Method for preparing nano micro-emulsified wax

A micro-emulsion and nano-technology, applied in the direction of physical wax treatment, etc., can solve the problems that the particle size of the emulsion cannot reach the nano-scale emulsified wax emulsion, the nano-scale micro-emulsion, and the product particle size is large, and the viscosity is suitable, The effect of wide application field and wide application area

Inactive Publication Date: 2008-08-27
上海五将化工科技有限公司
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Problems solved by technology

[0016] Chinese patent CN1570038 discloses a paraffin emulsifier and its preparation method, which is composed of 20-30 parts of lauryl alcohol, ethylene oxide, monoglyceride, stearic acid, and ethanol, and can be reacted in an ordinary reactor Made into a solid or paste paraffin emulsifier; using this patented emulsifier to produce paraffin emulsion requires less amount, only 4%-5% of the amount of paraffin; the prepared paraffin emulsion is non-toxic, tasteless, strong in stability and good in lubricity , anti-acid, anti-alkali, hard water resistance, no delamination, no demulsification, and can make emulsion with a paraffin solid content of more than 50%, and the emulsion has good water solubility. It can be widely used in textile, papermaking and other fields as an industrial additive. It can be directly used as a release agent. In the man-made fiberboard industry, it can completely replace paraffin as a waterproof and moisture-proof additive, and it is simpler, lower in cost and better in effect than using paraffin; nanoscale microemulsion
[0017] Chinese patent CN1661159 discloses the application of a waterproof emulsified paraffin wax in the production of fiberboard. Paraffin wax is used as a raw material, emulsified by adding a specific ratio of emulsifying additives and water, and the paraffin wax solid content in the emulsified paraffin wax can reach 40-50%. When used as a waterproofing agent, in the process of wood processing and drying in the production of fiberboard, particleboard, etc., that is, at a temperature of 100-180 ° C, all the hydrophilic components in the emulsifyi

Method used

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  • Method for preparing nano micro-emulsified wax

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0044] (1) The composition of raw materials by weight percentage:

[0045] No. 56 semi-refined paraffin wax: 5

[0046] C5 petroleum resin: 10

[0047] Oxidized polyethylene wax: 15

[0048] Sodium dodecylbenzene sulfate: 5.7

[0049] Fatty alcohol polyoxyethylene ether: 4

[0050] Potassium hydroxide: 0.3

[0051] Water: 60

[0052] (2) Mix semi-refined paraffin wax, petroleum resin, oxidized polyethylene wax, sodium dodecylbenzene sulfate, and fatty alcohol polyoxyethylene ether, and then put it into a special reaction kettle for heating at a temperature of 85°C;

[0053] (3) Water and alkali are batched again, then put into another reaction kettle, and heated at a temperature of 85°C;

[0054] (4) Slowly add the water phase in the second reactor to the oil phase of the first reactor and slowly stir and emulsify;

[0055] (5) After emulsifying for 20 minutes, pass water to cool the nanoemulsion, and the temperature is 25°C;

[0056] (6) Take out the nanoemulsion, mea...

Embodiment 2

[0058] (1) The composition of raw materials by weight percentage:

[0059] No. 58 fully refined paraffin wax: 2

[0060] Beeswax: 5

[0061] Oxidized polypropylene wax: 25

[0062] Alkylphenol ethoxylates: 6

[0063] Sodium hydroxide: 0.3

[0064] Water: 61.7

[0065] (2) Mix fully refined paraffin wax, beeswax, oxidized polypropylene wax, and alkylphenol polyoxyethylene ether, and then heat it in a special reaction kettle at a temperature of 105°C;

[0066] (3) Water and sodium hydroxide are batched again, then put into another reaction kettle, and heated at a temperature of 110°C;

[0067] (4) Slowly add the water phase in the second reactor to the oil phase of the first reactor and slowly stir and emulsify;

[0068] (5) After emulsifying for 40 minutes, pass water to cool the nanoemulsion, and the temperature is 35°C;

[0069] (6) Take out the nanoemulsion to measure product properties, solid content: 38%, emulsified wax particle size: 25 nanometers.

Embodiment 3

[0071] (1) The composition of raw materials by weight percentage:

[0072] Rosin: 12

[0073] Petroleum resin: 4

[0074] Grafted polyethylene wax: 8

[0075] Fatty alcohol polyoxyethylene ether: 5.7

[0076] Beeswax: 4

[0077] Potassium hydroxide: 0.3

[0078] Water: 66

[0079] (2) Mix rosin, petroleum resin, grafted polyethylene wax, fatty alcohol polyoxyethylene ether, and beeswax, and then put them into a special reaction kettle for heating at a temperature of 150°C;

[0080] (3) Water and potassium hydroxide are batched again, then put into another reaction kettle, and heated at a temperature of 145°C;

[0081] (4) Slowly add the water phase in the second reactor to the oil phase of the first reactor and slowly stir and emulsify;

[0082] (5) After emulsifying for 20 minutes, pass water to cool the nanoemulsion, and the temperature is 50°C;

[0083] (6) Take out the nanoemulsion to measure product properties, solid content: 40%, emulsified wax particle size: 35 ...

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Abstract

The invention discloses a process for preparing nanometer micro emulsifying wax, wherein components of raw material which is formed according to percentage by weight are that paraffin 2-40%, viscosity additive 1-30%, emulsifying agent 3-12%, oxygenated polythene wax 1-50%, oxygenated polypropylene wax 0.001-40%, water 30-70% and alkali 0.001-5%, the process for preparation comprises the following steps: batching paraffin, additive and emulsifying agent according to the above percentage by weight, and then placing into a special-purpose reaction kettle to heat up, wherein the temperature is 80-150 DEG C, batching water and alkali again according to the above percentage by weight, and then placing into another reaction kettle, heating up, wherein the temperature is 80-150 DEG C, slowly adding water in the second reaction kettle into the oil phase of the first reaction kettle, and slowly stirring, emulsifying, cooling nanometer oil emulsion through water after emulsifying for 10-160 minutes, wherein the temperature is 20-60 DEF C, and taking out nanometer oil emulsion. The process for preparation of the invention has the advantages of adjustable product solid phase component fusing point, thin and fine grain diameter, correct viscosity and extended application.

Description

【Technical field】 [0001] The invention relates to the field of emulsified wax preparation, in particular to a preparation method of nano microemulsified wax. 【Background technique】 [0002] The application fields of emulsifying wax are quite extensive, with a large quantity and a wide range. Its main application fields are textile, papermaking, leather, fiberboard, glazing, gypsum, fruit preservation, construction, gardening, ceramics, etc. The main manufacturers of foreign wax emulsions are Mobil, BASF, Mitsui and so on. In 1988, the amount of emulsifying wax in the US market was 19,000 tons. At present, it is estimated that the consumption of emulsifying wax in the Asia-Pacific region is about 30,000 tons. Domestic demand for wood-based panel emulsifying wax will reach 100,000-120,000 tons by 2010; my country's demand for paper-making emulsifying wax will reach 10,000-15,000 tons; my country's demand for fruit and vegetable preservation and plant protection emulsifying w...

Claims

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Application Information

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IPC IPC(8): C10G73/40
Inventor 张建雨
Owner 上海五将化工科技有限公司
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