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A kind of viscoelastic nanoemulsion and preparation method thereof

A nanoemulsion and viscoelastic technology, which is applied in the field of viscoelastic nanoemulsion and its preparation, can solve the problems of limited application range, hidden safety hazards of nanoemulsion, poor stability, etc., and achieve long-term stability, narrow particle size distribution, stability and stability Sexual Enhancement Effects

Inactive Publication Date: 2017-09-12
CHINA UNIV OF PETROLEUM (EAST CHINA)
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Whether it is partially hydrolyzed polyacrylamide or hydrophobically modified polyacrylamide, it will contain a certain amount of acrylamide monomer, and the molecular chain of polyacrylamide will be sheared and broken under the action of shear force to obtain small molecule acrylamide. Acrylamide aggregates, and acrylamide is a substance with potential neurotoxicity, genotoxicity and carcinogenicity. Therefore, there are certain safety hazards in the application of nanoemulsions obtained by this method, and its application range will be greatly restricted. limit
The patent application number 201410514585.9 discloses a salt-free anion / cation surfactant-stabilized viscoelastic emulsion and its preparation method. Although it has a certain viscoelasticity, it can be deformed when it is sheared during the flow process, but this The water-in-oil emulsion prepared by this method has a particle size of micron size. Compared with the nano-sized particle size emulsion, the particle size distribution is wider and the stability is relatively poor.

Method used

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  • A kind of viscoelastic nanoemulsion and preparation method thereof
  • A kind of viscoelastic nanoemulsion and preparation method thereof
  • A kind of viscoelastic nanoemulsion and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034]At 20-25°C, mix lipophilic emulsifier 2.228g Span20, 0.022g TX4 and hydrophilic emulsifier 0.028g Brij35, 2.722g Tween20; add the mixed emulsifier to 10g liquid paraffin, electromagnetically stir to Stir at a speed of 600 rpm for 5 minutes to obtain a nanoemulsion mixture; weigh 10 g of diyou gum and dissolve it in 1000 mL of water to obtain a 10 g / L aqueous phase mother liquor; dilute the 10 g / L mother liquor by 100 times to obtain a 0.1 g / L water phase phase solution; 85g of aqueous phase solution was added dropwise and uniformly into the nanoemulsion mixture through a micro-injection pump, the injection speed was controlled at 0.1mL / min, and the stirring speed was controlled at 200 rpm by electromagnetic stirring at the same time to prepare viscoelastic The nanoemulsion has an average particle diameter of 280nm as measured by a laser particle size analyzer.

Embodiment 2

[0036] At 20-25°C, mix lipophilic emulsifiers 2.97g Span20, 0.03g TX4 and hydrophilic emulsifiers 0.03g Brij35, 2.97g Tween20; add the mixed emulsifiers to 24g liquid paraffin, and stir at 800 Stir for 5 minutes at a speed of rpm / min to obtain a nanoemulsion mixture; weigh 10g of diyout gum and dissolve it in 1000mL of water to obtain a 10g / L aqueous phase mother liquor; dilute the 10g / L mother liquor 1000 times to obtain a 0.01g / L aqueous phase Solution; 70g of aqueous phase solution was added to the nanoemulsion mixture drop by drop at a constant speed through a micro-injection pump, the injection speed was controlled at 10mL / min, and the stirring speed was controlled at 400 rpm by electromagnetic stirring at the same time to prepare a viscoelastic nanoemulsion , the average particle size measured by laser particle size analyzer is 278nm.

Embodiment 3

[0038] At 20-25°C, mix lipophilic emulsifiers 2.381g Span20, 2.381g TX4 and hydrophilic emulsifiers 2.619g Brij35, 2.619g Tween20; add the mixed emulsifiers to 40g liquid paraffin, and stir electromagnetically to Stir at a speed of 750 rpm for 5 minutes to obtain a nanoemulsion mixture; weigh 10 g of diyout gum and dissolve it in 1000 mL of water to obtain a 10 g / L aqueous phase mother liquid; dilute the 10 g / L mother liquid by 2 times to obtain a 5 g / L aqueous phase Solution: Add 50g of aqueous solution into the nanoemulsion mixture drop by drop at a constant speed through a micro-injection pump, control the injection speed at 0.5mL / min, and control the stirring speed at 250 rpm by electromagnetic stirring at the same time to prepare viscoelastic nano-emulsion The emulsion has an average particle diameter of 265nm as measured by a laser particle size analyzer.

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Abstract

The invention discloses a viscoelastic nanoemulsion, comprising 100 parts by weight, 10-40 parts of oil phase, 5-10 parts of emulsifier, 7×10-4-3.5×10-1 parts of bioglue, and the balance of water; The emulsifier is a mixture of lipophilic emulsifier and hydrophilic emulsifier; the lipophilic emulsifier is a mixture of Span20 and TX4; the hydrophilic emulsifier is a mixture of Brij 35 and Tween 20. The invention also discloses a preparation method thereof, the steps are as follows: at 20-25°C, add the emulsifier into the oil phase and stir evenly to obtain a nano-emulsion mixture; dissolve biogel in water to obtain a water phase solution; The phase solution is added dropwise to the nanoemulsion mixture at a uniform speed and stirred at the same time to form a nanoemulsion. The present invention utilizes emulsifier compounding and bio-glue embedding to form viscoelastic adsorption layers on both sides of the oil-water interface on the nanoparticle surface, improving the viscoelasticity and stability of the oil-water interface, and the particle size distribution is narrow and stable.

Description

technical field [0001] The invention belongs to the technical field of nanoemulsion preparation, in particular to a viscoelastic nanoemulsion and a preparation method thereof. Background technique [0002] Emulsion refers to a dispersion system in which the dispersed phase is dispersed in the continuous phase composed of another phase (non-solvent) in the form of small droplets. It is a thermodynamically unstable polydisperse system, and the diameter of the dispersed phase is generally between 0.1 and 10 μm. Emulsions with diameters between 50 and 500 nm are called nanoemulsions. As a special type of emulsion, compared with ordinary emulsion, nanoemulsion has smaller droplet size, uniform dispersion, and certain dynamic stability. It can avoid obvious flocculation and coalescence within several months or even half a year. More excellent properties and application prospects. Therefore, nanoemulsion technology has penetrated into the fields of petrochemical industry, daily c...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C08L91/06C08L71/02C08L5/00C08J3/03
CPCC08J3/03C08J2391/06C08J2405/00C08J2471/02C08L91/06C08L2201/54C08L2205/025C08L2205/035C08L71/02C08L5/00
Inventor 宫厚健徐龙董明哲李亚军桑茜朱腾李康宁
Owner CHINA UNIV OF PETROLEUM (EAST CHINA)
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