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Liquid laundry detergent capable of removing grease dirt

A laundry detergent and degreasing technology, which is applied in the field of laundry detergent, can solve the problems of skin irritation and damage, and achieve the effect of thorough washing and soft fabric

Inactive Publication Date: 2016-01-27
华玉叶
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The difference is that traditional washing powder and soap use anionic surfactants, which are mainly sodium alkyl sulfonate and sodium stearate, and are highly alkaline (the pH of washing powder is generally greater than 12). Greater irritation and damage to the skin

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0020] A refreshing type shampoo, which comprises the following components by weight percentage:

[0021] (1) 10% lauryl dimethyl amine oxide;

[0022] (2) 5% sodium carbonate;

[0023] (3) 0.3% phenoxyethanol;

[0024] (4) 0.3% methyl p-hydroxybenzoate;

[0025] (5) 3% C 4 f 7 CH 2 CF 2 CH 2 CH 2 SO 3 Na;

[0026] (6) The mixture of 5% C12 internal olefin sodium sulfonate and C16 internal olefin sodium sulfonate, the mixing mass ratio is 1:1, the hydroxyl body (hydroxyalkane sodium sulfonate) / The mass ratio of olefin body (sodium olefin sulfonate) is 92 / 8, and the mass ratio of hydroxyl body (sodium hydroxyalkane sulfonate) / olefin body (sodium olefin sulfonate) in C16 internal olefin sulfonate is 88 / 12;

[0027] (7) The remaining water.

preparation example

[0028] The internal olefin sulfonates are known compounds, and their typical but non-limiting preparation examples are as follows:

[0029] Preparation of C12 Internal Olefins

[0030] 1-Dodecene "Linealene 12, manufactured by Idemitsu Kosan Co., Ltd." (6000 g (35.6 mol), 180 g of protic β-zeolite (CP-814E, Zeolyst Co., Ltd.) as a solid acid catalyst was added to a flask with a stirring device (3% by mass relative to the raw material α-olefin), under stirring, the reaction was carried out at 120° C. for 20 hours. Next, the crude internal olefin was transferred to a distillation flask and distilled at 124-136° C. / 7.5 mmHg. This gives an internal olefin with 12 carbon atoms having an olefin purity of 100%. The double bond distribution of the obtained internal olefin is 0.5% by mass at the C1 position, 33.1% by mass at the C2 position, 23.7% by mass at the C3 position, 21.2% by mass at the C4 position, 15.0% by mass of C5 and 6.6% by mass of C6.

[0031] The internal olefins wi...

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PUM

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Abstract

The invention discloses liquid laundry detergent capable of removing grease dirt. According to the liquid laundry detergent, a specific combination of sodium sulfonate surfactants and internal olefin sulphonates is adopted, and in the process of removing the grease dirt immersed in a fabric, washing is thorough and the fabric is soft and smooth.

Description

technical field [0001] The invention relates to a laundry detergent, in particular to a degreasing laundry detergent. Background technique [0002] Laundry liquid is a new washing substance that has emerged in recent years. Its working principle is similar to that of traditional washing powder and soap, and its active ingredients are surfactants. The difference is that traditional washing powder and soap use anionic surfactants, which are mainly sodium alkyl sulfonate and sodium stearate, and are highly alkaline (the pH of washing powder is generally greater than 12). It is more irritating and harmful to the skin. The laundry detergent mostly uses non-ionic surfactants, the pH is close to neutral, mild to the skin, and after being discharged into nature, it degrades faster than washing powder, so it has become a new generation of detergent. [0003] The active ingredients of laundry detergent are mainly non-ionic surfactants, whose structure includes hydrophilic ends and l...

Claims

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Application Information

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IPC IPC(8): C11D1/83C11D3/60C11D1/14C11D3/20C11D3/10
Inventor 华玉叶
Owner 华玉叶
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