls, effectively controlling harmful microorganisms and fine substances in confined spaces like bathrooms and toilets.
Patent Information
- Application Number
- JP2022078569
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-03-13
- Filing Date
- 2022-05-12
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2041-03-09
AI Technical Summary
Existing metered-dose aerosol products are not suitable for confined spaces like bathrooms and toilets, as they either lack effectiveness against harmful microorganisms such as mold and bacteria or require laborious disposal and risk chemical leakage.
A metered spray aerosol product with a specific gravity of 0.76 to 0.95 and internal pressure of 0.60 MPa or less, containing a control component and propellant, ensures uniform adhesion to ceilings and walls, using lower alcohols, higher fatty acid esters, or hydrocarbon solvents, and liquefied petroleum gas or hydrofluoroolefin as propellants.
The product effectively controls harmful microorganisms and fine substances by ensuring uniform adhesion to difficult-to-clean surfaces without excessive airborne particles, providing a long-lasting control effect with minimal operational effort and reduced leakage risk.
Smart Images

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Figure 0007704713000002
Abstract
Description
Technical Field
[0001] The present invention relates to a quantitative injection aerosol product for controlling specific harmful substances (especially molds, bacteria, viruses) containing harmful microorganisms and / or harmful fine substances in a space (especially a narrow space), and a method for controlling specific harmful substances using the same.
Background Art
[0002] Quantitative injection aerosol products that can spray a certain amount of drug by one injection are widely used as insecticidal aerosol products (for example, see Patent Document 1) and deodorant aerosol products (for example, see Patent Document 2) because of their convenience.
[0003] The aerosol product of Patent Document 1 is a quantitative injection aerosol product that can improve the pest control efficiency under the spraying state of the content of the aerosol product having a function of spraying a preset quantity forcefully.
[0004] The aerosol product of Patent Document 2 is a quantitative injection aerosol product that shows an excellent deodorizing effect on malodorous substances on the floor surface as well as in the space by quantitatively injecting an aerosol composition containing a specific amount of deodorizing component so as to have a specific injection particle diameter.
Prior Art Documents
Patent Documents
[0005]
Patent Document 1
Patent Document 2
Summary of the Invention
Problems to be Solved by the Invention
[0006] The metered-dose aerosol product of Patent Document 1 improves pest control efficiency by enhancing the injection force. However, such a metered-dose aerosol product with a strong injection force is not necessarily a formulation design suitable for use in confined spaces such as bathrooms and toilets.
[0007] The metered-dose aerosol product of Patent Document 2 is said to exhibit a sufficient deodorizing effect not only on the space but also on the floor surface. However, harmful microorganisms such as mold and bacteria are a problem due to their generation and reproduction on ceilings and walls that are difficult to thoroughly clean. Therefore, it is not necessarily suitable for controlling harmful microorganisms in confined spaces such as bathrooms and toilets.
[0008] As described above, various metered-dose aerosol products for insecticidal and deodorizing purposes have been developed. However, the development of metered-dose aerosol products for controlling harmful microorganisms such as mold, bacteria, and viruses, as well as harmful fine substances such as house dust and PM2.5, is considered difficult and has not yet been put into practical use.
[0009] Particularly for controlling harmful microorganisms such as mold in bathrooms, heretofore, (1) fumigants and (2) full-dose spray aerosols have been commonly used. These formulations are said to prevent the generation of harmful microorganisms such as mold for a certain period after each use. However, each time, it is necessary to discard the used fumigants and full-dose spray aerosols, which is laborious. In addition, if the usage location cannot be completely sealed, there is a risk that part of the smoke or chemical agent may leak into other rooms during use. Therefore, the development of a metered-dose aerosol product capable of controlling harmful microorganisms such as mold with a simpler operation than (1) fumigants and (2) full-dose spray aerosols is desired.
[0010] The present invention has been made in view of the above problems, and by uniformly adhering a sufficient amount of a control component to the ceiling and walls, it is possible to provide a metered-dose aerosol product for controlling specific harmful substances that can exhibit an excellent control effect on specific harmful substances including harmful microorganisms and / or harmful fine substances in a space (particularly, a confined space), and a method for controlling specific harmful substances using the same.
Means for Solving the Problems
[0011] The characteristic configuration of the metered spray aerosol product for controlling specific harmful substances according to the present invention for solving the above problems is as follows: A metered spray aerosol product for controlling specific harmful substances including harmful microorganisms and / or harmful fine substances in space, which is formed by filling an aerosol container equipped with a metered spray valve with an aerosol stock solution containing a specific harmful substance control component and an organic solvent and a propellant, wherein the specific gravity of the aerosol stock solution at 20°C is 0.76 to 0.95, and the internal pressure in the aerosol container is set to 0.60 MPa or less at 25°C.
[0012] According to the metered spray aerosol product for controlling specific harmful substances of this configuration, an aerosol stock solution containing a specific harmful substance control component and an organic solvent and a propellant are filled into an aerosol container equipped with a metered spray valve. Since the specific gravity of the aerosol stock solution at 20°C and the internal pressure of the aerosol container at 25°C are within the above ranges, when the metered spray aerosol product for controlling specific harmful substances is sprayed into space, the sprayed particles do not remain excessively in the air, and a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces. Harmful microorganisms such as mold and bacteria tend to occur and multiply in large numbers on ceilings and wall surfaces where cleaning is difficult to reach, and harmful fine substances such as house dust also easily adhere to ceilings and wall surfaces. Therefore, a sufficient amount of the control component uniformly adhering to the ceiling and wall surfaces can exert an excellent control effect on specific harmful substances including harmful microorganisms and / or harmful fine substances in space.
[0013] In the metered spray aerosol product for controlling specific harmful substances according to the present invention, it is preferable that the volume ratio (a / b) of the aerosol stock solution (a) to the propellant (b) in the aerosol container is set to 1 / 99 to 70 / 30 by volume.
[0014] According to the metered spray aerosol product for controlling specific harmful substances of this configuration, when the volume ratio (a / b) is within the above range, when the metered spray aerosol product for controlling specific harmful substances is sprayed into the space, the spray particles do not remain excessively in the air, and a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces, and it is possible to exert an excellent control effect against specific harmful substances including harmful microorganisms and / or harmful fine substances.
[0015] In the metered spray aerosol product for controlling specific harmful substances according to the present invention, The organic solvent is preferably at least one selected from the group consisting of lower alcohols having 2 to 3 carbon atoms, higher fatty acid esters having 16 to 20 carbon atoms, and hydrocarbon solvents.
[0016] According to the metered spray aerosol product for controlling specific harmful substances of this configuration, by using at least one selected from the group consisting of lower alcohols having 2 to 3 carbon atoms, higher fatty acid esters having 16 to 20 carbon atoms, and hydrocarbon solvents as the organic solvent, the spray particles do not remain excessively in the air, and a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces, and it is possible to exert an excellent control effect against specific harmful substances including harmful microorganisms and / or harmful fine substances.
[0017] In the metered spray aerosol product for controlling specific harmful substances according to the present invention, The propellant is preferably liquefied petroleum gas and / or hydrofluoroolefin.
[0018] According to the metered spray aerosol product for controlling specific harmful substances of this configuration, by using liquefied petroleum gas and / or hydrofluoroolefin as the propellant, the spray particles do not remain excessively in the air, and a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces, and it is possible to exert an excellent control effect against specific harmful substances including harmful microorganisms and / or harmful fine substances.
[0019] In the metered spray aerosol product for controlling specific harmful substances according to the present invention, The space has a volume of 2.0 to 18.8 m3 It is preferably a confined space.
[0020] According to the metered injection aerosol product for controlling specific harmful substances of this configuration, the space has a volume of 2.0 to 18.8 m 3 Due to being a confined space with a volume of 2.0 to 18.8 m, when the metered injection aerosol product for controlling specific harmful substances is injected towards a confined space with a volume of 2.0 to 18.8 m 3 When injected, a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces without excessive remaining of the injection particles in the air. Harmful microorganisms such as mold and bacteria tend to occur and multiply more on the ceiling and wall surfaces where cleaning is difficult to reach, and harmful fine substances such as house dust also tend to adhere to the ceiling and wall surfaces. Therefore, with a sufficient amount of the control component uniformly adhering to the ceiling and wall surfaces, excellent control effects can be exerted on specific harmful substances including harmful microorganisms and / or harmful fine substances in a confined space.
[0021] In the metered injection aerosol product for controlling specific harmful substances according to the present invention, the release amount of the specific harmful substance control component is preferably set to 0.01 to 250 mg / m 3
[0022] According to the metered injection aerosol product for controlling specific harmful substances of this configuration, by setting the release amount of the specific harmful substance control component contained in the metered injection aerosol product for controlling specific harmful substances within the above range, when the metered injection aerosol product for controlling specific harmful substances is injected towards a space, a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces without excessive remaining of the injection particles in the air, and excellent control effects can be exerted on specific harmful substances including harmful microorganisms and / or harmful fine substances.
[0023] The characteristic configuration of the specific harmful substance control method according to the present invention for solving the above problems is a specific harmful substance control method in which injection treatment is performed using the above-mentioned metered injection aerosol product for controlling specific harmful substances, wherein the metered injection aerosol product for controlling specific harmful substances is injected towards a space indoors.
[0024] According to the method for controlling specific harmful substances of this configuration, by a simple operation of simply spraying a metered spray aerosol product for controlling specific harmful substances indoors towards the space, a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces without excessive remaining of the spray particles in the air. Harmful microorganisms such as mold and bacteria tend to generate and multiply in large numbers on ceilings and wall surfaces where cleaning is difficult to reach, and harmful fine substances such as house dust also tend to adhere to ceilings and wall surfaces. Therefore, with a sufficient amount of the control component uniformly adhering to the ceiling and wall surfaces, excellent control effects can be exerted on specific harmful substances including harmful microorganisms and / or harmful fine substances in the space.
[0025] In the method for controlling specific harmful substances according to the present invention, it is preferable that the space is a narrow space with a volume of 2.0 to 18.8 m 3 .
[0026] According to the method for controlling specific harmful substances of this configuration, particularly in a narrow space with a volume of 2.0 to 18.8 m 3 , when the metered spray aerosol product for controlling specific harmful substances is sprayed, a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces without excessive remaining of the spray particles in the air, and excellent control effects can be exerted on specific harmful substances including harmful microorganisms and / or harmful fine substances.
[0027] In the method for controlling specific harmful substances according to the present invention, it is preferable to spray the metered spray aerosol product for controlling specific harmful substances so that the release amount of the control component for specific harmful substances is 0.01 to 250 mg / m 3 .
[0028] According to the method for controlling specific harmful substances of this configuration, by setting the release amount of the specific harmful substance control component contained in the metered injection aerosol product for specific harmful substance control within the above range, when the metered injection aerosol product for specific harmful substance control is sprayed towards a space, the sprayed particles do not remain excessively in the air, and a sufficient amount of the control component uniformly adheres to the ceiling and wall surfaces, enabling excellent control effects to be exerted against specific harmful substances including harmful microorganisms and / or harmful fine substances.
Embodiments for Carrying out the Invention
[0029] Hereinafter, the metered injection aerosol product for specific harmful substance control and the method for controlling specific harmful substances of the present invention will be described. However, the present invention is not intended to be limited to the configurations described below.
[0030] 〔Metered Injection Aerosol Product for Controlling Specific Harmful Substances〕 The metered injection aerosol product for specific harmful substance control of the present invention is a metered injection type aerosol used for controlling specific harmful substances including harmful microorganisms and / or harmful fine substances in a space (particularly, a narrow space). It is configured by filling an aerosol stock solution containing a specific harmful substance control component and a solvent, and a propellant into an aerosol container equipped with a metered injection valve. Here, "harmful microorganisms" means organisms or things derived from organisms such as bacteria, molds, viruses, mites, and pollen, and "harmful fine substances" means non-organisms or things derived from non-organisms such as house dust, PM2.5, and yellow sand. In this specification, "harmful microorganisms" and "harmful fine substances" are collectively referred to as "specific harmful substances". Also, the "space" in the present invention refers to an interstitial space of less than 2.0 m 3 a narrow space of about 2.0 to 18.8 m 3 a volume corresponding to a room of about 4.5 to 8 tatami mats, which is about 18.8 to 33.3 m 3 (area 7.5 to 13.3 m 2 and height 2.2 to 3.0 m), an indoor space, a volume corresponding to a room of 8 to 16 tatami mats, which is about 33.3 to 66.6 m 3 (area 13.3 to 26.6 m 2, a relatively large indoor space with a height of 2.2 to 3.0 m, etc., can be mentioned, and it is not particularly limited. The "narrow space" in which the quantitative injection aerosol product for controlling specific harmful substances of the present invention exhibits particularly excellent effects assumes a space with a volume of 2.0 to 18.8 m 3 and examples include sealed or semi-sealed spaces such as bathrooms, dressing rooms, washrooms, toilets, closets, cabinets, automobiles, tents, warehouses, storage rooms, garages, and entrances. More specifically, for example, as a narrow space with a volume of 2.0 to 3.0 m 3 , a toilet, etc. can be mentioned, and as a narrow space with a volume of 3.0 to 18.8 m 3 , a bathroom, etc. can be mentioned. Since the quantitative injection aerosol product for controlling specific harmful substances of the present invention is a quantitative injection type aerosol, the injection amount of the drug is small. Furthermore, by appropriately setting the specific gravity of the aerosol stock solution at 20°C and the internal pressure of the aerosol container at 25°C, an excellent control effect on specific harmful substances including harmful microorganisms and / or harmful fine substances in the space (especially in a narrow space) is achieved. In this specification, regarding harmful microorganisms, in addition to the effect of preventing reproduction by creating an environment in which harmful microorganisms are difficult to grow or exist, the effect of killing harmful microorganisms is also included in the control effect together with the effect of preventing reproduction. For example, when controlling mold, the mold prevention effect and the mold killing effect are included in the control effect. Also, regarding harmful fine substances, in addition to the effect of preventing contamination by creating an environment in which harmful fine substances are difficult to adhere to walls, etc., the effect of removing harmful fine substances already adhering to walls, etc. is also included in the control effect together with the effect of preventing contamination. For example, when controlling house dust, the dust prevention effect and the dust removal effect are included in the control effect.
[0031] <Aerosol stock solution> One of the main components of the aerosol stock solution, the specific harmful substance control component, includes a bacteria control component, a mold control component, a virus control component, an allergen control component, etc. The above specific harmful substance control components can be used alone or in a mixture of multiple types. In the specific harmful substance control component, when there are optical isomers based on asymmetric carbon or geometric isomers based on double bonds, each of them and any mixture are also included in the present invention.
[0032] Although not particularly limited, the bactericidal components include phenolic bactericidal components such as isopropylmethylphenol (IPMP), carvacrol, thymol, triclosan, methylparaben, ethylparaben, propylparaben, butylparaben, 4-chloro-3,5-dimethylphenol, orthophenylphenol, о-cresol, m-cresol, and p-cresol; benzalkonium salts such as benzalkonium chloride, benzalkonium methosulfate, and benzalkonium organic acid salts; benzethonium salts such as benzethonium chloride, benzethonium methosulfate, and benzethonium organic acid salts; cetylpyridinium salts such as cetylpyridinium chloride, cetylpyridinium methosulfate, and cetylpyridinium organic acid salts; didecyldimethylammonium salts such as didecyldimethylammonium chloride and didecyldimethylammonium methosulfate; dilauryl dimethylammonium salts such as dilauryl dimethylammonium chloride and dilauryl dimethylammonium methosulfate; distearyldimethylammonium salts such as distearyldimethylammonium chloride and distearyldimethylammonium methosulfate; and cationic surfactant-based bactericidal components such as 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dibromide, 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dichloride, and 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dimethosulfate; biguanide-based bactericidal components; azole-based bactericidal components such as tebuconazole and enilconazole; fruit seed extract-based bactericidal components such as grapefruit seed extract, kaki seed extract, and grape seed extract; glycerin monofatty acid ester-based bactericidal components such as monolaurin, monocaprin, and monocaprylin; chlorhexidine salts such as chlorhexidine gluconate and chlorhexidine hydrochloride, and chlorhexidine-based bactericidal components such as chlorhexidine; octadecyldimethyl(3-triethoxysilylpropyl)ammonium chloride, dodecyldimethyl(3-triethoxysilylpropyl)ammonium chloride,Silicon-based bactericidal components such as dodecyl diisopropyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, octadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, octadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, carboxylic acid-based bactericidal components such as benzoic acid, salicylic acid, sorbic acid, ethylenediaminetetraacetic acid (EDTA), glycine, alkyldiethylaminoglycine, polylysine or salts thereof, dehydroacetic acid, chloramine, 3-iodo-2-propyl-N-butylcarbamate (IPBC), phenoxyethanol, silver-based bactericidal components such as silver zeolite, zinc pyrithione, thiamine lauryl sulfate, white egg protein, hydroxyalkyl chitosan or salts thereof, etc. Among these bactericidal components, isopropylmethylphenol (IPMP), carbacrol, thymol, benzalkonium chloride, 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dibromide, monocaprin, monocaprylin, tebuconazole are preferred.
[0033] The mold control components are not particularly limited, but include phenolic mold control components such as isopropylmethylphenol (IPMP), carvacrol, thymol, triclosan, methylparaben, ethylparaben, propylparaben, butylparaben, 4-chloro-3,5-dimethylphenol, orthophenylphenol, о-cresol, m-cresol, and p-cresol; benzalkonium salts such as benzalkonium chloride, benzalkonium methosulfate, and benzalkonium organic acid salts; benzethonium salts such as benzethonium chloride, benzethonium methosulfate, and benzethonium organic acid salts; cetylpyridinium salts such as cetylpyridinium chloride, cetylpyridinium methosulfate, and cetylpyridinium organic acid salts; didecyldimethylammonium salts such as didecyldimethylammonium chloride and didecyldimethylammonium methosulfate; dilauryl dimethylammonium salts such as dilauryl dimethylammonium chloride and dilauryl dimethylammonium methosulfate; distearyldimethylammonium salts such as distearyldimethylammonium chloride and distearyldimethylammonium methosulfate; and cationic surfactant-based mold control components such as 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dibromide, 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dichloride, and 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dimethosulfate; biguanide-based mold control components; azole-based mold control components such as tebuconazole and enilconazole; fruit seed extract-based mold control components such as grapefruit seed extract, kaki seed extract, and grape seed extract; glycerin monofatty acid ester-based mold control components such as monolaurin, monocaprin, and monocaprylin; chlorhexidine salts such as chlorhexidine gluconate and chlorhexidine hydrochloride, and chlorhexidine-based mold control components such as chlorhexidine; octadecyldimethyl(3-triethoxysilylpropyl)ammonium chloride, dodecyldimethyl(3-triethoxysilylpropyl)ammonium chloride,Silicon-based mold control components such as dodecyl diisopropyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, octadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, octadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, carboxylic acid-based mold control components such as benzoic acid, salicylic acid, sorbic acid, ethylenediaminetetraacetic acid (EDTA), glycine, alkyldiethylaminoglycine, polylysine, or salts thereof, dehydroacetic acid, chloramine, 3-iodo-2-propyl-N-butylcarbamate (IPBC), phenoxyethanol, silver-based mold control components such as silver zeolite, zinc pyrithione, thiamine lauryl sulfate, white protein, hydroxyalkyl chitosan or salts thereof, mold control fragrances, etc. Among these mold control components, isopropylmethylphenol (IPMP), carbocrol, thymol, benzalkonium chloride, 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dibromide, monocaprin, monocaprylin, tebuconazole are preferred.
[0034] The virus control components are not particularly limited, but include phenolic virus control components such as isopropylmethylphenol (IPMP), carvacrol, thymol, triclosan, methyl paraben, ethyl paraben, propyl paraben, butyl paraben, 4-chloro-3,5-dimethylphenol, orthophenylphenol, о-cresol, m-cresol, and p-cresol; benzalkonium salts such as benzalkonium chloride, benzalkonium methosulfate, and benzalkonium organic acid salts; benzetonium salts such as benzetonium chloride, benzetonium methosulfate, and benzetonium organic acid salts; cetylpyridinium salts such as cetylpyridinium chloride, cetylpyridinium methosulfate, and cetylpyridinium organic acid salts; didecyldimethylammonium salts such as didecyldimethylammonium chloride and didecyldimethylammonium methosulfate; dilauryl dimethylammonium salts such as dilauryl dimethylammonium chloride and dilauryl dimethylammonium methosulfate; distearyldimethylammonium salts such as distearyldimethylammonium chloride and distearyldimethylammonium methosulfate; and cationic surfactant-based virus control components such as 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dibromide, 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dichloride, and 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dimethosulfate; biguanide-based virus control components; azole-based bactericidal components such as tebuconazole and enilconazole; fruit seed extract-based virus control components such as grapefruit seed extract, kaki seed extract, and grape seed extract; glycerin monofatty acid ester-based virus control components such as monolaurin, monocaprin, and monocaprylin; chlorhexidine salts such as chlorhexidine gluconate and chlorhexidine hydrochloride, and chlorhexidine-based virus control components such as chlorhexidine; octadecyldimethyl(3-triethoxysilylpropyl)ammonium chloride, dodecyldimethyl(3-triethoxysilylpropyl)ammonium chloride,Silicon-based virus control components such as dodecyl diisopropyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, tetradecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, pentadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl dimethyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, hexadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, octadecyl diethyl(3-triethoxysilylpropyl)ammonium chloride, octadecyl di-n-propyl(3-triethoxysilylpropyl)ammonium chloride, carboxylic acid-based virus control components such as benzoic acid, salicylic acid, sorbic acid, ethylenediaminetetraacetic acid(EDTA), glycine, alkyldiethylaminoglycine, polylysine or salts thereof, dehydroacetic acid, chloramine, 3-iodo-2-propyl-N-butylcarbamate(IPBC), phenoxyethanol, silver-based virus control components such as silver zeolite, zinc pyrithione, thiamine lauryl sulfate, white egg protein, hydroxyalkyl chitosan or salts thereof, etc. Among these virus control components, isopropylmethylphenol(IPMP), carbacrol, thymol, benzalkonium chloride, 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dibromide, monocaprin, monocaprylin, tebuconazole are preferred.,
[0035] The allergen control components are not particularly limited, and examples include mite control components, pollen control components, house dust control components, etc. Examples of mite control components include amidoflumet, benzyl benzoate, phenyl salicylate, benzyl salicylate, cyclohexyl salicylate, dibutyl sebacate, dipropyl sebacate, dibutyl adipate, diethyl phthalate, dipropyl phthalate, dibutyl phthalate, p-menthane-3,8-diol (PMD), 3-iodo-2-propynyl butylcarbamate (IPBC), phenothrin, ikaridin, ethyl butylacetylaminopropionate (IR3535), and DEET, etc. Examples of pollen control components and house dust control components include poly 2-(meth)acryloyloxyalkyl phosphorylcholine, 2-(meth)acryloyloxyalkyl phosphorylcholine-(meth)acrylic acid copolymer, 2-(meth)acryloyloxyalkyl phosphorylcholine-(meth)acrylic acid-(meth)acrylic acid alkyl ester copolymer, 2-(meth)acryloyloxyalkyl phosphorylcholine-(meth)acrylic acid alkyl ester copolymer, 2-(meth)acryloyloxyalkyl phosphorylcholine-1-(meth)acryloyloxy 2-hydroxyalkyl 3-trialkylammonium copolymer, N-(meth)acryloyloxyalkyl N,N-dialkylammonium-α-N-(alkyl)carboxybetaine·(meth)acrylic acid alkyl ester copolymer, N-phosphorylcholine-N´-alkylenedioxy-bis-alkylacrylamide-N-isoalkylacrylamide copolymer, poly N,N-di(alkyl)ammonium-α-N-alkylsulfobetaine (meth)acrylic acid, hydroxyalkyl chitosan or its salt, titanium oxide, etc.
[0036] The content of the specific harmful substance control component in the aerosol stock solution is preferably 0.01 - 70 w / v%, more preferably 0.05 - 50 w / v%, and even more preferably 0.1 - 40 w / v%. When the content of the specific harmful substance control component in the aerosol stock solution is within the range of 0.01 - 70 w / v%, when the aerosol is sprayed in a space (especially a narrow space), a sufficient amount of the control component can adhere uniformly to the ceiling and wall surfaces, so that an appropriate control effect against specific harmful substances including harmful microorganisms and / or harmful fine substances can be obtained.
[0037] Examples of the organic solvent, which is one of the main components of the aerosol stock solution, include lower alcohols having 2 - 3 carbon atoms such as ethanol and isopropanol (IPA), hydrocarbon solvents such as normal paraffin and isoparaffin, higher fatty acid esters having 16 - 20 carbon atoms such as isopropyl myristate (IPM), glycol ether solvents having 3 - 10 carbon atoms, and ketone solvents. Among these, since the injection particles do not remain excessively in the air and a sufficient amount of the control component adheres uniformly to the ceiling and wall surfaces, and an excellent control effect against specific harmful substances including harmful microorganisms and / or harmful fine substances can be obtained, lower alcohols having 2 - 3 carbon atoms, hydrocarbon solvents, and higher fatty acid esters having 16 - 20 carbon atoms are preferred, and it is even more preferred to use lower alcohols having 2 - 3 carbon atoms which have a bactericidal control effect, a virus control effect, etc. The above organic solvents can be used alone or in a mixture of multiple types, but from the aspect of simplifying the manufacturing process, it is preferable to use only one type of component as the organic solvent. In addition to the organic solvent, it is also possible to mix an aqueous solvent such as water.
[0038] The specific gravity of the aerosol stock solution at 20°C is set to 0.76 to 0.95, preferably 0.76 to 0.90, and more preferably 0.76 to 0.88. The specific gravity of the aerosol stock solution at 20°C is an important factor related to the sedimentation of the sprayed particles. If the specific gravity of the aerosol stock solution at 20°C is 0.76 to 0.95, in a space (especially a narrow space), a sufficient amount of the control component after spraying can be uniformly attached to the ceiling and wall surfaces. Harmful microorganisms such as mold and bacteria tend to occur and multiply on ceilings and wall surfaces where cleaning is difficult to reach. For harmful fine substances such as house dust, they also tend to adhere to the ceiling and wall surfaces. Therefore, with a sufficient amount of the control component uniformly attached to the ceiling and wall surfaces, in a space (especially a narrow space), an excellent control effect can be exerted on specific harmful substances including harmful microorganisms and / or harmful fine substances.
[0039] In the aerosol stock solution, as long as it does not deviate from the gist of the present invention, in addition to the above components, an insecticidal component, a repellent, a fragrance, a deodorant, a stabilizer, an antistatic agent, an antifoaming agent, and an excipient, etc. can also be appropriately blended. Examples of the insecticidal component include pyrethroid compounds such as transfluthrin, metofluthrin, profuthrin, terallethrin, flametrin, empenthrin, monofluorothrin, dimefluthrin, meperfluthrin, heptafluthrin, phenothrin, cyphenothrin, permethrin, cypermethrin, cyfluthrin, bifenthrin, fenpropathrin, tralomethrin, etofenprox, imiprothrin, allethrin, phthalthrin, prallethrin, resmethrin, and natural pyrethrin; silicon-based compounds such as silafluofen; organophosphorus-based compounds such as dichlorvos and fenitrothion; carbamate-based compounds such as propoxur; neonicotinoid-based compounds such as dinotefuran, imidacloprid, and clothianidin; fipronil, indoxacarb, broflanilide, and methoxadiazone, etc. Examples of the repellent include DEET, ethyl butylacetylaminopropionate (IR3535), p-menthane-3,8-diol, and icariside, etc. Examples of the fragrance include fragrance components such as orange oil, lemon oil, lavender oil, peppermint oil, eucalyptus oil, lemon eucalyptus oil, citronella oil, lime oil, yuzu oil, jasmine oil, hinoki oil, green tea essential oil, perilla oil, menthol, methyl acetate, limonene, α-pinene, linalool, geraniol, phenylethyl alcohol, amyl cinnamic aldehyde, cumin aldehyde, terpineol, and benzyl acetate; and fragrance components containing leaf alcohol or leaf aldehyde called "green fragrance", etc. In addition, when there are optical isomers based on the asymmetric carbon of each component or geometric isomers based on the double bond, each of them or any mixture thereof may be used.
[0040] The quantitative spray aerosol product for controlling specific harmful substances of the present invention can also adopt an aqueous formulation. In this case, the amount of water contained in the aerosol stock solution is not particularly limited, but 5 to 80 v / v% is preferred. A small amount of non-ionic surfactant may be added as a solubilizing aid within a range that does not affect the spray pattern of the spray particles. Examples of non-ionic surfactants include ethers such as polyoxyethylene alkyl ethers, polyoxyethylene alkyl phenyl ethers, polyoxyethylene polyoxypropylene alkyl ethers, and polyoxyethylene alkyl amino ethers; fatty acid esters such as polyethylene glycol fatty acid esters, polyoxyethylene sorbitan fatty acid esters, and polyoxyethylene glycerin fatty acid esters; polyoxyethylene styrenated phenol; and polyalkanolamides of fatty acids, etc.
[0041] <Propellant> The propellant used in the quantitative spray aerosol product for controlling specific harmful substances of the present invention is not particularly limited, but includes liquefied gases such as liquefied petroleum gas (LPG) like propane and butane, normal pentane, isopentane, dimethyl ether (DME), and hydrofluoroolefins such as HFO1234ze, and compressed gases such as nitrogen gas, carbon dioxide gas, nitrous oxide, and compressed air. The above propellants can be used alone or in a mixed state. However, since a sufficient amount of the control component can uniformly adhere to the ceiling and wall surface without excessive remaining of the spray particles in the air, and a better control effect can be achieved against specific harmful substances including harmful microorganisms and / or harmful fine substances in a space (especially a narrow space), those containing LPG or hydrofluoroolefin are preferred. In addition, the propellant is preferably used after adjusting the gauge pressure (20 °C) to 0.10 to 0.70 MPa.
[0042] The quantitative injection aerosol product for controlling specific harmful substances of the present invention preferably has a volume ratio (a / b) of the aerosol stock solution (a) to the propellant (b) in the aerosol container set to 1 / 99 to 70 / 30 by volume. From the viewpoint of the adhesion of the chemical agent to the ceiling and wall surfaces, 10 / 90 to 60 / 40 is more preferable, and 20 / 80 to 55 / 45 is even more preferable. If the volume ratio (a / b) is within the above range, when the aerosol is sprayed in a space (especially a narrow space), the sprayed particles adhere to the ceiling and wall surfaces without excessively remaining in the air, so that a sufficient amount of the specific harmful substance control component can be uniformly adhered to the ceiling and wall surfaces. Thereby, while it is possible to obtain an appropriate control effect against specific harmful substances including harmful microorganisms and / or harmful fine substances, the irritation to humans can be reduced.
[0043] The quantitative injection aerosol product for controlling specific harmful substances of the present invention has an internal pressure of the aerosol container set to 0.60 MPa or less at 25°C, preferably 0.10 to 0.60 MPa, more preferably 0.20 to 0.60 MPa, and even more preferably 0.30 to 0.50 MPa. If the internal pressure is 0.60 MPa or less at 25°C, when the aerosol is sprayed in a space (especially a narrow space), a sufficient amount of the specific harmful substance control component can be adhered to the ceiling and wall surfaces. If the internal pressure exceeds 0.60 MPa, the injection force is too strong, so when reaching the wall surface, some of the injected particles may bounce back, which may result in insufficient diffusion uniformity of adhesion to the ceiling and wall surfaces. The internal pressure of such an aerosol product can be appropriately adjusted according to the type of the propellant and the vapor pressure of the propellant, etc. The aerosol container only needs to be a pressure-resistant container that can withstand an internal pressure of 0.60 MPa, and examples of its material include metals such as aluminum and tinplate, synthetic resins such as polyethylene terephthalate, and pressure-resistant glass. Further, when the material of the aerosol container is a synthetic resin, it may be semi-transparent or transparent. In this embodiment, the internal pressure of the aerosol container of the quantitative injection aerosol product for controlling specific harmful substances was measured by the following procedure. (1) Immerse the quantitative injection aerosol product for controlling specific harmful substances in a constant temperature water bath at 25 ± 0.5°C for 30 minutes. (2) Next, place the aerosol product for controlling specific harmful substances in an upright position, airtightly insert the stem of the aerosol container into the inlet of the pressure gauge, and read the measured pressure to the second decimal place. (3) Conduct the above measurement once, and use the read value as the internal pressure value without rounding the measurement value.
[0044] The aerosol product for quantitatively spraying and controlling specific harmful substances of the present invention preferably has an injection force of 2.0 to 40.0 gf, more preferably 2.0 to 35.0 gf, still more preferably 3.0 to 30.0 gf, and particularly preferably 5.0 to 20.0 gf at a position 15 cm away from the injection port. If the injection force is within the above range, when the aerosol is injected in a space (especially a narrow space), a sufficient amount of the specific harmful substance control component will uniformly adhere to the ceiling and wall surface, and a practically sufficient control effect against specific harmful substances containing harmful microorganisms and / or harmful fine substances can be obtained. If the injection force is less than 2.0 gf, there is a risk that the injection force is insufficient and the adhesion amount of the specific harmful substance control component to the ceiling and wall surface will be insufficient. On the other hand, if the injection force exceeds 40.0 gf, since the injection momentum is too strong, when reaching the wall surface, some of the injected particles may bounce back, resulting in insufficient diffusion uniformity on the ceiling and wall surface. Such an injection force can be appropriately adjusted according to the composition of the aerosol stock solution, the type of propellant, the internal pressure of the aerosol product, and the dimensions and shape of the injection port, etc. In this embodiment, the injection force of the aerosol product for quantitatively spraying and controlling specific harmful substances was measured with a digital force gauge (FGC-0.5, manufactured by Nidec-Shimpo Corporation).
[0045] The aerosol product for quantitatively spraying and controlling specific harmful substances of the present invention is provided with a quantitative injection valve for injecting a fixed amount in a space. The injection capacity per stroke of the quantitative injection valve is set to 0.08 to 3.0 mL, preferably 0.08 to 2.0 mL, more preferably 0.1 to 1.0 mL, and still more preferably 0.2 to 0.9 mL. If the injection capacity per stroke is within the above range, a sufficient amount of the specific harmful substance control component can be uniformly adhered to the ceiling and wall surface, and an excellent control effect against specific harmful substances containing harmful microorganisms and / or harmful fine substances can be obtained.
[0046] The injection member (injection button) is a member attached to the aerosol container via a metering injection valve. The injection member is formed with an injection port through which the aerosol stock solution and the propellant taken in from the aerosol container are injected via the stem hole of the metering injection valve. The injection diameter of this injection member is preferably 0.2 to 1.0 mm. If the injection diameter is within the above range, the injection force can be appropriately adjusted within a range. The shape (cross-sectional shape) of the injection port is not particularly limited, and examples include polygons such as circles and squares, and ellipses, with a circle being preferred. Here, the injection diameter means the major axis of the ellipse when the shape of the injection port is an ellipse, and means the diameter of the circumscribed circle of the polygon when the shape of the injection port is a polygon.
[0047] In the metering injection aerosol product for controlling specific harmful substances of the present invention, the release amount of the specific harmful substance control component into the air is 0.01 to 250 mg / m 3 It is preferably set to, and more preferably set to 0.025 to 125 mg / m 3 If the release amount of the specific harmful substance control component into the air is within the above range, the control effect on specific harmful substances including harmful microorganisms and / or harmful fine substances can be appropriately exerted in the space, and it is possible to surely control specific harmful substances including harmful microorganisms and / or harmful fine substances. In the metering injection aerosol product for controlling specific harmful substances of the present invention, the release amount of the specific harmful substance control component into the air by one injection may be set to 0.01 to 250 mg / m 3 The injection amount of the specific harmful substance control component may be set so that, or the injection amount of the specific harmful substance control component per injection may be set so that the release amount of the specific harmful substance control component into the air is 0.01 to 250 mg / m by two or more injections. 3 From the viewpoint that a sufficient amount of the specific harmful substance control component can be uniformly adhered to the ceiling and wall surface and an excellent control effect on specific harmful substances including harmful microorganisms and / or harmful fine substances can be obtained, the release amount of the specific harmful substance control component into the air by two or more injections is 0.01 to 250 mg / m 3 It is preferably set so as to be. The release amount of such a specific harmful substance control component can be implemented by appropriately adjusting the composition of the aerosol stock solution, the volume ratio (a / b) of the aerosol stock solution (a) to the propellant (b), the injection volume per injection of the metering injection valve, etc. within the above-mentioned ranges respectively.
[0048] The metering injection aerosol product for controlling specific harmful substances according to the present invention can usually create an atmosphere capable of controlling specific harmful substances including harmful microorganisms and / or harmful fine substances in a space for approximately 7 to 14 days with a single application. By adjusting the composition of the aerosol stock solution, the type of propellant, the specific gravity of the aerosol stock solution at 20°C, the internal pressure of the aerosol container, etc., it is also possible to make the period during which specific harmful substances including harmful microorganisms and / or harmful fine substances can be controlled less than 7 days or more than 14 days.
[0049] <Specific harmful substances> The specific harmful substances to be controlled in the present invention include, as harmful microorganisms, organisms or organism-derived substances such as bacteria, molds, viruses, mites, pollen, etc., and as harmful fine substances, non-biological or non-biological-derived substances such as house dust, PM2.5, yellow sand, etc. The harmful microorganisms and harmful fine substances include allergens. The metering injection aerosol product for controlling specific harmful substances of the present invention can more effectively control bacteria and molds that tend to occur and multiply more frequently on ceilings and wall surfaces that are difficult to clean thoroughly among these specific harmful substances.
[0050] 〔Method for controlling specific harmful substances〕 The method for controlling specific harmful substances of the present invention is to use the above-mentioned metering injection aerosol product for controlling specific harmful substances indoors in a space (preferably with a volume of 2.0 to 18.8 m 3It is carried out by spraying toward a narrow space. When the specific harmful substance control method of the present invention is implemented, in a space (especially a narrow space), a sufficient amount of the control component uniformly adheres to the ceiling and walls, and an excellent control effect is exhibited against specific harmful substances including harmful microorganisms and / or harmful fine substances. Here, the spraying amount of the aerosol product for quantitative spraying for specific harmful substance control is adjusted so that the release amount of the specific harmful substance control component into the air is 0.01 to 250 mg / m 3 and preferably adjusted to be 0.025 to 125 mg / m 3 and more preferably adjusted to be. If the release amount of the specific harmful substance control component is within the above range, an even more excellent control effect can be exhibited against specific harmful substances including harmful microorganisms and / or harmful fine substances.
Example
[0051] To verify the effects of the aerosol product for quantitative spraying for specific harmful substance control of the present invention, aerosol products for quantitative spraying for specific harmful substance control (Examples 1 to 16) having the characteristic configuration of the present invention were prepared, and (1) tests were conducted to evaluate the adhesion of the specific harmful substance control component to the ceiling and wall surfaces and the diffusion uniformity. Also, for comparison, aerosol products for quantitative spraying (Comparative Examples 1 to 3) not having the characteristic configuration of the present invention were prepared and the same tests were conducted. Furthermore, using the aerosol products for quantitative spraying for specific harmful substance control of Examples 1, 4, 8, 14, and 15, (2) tests were conducted to evaluate the use in a bathroom.
[0052] 〔Example 1〕 Isopropyl methylphenol (IPMP) (15 w / v%), a specific harmful substance control ingredient, was dissolved in ethanol, an organic solvent, to prepare an aerosol stock solution. The specific gravity of this aerosol stock solution at 20 °C was 0.82. 12 mL of the aerosol stock solution (a) and 18 mL of liquefied petroleum gas (b) as a propellant were pressure-filled into an aerosol container (pressure-resistant container) with a metering valve having an injection volume of 0.4 mL so that the volume ratio (a / b) was 40 / 60, to obtain a metering injection aerosol product for controlling specific harmful substances of Example 1. The internal pressure of this metering injection aerosol product for controlling specific harmful substances at 25 °C was 0.45 MPa, and the injection amount of the specific harmful substance control ingredient per injection was 24 mg. The injection force at an injection distance of 15 cm was 6.5 gf.
[0053] [Comparative Example 1] Isopropyl methylphenol (IPMP) (15 w / v%), a control ingredient, was dissolved in ethanol, an organic solvent, to prepare 30 mL of an aerosol stock solution. The specific gravity of this aerosol stock solution at 20 °C was 0.82. This aerosol stock solution was placed in a container equipped with a pump-type spray head having an injection volume of 0.2 mL per injection to obtain a pump-type spray product of Comparative Example 1. The injection amount of the control ingredient per injection of this pump-type spray product was 30 mg. The injection force at an injection distance of 15 cm was 2.0 gf.
[0054] [Examples 2 to 16, Comparative Examples 2 to 3] Using the procedure according to Example 1, various aerosol products shown in Table 1 were prepared. In the metering injection aerosol product for controlling specific harmful substances of Example 8, an aerosol container with a metering valve having an injection volume of 0.2 mL per injection was used. In the metering injection aerosol products for controlling specific harmful substances of Examples 1, 3, 4, 6, 9, 11 to 13, and 16, and the metering injection aerosol products of Comparative Examples 2 to 3, an aerosol container with a metering valve having an injection volume of 0.4 mL per injection was used. In the metering injection aerosol products for controlling specific harmful substances of Examples 2, 5, 7, 10, 14, and 15, an aerosol container with a metering valve having an injection volume of 1.0 mL per injection was used.
[0055]
Table 1
[0056] In Table 1 above, IPMP represents isopropyl methylphenol, Compound A represents 1,4-bis[3,3´-(1-decylpyridinium)methyloxy]butane dibromide, IPBC represents 3-iodo-2-propyl-N-butylcarbamate, IPA represents isopropanol, IPM represents isopropyl myristate, LPG represents liquefied petroleum gas, and HFO1234ze represents trans-1,3,3,3-tetrafluoropropene. The specific gravity (20 °C) of each component is as follows: IPMP: 0.97, thymol: 0.97, 10% aqueous solution of benzalkonium chloride: 0.98, tebuconazole: 1.25, monocaprylin: 0.99, monocaprylin: 0.99, IPBC: 1.61, ethanol: 0.79, IPA: 0.79, neothiazole: 0.76, IPM: 0.86, hexyl laurate: 0.86.
[0057] For Examples 1 to 16 and Comparative Examples 1 to 3, (1) tests were conducted to evaluate the ceiling and wall adhesion and diffusion uniformity of specific pest control components. The test results are shown in Table 2.
[0058] (1) Ceiling and wall adhesion and diffusion uniformity of specific pest control components Closed volume of 4.2 m 3Six places on the floor, two places on the ceiling, and four places on the wall surface of a small room (width 1.8 m, depth 1.3 m, height 1.8 m) were installed with glass plates of 20 cm × 20 cm. Standing at one of the four corners of the small room, the test aerosol product was sprayed twice obliquely upward slightly towards the center of the space from a height of 1 m above the floor. After 20 minutes had elapsed since the spraying, the glass plates installed on the floor, the glass plates installed on the ceiling, and the glass plates installed on the wall surface were taken out respectively, and the attached specific harmful substance control components were washed out with acetone and analyzed by gas chromatography. Based on the obtained analysis values, the ratio of the amount of control components attached to the ceiling and wall surfaces to the amount of control components attached to the floor by 20 minutes after the spraying treatment was determined, and the ceiling-wall adhesion was evaluated. Regarding the evaluation results, they were shown in three levels of A, B, and C in order from those with good ceiling-wall adhesion. Also, the diffusion uniformity was evaluated from the amount of control components attached to the ceiling and the wall respectively. Regarding the evaluation results, they were shown in three levels of A, B, and C in order from those with good diffusion uniformity.
[0059]
Table 2
[0060] As a result of the test, in the quantitative spraying aerosol products for controlling specific harmful substances of Examples 1 to 16, the ceiling-wall adhesion of the specific harmful substance control components was good. Among them, Examples 1, 3 to 10, 12 to 15 with a specific gravity of 0.76 to 0.88 at 20°C were excellent in that in addition to the ceiling-wall adhesion of the specific harmful substance control components, the diffusion uniformity was also good. From this, according to the quantitative spraying aerosol product for controlling specific harmful substances of the present invention, the control effect on specific harmful substances including harmful microorganisms and / or harmful fine substances in the space was confirmed.
[0061] On the other hand, in the pump-type spray product of Comparative Example 1 and the metered spray aerosol product of Comparative Example 3 in which the specific gravity of the aerosol stock solution exceeds 0.95 at 20°C, the adhesion of the control component to the ceiling and wall surfaces was low. From this, it is considered that in the pump-type spray product of Comparative Example 1 and the metered spray aerosol product of Comparative Example 3, the control effect on specific harmful substances including harmful microorganisms and / or harmful fine substances in the space is not sufficient.
[0062] The metered spray aerosol product of Comparative Example 2 in which the internal pressure exceeds 0.60 MPa at 25°C was insufficient in terms of the diffusion uniformity on the ceiling and wall surfaces.
[0063] (2) Use in the bathroom [Test Example 1] In a bathroom with a volume of 4 m 3 (area 2 m 2 , height 2 m), the metered spray aerosol product for controlling specific harmful substances of Example 1 was spray-treated 4 times from the entrance. When checked 14 days later, no pink slime (bacteria) or black mold (mold) was found in the bathroom. That is, it was possible to control pink slime (bacteria) and black mold (mold) for 14 days or more. Also, no irritation such as choking was felt during the spraying operation in the bathroom.
[0064] [Test Example 2] In a bathroom with a volume of 4 m 3 (area 2 m 2 , height 2 m), the metered spray aerosol product for controlling specific harmful substances of Example 4 was spray-treated 2 times from the entrance. When checked 14 days later, no pink slime (bacteria) or black mold (mold) was found in the bathroom. That is, it was possible to control pink slime (bacteria) and black mold (mold) for 14 days or more. Also, no irritation such as choking was felt during the spraying operation in the bathroom.
[0065] [Test Example 3] In a bathroom with a volume of 4 m 3 (area 2 m 2The fixed-dose aerosol product for controlling specific harmful substances of Example 8 was sprayed twice from the entrance of a bathroom (2 m in height, 2 m). When checked after 7 days, no pink slime (bacteria) or black mold (mold) had developed in the bathroom. In other words, pink slime (bacteria) and black mold (mold) could be controlled for more than 7 days. Furthermore, no irritation such as choking was felt while spraying in the bathroom.
[0066] [Test Example 4] Volume 4m 3 (Area 2m 2 The fixed-dose aerosol product for controlling specific harmful substances of Example 14 was sprayed four times from the entrance of a bathroom (2 m in height, 2 m). When checked after 7 days, no pink slime (bacteria) or black mold (mold) had developed in the bathroom. In other words, pink slime (bacteria) and black mold (mold) could be controlled for more than 7 days. Furthermore, no irritation such as choking was felt while spraying in the bathroom.
[0067] [Test Example 5] Volume 4m 3 (Area 2m 2 The fixed-dose aerosol product for controlling specific harmful substances of Example 15 was sprayed four times from the entrance of a bathroom (2 m in height, 2 m). When checked after 14 days, no pink slime (bacteria) or black mold (mold) had developed in the bathroom. In other words, pink slime (bacteria) and black mold (mold) could be controlled for more than 14 days. Furthermore, no irritation such as choking was felt while spraying in the bathroom. [Industrial Applicability]
[0068] The fixed-dose aerosol product for controlling specific harmful substances and the method for controlling specific harmful substances of the present invention can be used for the purpose of controlling specific harmful substances including harmful microorganisms and / or harmful fine substances in spaces, particularly small spaces such as bathrooms and toilets.
Claims
1. A metered spray aerosol product for controlling specific harmful substances, comprising an aerosol stock solution containing a specific harmful substance control component and an organic solvent, and a propellant, filled into an aerosol container equipped with a metered spray valve, wherein the specific harmful substance control component includes a cationic surfactant-based bacteria control component and / or an azole-based bacteria control component, the specific harmful substance is bacteria, and the spray volume per actuation of the metered spray valve is set to 0.2 to 0.9 mL. A metered spray aerosol product for controlling specific harmful substances.
2. A metered spray aerosol product for controlling specific harmful substances, comprising an aerosol stock solution containing a specific harmful substance control component and an organic solvent, and a propellant, filled into an aerosol container equipped with a metered spray valve, wherein the specific harmful substance control component includes a cationic surfactant-based mold control component and / or an azole-based mold control component, the specific harmful substance is mold, and the spray volume per actuation of the metered spray valve is set to 0.2 to 0.9 mL. A metered spray aerosol product for controlling specific harmful substances.
3. A metered spray aerosol product for controlling specific harmful substances, comprising an aerosol stock solution containing a specific harmful substance control component and an organic solvent, and a propellant, filled into an aerosol container equipped with a metered spray valve, wherein the specific harmful substance control component includes at least one selected from the group consisting of a cationic surfactant-based virus control component, an azole-based virus control component, and a phenolic virus control component, and the specific harmful substance is a virus. A metered spray aerosol product for controlling specific harmful substances.
4. The metered spray aerosol product for controlling specific harmful substances according to claim 3, wherein the spray volume per actuation of the metered spray valve is set to 0.08 to 3.0 mL.
5. The release amount of the specific harmful substance control component is 0.01 to 250 mg / m 3 The quantitative spray aerosol product for controlling specific harmful substances according to any one of claims 1 to 4, which is set to
6. A method for controlling specific harmful substances by spray treatment using the metered spray aerosol product for controlling specific harmful substances according to any one of claims 1 to 5, wherein the metered spray aerosol product for controlling specific harmful substances is sprayed indoors towards the space. A method for controlling specific harmful substances.
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