CN113647419A - Plant extraction type disinfectant for eliminating peculiar smell - Google Patents
Plant extraction type disinfectant for eliminating peculiar smell Download PDFInfo
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- CN113647419A CN113647419A CN202110994394.7A CN202110994394A CN113647419A CN 113647419 A CN113647419 A CN 113647419A CN 202110994394 A CN202110994394 A CN 202110994394A CN 113647419 A CN113647419 A CN 113647419A
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- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61L—METHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
- A61L9/00—Disinfection, sterilisation or deodorisation of air
- A61L9/01—Deodorant compositions
- A61L9/013—Deodorant compositions containing animal or plant extracts, or vegetable material
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
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- A01N31/00—Biocides, pest repellants or attractants, or plant growth regulators containing organic oxygen or sulfur compounds
- A01N31/08—Oxygen or sulfur directly attached to an aromatic ring system
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N65/00—Biocides, pest repellants or attractants, or plant growth regulators containing material from algae, lichens, bryophyta, multi-cellular fungi or plants, or extracts thereof
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N65/00—Biocides, pest repellants or attractants, or plant growth regulators containing material from algae, lichens, bryophyta, multi-cellular fungi or plants, or extracts thereof
- A01N65/08—Magnoliopsida [dicotyledons]
- A01N65/22—Lamiaceae or Labiatae [Mint family], e.g. thyme, rosemary, skullcap, selfheal, lavender, perilla, pennyroyal, peppermint or spearmint
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N65/00—Biocides, pest repellants or attractants, or plant growth regulators containing material from algae, lichens, bryophyta, multi-cellular fungi or plants, or extracts thereof
- A01N65/08—Magnoliopsida [dicotyledons]
- A01N65/28—Myrtaceae [Myrtle family], e.g. teatree or clove
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N65/00—Biocides, pest repellants or attractants, or plant growth regulators containing material from algae, lichens, bryophyta, multi-cellular fungi or plants, or extracts thereof
- A01N65/40—Liliopsida [monocotyledons]
- A01N65/42—Aloeaceae [Aloe family] or Liliaceae [Lily family], e.g. aloe, veratrum, onion, garlic or chives
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61L—METHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
- A61L2209/00—Aspects relating to disinfection, sterilisation or deodorisation of air
- A61L2209/20—Method-related aspects
- A61L2209/21—Use of chemical compounds for treating air or the like
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Abstract
The invention discloses a plant extraction type disinfectant for eliminating peculiar smell, and particularly relates to the technical field of disinfectant manufacturing, wherein the used main materials comprise the following raw materials in parts by weight: 1.5-3 parts of aloe tincture, 1-2 parts of tea tree essential oil, 1.5-3 parts of wormwood essential oil, 2-4 parts of eugenol, 20-35 parts of lavender extract, 25-30 parts of radix sophorae flavescentis extract, 4-5.5 parts of sandalwood essential oil, 8-12 parts of mint leaves and 60-75 parts of purified water. According to the invention, through the mutual matching of the tea tree essential oil, the wormwood essential oil and the sophora flavescens extract, most of toxic fungi on the surface of an article can be comprehensively disinfected, the aloe tincture can be used for effectively inhibiting and eliminating the development and reproduction of pathogens, the disinfection effect is fundamentally achieved, the oxidation resistance of a human body can be improved, and meanwhile, the eugenol, the lavender extract, the sandalwood essential oil and the mint leaves are matched, so that the effects of purifying and deodorizing formaldehyde and toxic gases in air can be achieved, and the use is safer and wider.
Description
Technical Field
The invention relates to the technical field of disinfectant manufacturing, in particular to a plant extraction type disinfectant for eliminating peculiar smell.
Background
The plant extract is a substance extracted or processed from plants by adopting a proper solvent or method, can be used in the pharmaceutical industry, the food industry, the daily chemical industry and other industries, has conceptual intersection between the plant extract and the Chinese herbal medicine extract, and the raw materials of the plant extract in China mainly come from Chinese herbal medicines, so the domestic plant extract can also be called as a Chinese herbal medicine extract to a certain extent and is generally listed in the category of Chinese medicine products in export trade statistics in China;
at present, with the improvement of safety consciousness of people, for example, some markets, elevators and office areas can be disinfected comprehensively once a week, so that toxic fungi on air or objects can be removed, and the human body is prevented from being infected by fungi to cause diseases.
However, most disinfectant solutions in the market at present mainly contain many main chemical components, generally include peracetic acid, chlorine dioxide, dibromohydantoin and the like, and the disinfection effect is achieved mainly through a large amount of chemical substances in the disinfectant solutions.
Disclosure of Invention
In order to overcome the above defects in the prior art, embodiments of the present invention provide a plant-extracted disinfectant for removing odor, which can comprehensively disinfect most of bacteria and fungi on the surface of an article by the cooperation of tea tree essential oil, wormwood essential oil and sophora flavescens extract, and can achieve the effects of purifying and deodorizing formaldehyde and toxic gases in the air by the cooperation of eugenol, lavender extract, sandalwood essential oil and mint leaves, so as to solve the problems in the background art.
In order to achieve the purpose, the invention provides the following technical scheme: a plant extraction type disinfectant for eliminating peculiar smell is disclosed, wherein the used main materials comprise the following raw materials in parts by weight: 1.5-3 parts of aloe tincture, 1-2 parts of tea tree essential oil, 1.5-3 parts of wormwood essential oil, 2-4 parts of eugenol, 20-35 parts of lavender extract, 25-30 parts of radix sophorae flavescentis extract, 4-5.5 parts of sandalwood essential oil, 8-12 parts of mint leaves and 60-75 parts of purified water.
In a preferred embodiment, the main material used in the method comprises the following raw materials in parts by weight: 2-3 parts of aloe tincture, 1.5-2 parts of tea tree essential oil, 2-3 parts of wormwood essential oil, 2.5-4 parts of eugenol, 25-35 parts of lavender extracting solution, 26-30 parts of sophora flavescens extract, 4.5-5.5 parts of sandalwood essential oil, 10-12 parts of mint leaves and 65-75 parts of purified water.
In a preferred embodiment, the main material used in the method comprises the following raw materials in parts by weight: 3 parts of aloe tincture, 2 parts of tea tree essential oil, 3 parts of wormwood essential oil, 3 parts of eugenol, 30 parts of lavender extract, 30 parts of sophora flavescens extract, 5 parts of sandalwood essential oil, 10 parts of mint leaf and 70 parts of purified water.
A plant extraction type disinfectant for eliminating peculiar smell comprises the following specific processing steps:
step one, extracting essential oil:
a: selecting the raw materials of the sandalwood, the tea leaves and the wormwood leaves, cleaning the sandalwood, the tea leaves and the wormwood leaves, and then drying;
b: taking out the dried raw materials, placing the raw materials in a container filled with clean water for soaking for 20 minutes, placing the soaked raw materials in an essential oil distillation container for distillation for 30 minutes, and controlling the distillation temperature to be 30-35 ℃ to obtain the mixture of the essential oil and the hydrolat of the raw materials;
c: placing the obtained raw material essential oil and raw material hydrolat in a flow divider, respectively extracting the essential oil and the hydrolat, and respectively placing the extracted raw material essential oil in different containers for later use;
step two, adding raw materials: pouring purified water into a stirrer, simultaneously adding the sandalwood essential oil, the tea tree essential oil and the wormwood essential oil obtained in the step one into the stirrer in sequence, simultaneously respectively adding the raw materials of aloe tincture, eugenol, lavender extracting solution, the sophora flavescens extract and mint leaves into the stirrer, and simultaneously adding a proper amount of auxiliary additives;
step three: stirring: switching on a power supply of the stirrer to enable the stirrer to run at the speed of 350-500 rpm, controlling the temperature of the stirrer to be 45-65 ℃ and stirring for 25-30min to obtain a mixture A;
step four: and (3) filtering: pouring the mixture B obtained in the third step into a filter for filtering, wherein the filtering time is 30 minutes, putting the filtered liquid into a container for storage, and storing the residues in another container to obtain liquid B;
step five: and (3) testing: pouring the liquid B obtained in the step four into a container which is disinfected in advance, and carrying out PH detection on the liquid B;
step six: packaging, namely filling the liquid B detected in the step five into the same group of containers, and dividing the containers to contain solutions with different high and low concentrations;
step seven: labeling and packaging, namely sequentially labeling the containers in the step six, placing the container filled with the liquid B in a packaging box for packaging, and moving the packaged packaging box to the interior of a warehouse for storage.
In a preferred embodiment, the filtering in the fourth step is used for filtering the residue after the stirring of the sophora flavescens extract and the mint leaves, so that the internal main components of the sophora flavescens extract and the mint leaves are in sufficient contact with the raw materials, thereby obtaining the product.
In a preferred embodiment, the drying method adopted in the first step is that the raw material is placed in a vacuum and low-temperature environment for rapid cooling drying, and the drying operation is finished by observing the frosting on the surface of the raw material, so that the raw material is cooled and dried in the low-temperature environment, and the odor and the effective components in the raw material are prevented from being emitted.
In a preferred embodiment, one or more of the extracts of marigold, selfheal, calyx seu fructus physalis, uniflower swisscentaury root, rhizoma paridis, cyrtomium rhizome, radix bupleuri, liquorice and muskroot-like semiaquilegia root are adopted as the auxiliary additive in the second step, so that the mosquito repellent effect of the disinfectant is enhanced through the auxiliary additive.
In a preferred embodiment, a part of the residue filtered in the fourth step is poured into the filter again for secondary filtration, and the liquid after secondary filtration is poured into the liquid B.
The invention has the technical effects and advantages that:
according to the invention, most bacteria and fungi on the surface of an article can be comprehensively disinfected through the mutual matching of the tea tree essential oil, the wormwood essential oil and the sophora flavescens extract, the danger of the tea tree essential oil, the wormwood essential oil and the sophora flavescens extract extracted from the interior of a plant to a human body is zero, the use is safer, the aloe tincture can be used for effectively inhibiting and eliminating the development and reproduction of pathogens, the disinfection effect is fundamentally achieved, the aloe tincture can improve the anti-oxidation effect of the human body, the whitening effect can be achieved once the disinfection solution is not sensitive to the skin of the human body, and the effects of purifying and deodorizing formaldehyde and toxic gas in air can be achieved by matching with eugenol, lavender extract, sandalwood essential oil and mint leaves, so that the pungent smell can not be generated, the indoor air can be kept fragrant for a long time, and the refreshing effect can be achieved; in addition, the original drying modes such as drying and the like are improved, the drying mode of rapid cooling in a low-temperature environment is utilized, the odor and the effective components of the raw materials are effectively kept, and the disinfection solution with different concentrations can be stored in the same group of containers by matching with the storage containers which can be classified, so that the disinfection solution storage device is suitable for different occasions.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example 1:
the invention provides a plant-extracted disinfectant for eliminating peculiar smell, wherein the used main materials comprise the following raw materials in parts by weight: 1.5-3 parts of aloe tincture, 1-2 parts of tea tree essential oil, 1.5-3 parts of wormwood essential oil, 2-4 parts of eugenol, 20-35 parts of lavender extract, 25-30 parts of radix sophorae flavescentis extract, 4-5.5 parts of sandalwood essential oil, 8-12 parts of mint leaves and 60-75 parts of purified water;
in the specific embodiment, the used main materials comprise the following raw materials in parts by weight: 1.5 parts of aloe tincture, 1 part of tea tree essential oil, 1.5 parts of wormwood essential oil, 2 parts of eugenol, 20 parts of lavender extract, 25 parts of sophora flavescens extract, 4 parts of sandalwood essential oil, 8 parts of mint leaves and 60 parts of purified water;
the specific processing steps are as follows:
step one, extracting essential oil:
a: selecting the raw materials of the sandalwood, the tea leaves and the wormwood leaves, cleaning the sandalwood, the tea leaves and the wormwood leaves, and then drying, wherein the drying mode adopted in the step one is that the raw materials are placed in a vacuum and low-temperature environment for rapid cooling and drying, and the drying operation can be finished by observing frosting on the surface of the raw materials;
b: taking out the dried raw materials, placing the raw materials in a container filled with clean water for soaking for 20 minutes, placing the soaked raw materials in an essential oil distillation container for distillation for 30 minutes, and controlling the distillation temperature to be 30-35 ℃ to obtain the mixture of the essential oil and the hydrolat of the raw materials;
c: placing the obtained raw material essential oil and raw material hydrolat in a flow divider, respectively extracting the essential oil and the hydrolat, and respectively placing the extracted raw material essential oil in different containers for later use;
step two, adding raw materials: pouring purified water into a stirrer, simultaneously adding sandalwood essential oil, tea tree essential oil and wormwood essential oil obtained in the first step into the stirrer, simultaneously adding aloe tincture, eugenol, lavender extract, radix sophorae flavescentis extract and mint leaves which are raw materials into the stirrer respectively, and simultaneously adding a proper amount of auxiliary additives, wherein one or more of calendula, selfheal, calyx seu fructus physalis, uniflower swisscentaury root, rhizoma paridis, cyrtomium fortunei, radix bupleuri, liquorice and muskroot-like semiaquilegia root extract are adopted as the auxiliary additives in the second step;
step three: stirring: switching on a power supply of the stirrer to enable the stirrer to run at the speed of 350-500 rpm, controlling the temperature of the stirrer to be 45-65 ℃ and stirring for 25-30min to obtain a mixture A;
step four: and (3) filtering: pouring the mixture B obtained in the third step into a filter for filtering, wherein the filtering time is 30 minutes, putting the filtered liquid into a container for storage, and storing the residues in another container to obtain liquid B;
step five: and (3) testing: pouring the liquid B obtained in the step four into a container which is disinfected in advance, and carrying out PH detection on the liquid B;
step six: packaging, namely filling the liquid B detected in the step five into the same group of containers, and dividing the containers to contain solutions with different high and low concentrations;
example 2:
the invention provides a plant-extracted disinfectant for eliminating peculiar smell, wherein the used main materials comprise the following raw materials in parts by weight: 1.5-3 parts of aloe tincture, 1-2 parts of tea tree essential oil, 1.5-3 parts of wormwood essential oil, 2-4 parts of eugenol, 20-35 parts of lavender extract, 25-30 parts of radix sophorae flavescentis extract, 4-5.5 parts of sandalwood essential oil, 8-12 parts of mint leaves and 60-75 parts of purified water;
in the specific embodiment, the used main materials comprise the following raw materials in parts by weight: 2 parts of aloe tincture, 1.5 parts of tea tree essential oil, 1.5 parts of wormwood essential oil, 2.5 parts of eugenol, 25 parts of lavender extracting solution, 28 parts of sophora flavescens extract, 4.5 parts of sandalwood essential oil, 10 parts of mint leaves and 65 parts of purified water;
the specific processing steps are as follows:
step one, extracting essential oil:
a: selecting the raw materials of the sandalwood, the tea leaves and the wormwood leaves, cleaning the sandalwood, the tea leaves and the wormwood leaves, and then drying, wherein the drying mode adopted in the step one is that the raw materials are placed in a vacuum and low-temperature environment for rapid cooling and drying, and the drying operation can be finished by observing frosting on the surface of the raw materials;
b: taking out the dried raw materials, placing the raw materials in a container filled with clean water for soaking for 20 minutes, placing the soaked raw materials in an essential oil distillation container for distillation for 30 minutes, and controlling the distillation temperature to be 30-35 ℃ to obtain the mixture of the essential oil and the hydrolat of the raw materials;
c: placing the obtained raw material essential oil and raw material hydrolat in a flow divider, respectively extracting the essential oil and the hydrolat, and respectively placing the extracted raw material essential oil in different containers for later use;
step two, adding raw materials: pouring purified water into a stirrer, simultaneously adding sandalwood essential oil, tea tree essential oil and wormwood essential oil obtained in the first step into the stirrer, simultaneously adding aloe tincture, eugenol, lavender extract, radix sophorae flavescentis extract and mint leaves which are raw materials into the stirrer respectively, and simultaneously adding a proper amount of auxiliary additives, wherein one or more of calendula, selfheal, calyx seu fructus physalis, uniflower swisscentaury root, rhizoma paridis, cyrtomium fortunei, radix bupleuri, liquorice and muskroot-like semiaquilegia root extract are adopted as the auxiliary additives in the second step;
step three: stirring: switching on a power supply of the stirrer to enable the stirrer to run at the speed of 350-500 rpm, controlling the temperature of the stirrer to be 45-65 ℃ and stirring for 25-30min to obtain a mixture A;
step four: and (3) filtering: pouring the mixture B obtained in the third step into a filter for filtering, wherein the filtering time is 30 minutes, putting the filtered liquid into a container for storage, and storing the residues in another container to obtain liquid B;
step five: and (3) testing: pouring the liquid B obtained in the step four into a container which is disinfected in advance, and carrying out PH detection on the liquid B;
step six: packaging, namely filling the liquid B detected in the step five into the same group of containers, and dividing the containers to contain solutions with different high and low concentrations;
example 3:
the invention provides a plant-extracted disinfectant for eliminating peculiar smell, wherein the used main materials comprise the following raw materials in parts by weight: 1.5-3 parts of aloe tincture, 1-2 parts of tea tree essential oil, 1.5-3 parts of wormwood essential oil, 2-4 parts of eugenol, 20-35 parts of lavender extract, 25-30 parts of radix sophorae flavescentis extract, 4-5.5 parts of sandalwood essential oil, 8-12 parts of mint leaves and 60-75 parts of purified water;
in the specific embodiment, the used main materials comprise the following raw materials in parts by weight: 2.5 parts of aloe tincture, 2 parts of tea tree essential oil, 2 parts of wormwood essential oil, 3 parts of eugenol, 30 parts of lavender extract, 28 parts of sophora flavescens extract, 5 parts of sandalwood essential oil, 11 parts of mint leaf and 70 parts of purified water;
the specific processing steps are as follows:
step one, extracting essential oil:
a: selecting the raw materials of the sandalwood, the tea leaves and the wormwood leaves, cleaning the sandalwood, the tea leaves and the wormwood leaves, and then drying, wherein the drying mode adopted in the step one is that the raw materials are placed in a vacuum and low-temperature environment for rapid cooling and drying, and the drying operation can be finished by observing frosting on the surface of the raw materials;
b: taking out the dried raw materials, placing the raw materials in a container filled with clean water for soaking for 20 minutes, placing the soaked raw materials in an essential oil distillation container for distillation for 30 minutes, and controlling the distillation temperature to be 30-35 ℃ to obtain the mixture of the essential oil and the hydrolat of the raw materials;
c: placing the obtained raw material essential oil and raw material hydrolat in a flow divider, respectively extracting the essential oil and the hydrolat, and respectively placing the extracted raw material essential oil in different containers for later use;
step two, adding raw materials: pouring purified water into a stirrer, simultaneously adding sandalwood essential oil, tea tree essential oil and wormwood essential oil obtained in the first step into the stirrer, simultaneously adding aloe tincture, eugenol, lavender extract, radix sophorae flavescentis extract and mint leaves which are raw materials into the stirrer respectively, and simultaneously adding a proper amount of auxiliary additives, wherein one or more of calendula, selfheal, calyx seu fructus physalis, uniflower swisscentaury root, rhizoma paridis, cyrtomium fortunei, radix bupleuri, liquorice and muskroot-like semiaquilegia root extract are adopted as the auxiliary additives in the second step;
step three: stirring: switching on a power supply of the stirrer to enable the stirrer to run at the speed of 350-500 rpm, controlling the temperature of the stirrer to be 45-65 ℃ and stirring for 25-30min to obtain a mixture A;
step four: and (3) filtering: pouring the mixture B obtained in the third step into a filter for filtering, wherein the filtering time is 30 minutes, putting the filtered liquid into a container for storage, and storing the residues in another container to obtain liquid B;
step five: and (3) testing: pouring the liquid B obtained in the step four into a container which is disinfected in advance, and carrying out PH detection on the liquid B;
step six: packaging, namely filling the liquid B detected in the step five into the same group of containers, and dividing the containers to contain solutions with different high and low concentrations;
example 4:
the invention provides a plant-extracted disinfectant for eliminating peculiar smell, wherein the used main materials comprise the following raw materials in parts by weight: 1.5-3 parts of aloe tincture, 1-2 parts of tea tree essential oil, 1.5-3 parts of wormwood essential oil, 2-4 parts of eugenol, 20-35 parts of lavender extract, 25-30 parts of radix sophorae flavescentis extract, 4-5.5 parts of sandalwood essential oil, 8-12 parts of mint leaves and 60-75 parts of purified water;
in the specific embodiment, the used main materials comprise the following raw materials in parts by weight: 3 parts of aloe tincture, 2 parts of tea tree essential oil, 2.5 parts of wormwood essential oil, 3.5 parts of eugenol, 35 parts of lavender extract, 30 parts of sophora flavescens extract, 5 parts of sandalwood essential oil, 12 parts of mint leaves and 70 parts of purified water;
the specific processing steps are as follows;
step one, extracting essential oil:
a: selecting the raw materials of the sandalwood, the tea leaves and the wormwood leaves, cleaning the sandalwood, the tea leaves and the wormwood leaves, and then drying, wherein the drying mode adopted in the step one is that the raw materials are placed in a vacuum and low-temperature environment for rapid cooling and drying, and the drying operation can be finished by observing frosting on the surface of the raw materials;
b: taking out the dried raw materials, placing the raw materials in a container filled with clean water for soaking for 20 minutes, placing the soaked raw materials in an essential oil distillation container for distillation for 30 minutes, and controlling the distillation temperature to be 30-35 ℃ to obtain the mixture of the essential oil and the hydrolat of the raw materials;
c: placing the obtained raw material essential oil and raw material hydrolat in a flow divider, respectively extracting the essential oil and the hydrolat, and respectively placing the extracted raw material essential oil in different containers for later use;
step two, adding raw materials: pouring purified water into a stirrer, simultaneously adding sandalwood essential oil, tea tree essential oil and wormwood essential oil obtained in the first step into the stirrer, simultaneously adding aloe tincture, eugenol, lavender extract, radix sophorae flavescentis extract and mint leaves which are raw materials into the stirrer respectively, and simultaneously adding a proper amount of auxiliary additives, wherein one or more of calendula, selfheal, calyx seu fructus physalis, uniflower swisscentaury root, rhizoma paridis, cyrtomium fortunei, radix bupleuri, liquorice and muskroot-like semiaquilegia root extract are adopted as the auxiliary additives in the second step;
step three: stirring: switching on a power supply of the stirrer to enable the stirrer to run at the speed of 350-500 rpm, controlling the temperature of the stirrer to be 45-65 ℃ and stirring for 25-30min to obtain a mixture A;
step four: and (3) filtering: pouring the mixture B obtained in the third step into a filter for filtering, wherein the filtering time is 30 minutes, putting the filtered liquid into a container for storage, and storing the residues in another container to obtain liquid B;
step five: and (3) testing: pouring the liquid B obtained in the step four into a container which is disinfected in advance, and carrying out PH detection on the liquid B;
step six: packaging, namely filling the liquid B detected in the step five into the same group of containers, and dividing the containers to contain solutions with different high and low concentrations;
the disinfectant prepared in the above examples 1 to 4 was filled into four containers of the same size and shape, the surfaces of the containers were labeled, four kinds of the same glasses were used for bacterial tests, fungi cultured in advance were applied to the upper surfaces of the four kinds of glasses, the four kinds of the same glasses were placed in a sterile vessel, the surfaces of the glasses were labeled with a label identical to the disinfectant, the original data was obtained by inspection before spraying, the four kinds of the disinfectant were uniformly sprayed on the surfaces of the four kinds of glasses, and the data obtained by testing the four kinds of the disinfectant were as shown in the following table:
TABLE 1
TABLE 2
According to the data that table 1 and table 2 obtained, will four kinds of antiseptic solutions test four kinds of glass that are the same bacterium content respectively in aseptic household utensils, and carry out the closing cap with aseptic household utensils and handle the back, open the closing cap through half an hour and test, wherein embodiment 4 is better to glass surface bactericidal effect, the pollution rate is than lower, the cleanliness factor is high, can improve chemical substances and get rid of the toxic substance on glass surface in the air after the use, reach air-purifying's effect simultaneously, make indoor being in faint scent, and can not cause the injury to the human body, it is safer to use.
And finally: the above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the invention, and any modifications, equivalents, improvements and the like that are within the spirit and principle of the present invention are intended to be included in the scope of the present invention.
Claims (8)
1. A plant extraction type disinfectant for eliminating peculiar smell is characterized in that: the main materials used in the method comprise the following raw materials in parts by weight: 1.5-3 parts of aloe tincture, 1-2 parts of tea tree essential oil, 1.5-3 parts of wormwood essential oil, 2-4 parts of eugenol, 20-35 parts of lavender extract, 25-30 parts of radix sophorae flavescentis extract, 4-5.5 parts of sandalwood essential oil, 8-12 parts of mint leaves and 60-75 parts of purified water.
2. The plant-extracted disinfectant liquid with odor elimination according to claim 1, wherein: the main materials used in the method comprise the following raw materials in parts by weight: 2-3 parts of aloe tincture, 1.5-2 parts of tea tree essential oil, 2-3 parts of wormwood essential oil, 2.5-4 parts of eugenol, 25-35 parts of lavender extracting solution, 26-30 parts of sophora flavescens extract, 4.5-5.5 parts of sandalwood essential oil, 10-12 parts of mint leaves and 65-75 parts of purified water.
3. The plant-extracted disinfectant liquid with odor elimination according to claim 1, wherein: the main materials used in the method comprise the following raw materials in parts by weight: 3 parts of aloe tincture, 2 parts of tea tree essential oil, 3 parts of wormwood essential oil, 3 parts of eugenol, 30 parts of lavender extract, 30 parts of sophora flavescens extract, 5 parts of sandalwood essential oil, 10 parts of mint leaf and 70 parts of purified water.
4. The plant-extracted disinfectant liquid with odor elimination according to any one of claims 1 to 3, wherein: the specific processing steps are as follows:
step one, extracting essential oil:
a: selecting the raw materials of the sandalwood, the tea leaves and the wormwood leaves, cleaning the sandalwood, the tea leaves and the wormwood leaves, and then drying;
b: taking out the dried raw materials, placing the raw materials in a container filled with clean water for soaking for 20 minutes, placing the soaked raw materials in an essential oil distillation container for distillation for 30 minutes, and controlling the distillation temperature to be 30-35 ℃ to obtain the mixture of the essential oil and the hydrolat of the raw materials;
c: placing the obtained raw material essential oil and raw material hydrolat in a flow divider, respectively extracting the essential oil and the hydrolat, and respectively placing the extracted raw material essential oil in different containers for later use;
step two, adding raw materials: pouring purified water into a stirrer, simultaneously adding the sandalwood essential oil, the tea tree essential oil and the wormwood essential oil obtained in the step one into the stirrer in sequence, simultaneously respectively adding the raw materials of aloe tincture, eugenol, lavender extracting solution, the sophora flavescens extract and mint leaves into the stirrer, and simultaneously adding a proper amount of auxiliary additives;
step three: stirring: switching on a power supply of the stirrer to enable the stirrer to run at the speed of 350-500 rpm, controlling the temperature of the stirrer to be 45-65 ℃ and stirring for 25-30min to obtain a mixture A;
step four: and (3) filtering: pouring the mixture B obtained in the third step into a filter for filtering, wherein the filtering time is 30 minutes, putting the filtered liquid into a container for storage, and storing the residues in another container to obtain liquid B;
step five: and (3) testing: pouring the liquid B obtained in the step four into a container which is disinfected in advance, and carrying out PH detection on the liquid B;
step six: packaging, namely filling the liquid B detected in the step five into the same group of containers, and dividing the containers to contain solutions with different high and low concentrations;
step seven: labeling and packaging, namely sequentially labeling the containers in the step six, placing the container filled with the liquid B in a packaging box for packaging, and moving the packaged packaging box to the interior of a warehouse for storage.
5. The plant-extracted disinfectant liquid with odor elimination according to claim 4, wherein: the filtration in the fourth step is used for filtering the residue after the stirring of the sophora flavescens extract and the mint leaves, so that the main components in the sophora flavescens extract and the mint leaves are fully contacted with the raw materials.
6. The plant-extracted disinfectant liquid with odor elimination according to claim 4, wherein: and the drying mode adopted in the first step is that the raw material is placed in a vacuum and low-temperature environment for rapid cooling and drying, and the drying operation can be finished by observing frosting on the surface of the raw material.
7. The plant-extracted disinfectant liquid with odor elimination according to claim 4, wherein: wherein the auxiliary additive in the second step is one or more of extracts of marigold, selfheal, calyx seu fructus physalis, uniflower swisscentaury root, rhizoma paridis, cyrtomium rhizome, radix bupleuri, liquorice and muskroot-like semiaquilegia root.
8. The plant-extracted disinfectant liquid with odor elimination according to claim 4, wherein: and pouring a part of residue filtered in the fourth step into the filter again for secondary filtration, and pouring the liquid subjected to secondary filtration into the liquid B.
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