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Plant deodorant and preparation method thereof

A deodorant and plant technology, applied in the field of plant deodorant and its preparation, can solve the problems of ineffective removal of odor, low content of effective active ingredients, deodorization, etc., to achieve good odor removal and biological activity retention , the effect of low temperature

Inactive Publication Date: 2019-06-11
河南传宇生物科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] But most of the existing plant deodorants are oils or juices extracted from plants with special fragrance, and are blended by adding essence and pigments, mainly diluting the odor by the fragrance emitted in the deodorant, thereby covering up People's sense of smell can achieve the illusion of not smelling, but it can't deodorize fundamentally; and the content of effective active ingredients in existing plant deodorants is low, and can't effectively remove odor; in addition, most of the existing odorous substances are mainly It is produced by the activities of microorganisms, so it is urgent to develop a method that can inhibit the biological activity of microorganisms or react with odor molecules to convert odor molecules into odorless or low-odor substances instead of deodorizing by masking Efficient and fast plant deodorant

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0026] A preparation method of plant deodorant, comprising the following steps:

[0027] (1) Raw materials and pre-treatment process of raw materials: The raw materials for preparing plant deodorants are divided into two parts, which are pre-treated respectively. The specific process is as follows:

[0028] .Get 1 mass part of hemp seed, 2 mass parts of turpentine, 3 mass parts of saponins, 4 mass parts of Burnet and 5 mass parts of Sophora flavescens, after the above-mentioned raw materials are dried with hot air, they are mixed and pulverized , and passed through a 150-mesh sieve to obtain a sieve with a particle size of 150 mesh. Add 15 parts by mass of ethyl acetate to the sieve, and store it in a sealed container at 4° C. for 24 hours to obtain a mixed solution A.

[0029] Among them, the hot air drying process is as follows: mix hemp seed, turpentine, saponins, Burnet and flavescens according to the proportion described in step (1), spread the mixed raw materials in a ho...

Embodiment 2

[0039] The difference between embodiment 2 and embodiment 1 only lies in the preparation of raw materials, the pretreatment of raw materials and the selection of emulsifier, which are as follows.

[0040] (1) Raw material pre-treatment: Divide the raw material into two parts and carry out pre-treatment respectively. The specific process is as follows:

[0041] .Get 2 mass parts of hemp seed, 3 mass parts of turpentine, 5 mass parts of saponins, 5 mass parts of Burnet and 10 mass parts of Sophora flavescens, after the above-mentioned raw materials are dried with hot air, they are mixed and milled , and passed through a 200-mesh sieve to obtain a sieve with a particle size of 200 mesh. Add 25 parts by mass of ethyl acetate to the sieve, and store it in a sealed container at 4° C. for 24 hours to obtain a mixed solution A.

[0042] .Get 12 parts by mass of fresh orange peel, 18 parts by mass of Folium Folium and 20 parts by mass of aloe, freeze-dry the fresh orange peel, Foli...

Embodiment 3

[0045] The difference between Example 3 and the above-mentioned examples lies in the ratio of raw materials and the pretreatment of raw materials, which are as follows.

[0046] (1) Raw material pre-treatment: Divide the raw material into two parts and carry out pre-treatment respectively. The specific process is as follows:

[0047] .Get 1.5 mass parts of hemp seed, 2.5 mass parts of turpentine, 4 mass parts of saponins, 4.5 mass parts of Burnet and 7 mass parts of Sophora flavescens, after the above raw materials are dried with hot air, they are mixed and milled , and passed through a 180-mesh sieve to obtain a sieve with a particle size of 180 mesh. Add 20 parts by mass of ethyl acetate to the sieve, and store it in a sealed container at 4° C. for 24 hours to obtain a mixed solution A.

[0048] .Get 11 mass parts of fresh orange peel, 15 mass parts of Folium Folium and 17 mass parts of aloe, carry out freeze-drying process to described fresh orange peel, Folium Folium a...

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PUM

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Abstract

The invention belongs to the technical field of deodorization, and particularly relates to a plant deodorant and a preparation method thereof. The preparation method comprises the following steps: taking fructus cannabis, pine gum, Chinese honeylocust fruits, garden burnet roots, radix sophorae flavescentis, fresh orange peel, folium isatidis and aloe as raw materials to carry out pretreatment, then carrying out supercritical CO2 extraction, and adding an emulsifier into fat-soluble active components and water-soluble active components obtained by extraction to carry out compounding emulsifying to prepare the oil-in-water plant deodorant. Effective components of the prepared plant deodorant are flavonoid substances, alkaloids and aminoglycoside substances, and a good antibacterial effect and a peculiar smell removal effect are achieved.

Description

technical field [0001] The invention belongs to the technical field of deodorization, and in particular relates to a plant deodorant and a preparation method thereof. Background technique [0002] Existing garbage deodorants in the market mainly contain chemical deodorants, microbial deodorants and plant deodorants. The cost of chemical deodorants is relatively high, and it is easy to cause secondary pollution; although the cost of microbial deodorants is low, it is difficult to achieve rapid and efficient deodorants due to the difficulty of microbial mixed fermentation, unstable products, and certain adaptability and growth cycle. Odor effect; plant deodorant is a kind of deodorant obtained from oil, juice or extract extracted from natural trees, flowers and plants, which is microemulsified and mixed with water. It can be completely biodegraded, non-toxic, and non-secondary Pollution. Its mechanism of action is based on chemical reactions and biophysical processes to elim...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01D53/78B01D53/40B01D53/38B01D11/02
Inventor 赵月林
Owner 河南传宇生物科技有限公司
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