Preparation method of pure natural radix polygoni multiflora liquid shampoo

A technology of Polygonum multiflorum and shampoo, applied in the field of shampoo derived from plants and its preparation, can solve the problems of unfavorable environmental protection waste water, waste residue, hair side effects, etc., and achieve the effect of simple and convenient source, less solvent consumption, and rich foam

Inactive Publication Date: 2018-04-20
GUANGDONG UNIV OF PETROCHEMICAL TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, the chemical ingredients in various shampoos on the market have great differences in hair loss and hair maintenance. Most shampoos contain more or less chemical raw materials. Although these chemical raw materials can play a basic role decontamination and dandruff removal, but it will still have certain side effects on the hair, and will produce waste water and waste residues that are not conducive to environmental protection during processing

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0027] Step (1): Crush 150g of freshly squeezed Camellia oleifera cake, pass through a 40-mesh sieve, put the wet sample in boiling water evenly into a glass chromatography column with a diameter of 5cm, soak in the column for 60 minutes, and elute with boiling water. The liquid flow rate was 600 mL / h, and 900 mL of the eluent was collected, concentrated to 600 mL under reduced pressure;

[0028] Step (2): Sun-dry or dry fresh acacia, weigh 200g, crush, pass through a 40-mesh sieve, put the wet sample in boiling water evenly into a glass chromatography column with a diameter of 6 cm, soak in the column for 90 min, boil water For elution, the eluent flow rate is 800 mL / h, and the eluent is collected at 1200 mL;

[0029] Step (3): Slice the raw Polygonum multiflorum, dry it, take 150 g and crush it, pass it through a 40-mesh sieve, put the wet sample with 30% ethanol (v / v) evenly into a glass chromatography column with a diameter of 5 cm, and put it in the column. Soak for 60 m...

Embodiment 2

[0034] Step (1): Crush 200g of freshly squeezed Camellia oleifera cake, pass through a 60-mesh sieve, put the wet sample in boiling water into a glass chromatography column with a diameter of 6cm, soak in the column for 90 minutes, and elute with boiling water. The liquid flow rate was 800 mL / h, and the eluate was collected at 1200 mL, concentrated under reduced pressure to 800 mL;

[0035] Step (2): Sun-dry or dry fresh acacia, weigh 150 g, crush, pass through a 60-mesh sieve, put the wet sample in boiling water evenly into a glass chromatography column with a diameter of 5 cm, soak in the column for 80 min, Elute with boiling water, the eluent flow rate is 800 mL / h, collect 1200 mL of eluent, and concentrate under reduced pressure to 800 mL;

[0036] Step (3): Slice the raw Polygonum multiflorum, dry it, take 200g and crush it, pass it through a 50-mesh sieve, put the wet sample with 50% ethanol (v / v) evenly into a glass chromatography column with a diameter of 5 cm, and soa...

Embodiment 3

[0041] Step (1): crush 180 g of freshly squeezed Camellia oleifera cake, pass through a 50-mesh sieve, put the wet sample in boiling water into a glass chromatography column with a diameter of 5.5 cm, soak in the column for 70 min, and elute with boiling water. The flow rate of eluent is 800 mL / h, and 1000 mL of eluent is collected;

[0042] Step (2): Sun-dry or dry the fresh saponins, weigh 180g, crush, pass through a 50-mesh sieve, put the wet sample in boiling water evenly into a glass chromatography column with a diameter of 5.5 cm, soak the column for 80 min, boil water For elution, the flow rate of the eluent is 700 mL / h, and 1000 mL of the eluent is collected and concentrated to 700 mL under reduced pressure;

[0043] Step (3): Slice the raw Radix Polygoni Multiflori, dry it, take 180 g and crush it, pass it through a 50-mesh sieve, put the wet sample with 40% ethanol (v / v) evenly into a glass chromatography column with a diameter of 5.5 cm, and put it in the column. S...

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Abstract

The invention relates to a preparation method of pure natural radix polygoni multiflora liquid shampoo. The method comprises the following steps that oil-tea-cake meal, Chinese honey locust, radix polygoni multiflora and fresh ginger are respectively extracted; then, extraction liquid of the oil-tea-cake meal, the Chinese honey locust, the radix polygoni multiflora and the fresh ginger is sufficiently mixed according to a certain proportion; 0.01 to 0.05 percent of preservative potassium sorbate are added; uniform stirring is performed to obtain the liquid shampoo. The product is healthy and achieves an environment-friendly effect; strong cleaning and bacteriostatic effects are achieved; the efficacies of reliving itching, eliminating dandruff and blackening the hair can also be achieved.

Description

technical field [0001] The invention belongs to the technical field of cosmetics, and in particular relates to a plant-derived shampoo and a preparation method thereof. Background technique [0002] With the improvement of people's living standards, people's awareness of green, low-carbon environmental protection, and energy saving is becoming stronger and stronger, and the quality and effect of shampoo are also gradually improving; people's shampoo is not only limited to decontamination and descaling On the level of green, low-carbon and environmental protection, how to pay attention to the functions of health care and maintenance of hair, such as black hair, treatment of scalp oil, hair loss, hair breakage and other functions. At present, the chemical ingredients in various shampoos on the market have great differences in hair loss and hair maintenance. Most shampoos contain more or less chemical raw materials. Although these chemical raw materials can play a basic role I...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61K8/9789A61K8/9794A61K8/63A61K8/60A61K8/35A61Q5/02A61Q5/12A61Q5/00A61Q7/00A61Q17/00
CPCA61K8/97A61K8/35A61K8/602A61K8/63A61K2800/805A61Q5/006A61Q5/02A61Q5/12A61Q7/00A61Q17/005
Inventor 刘成有刘杰凤刘韩尹爱国韩寒冰
Owner GUANGDONG UNIV OF PETROCHEMICAL TECH
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