WO2018112853A1 - 一种丝瓜纤维荷纤维野藤纤维复合去污剂 - Google Patents

一种丝瓜纤维荷纤维野藤纤维复合去污剂 Download PDF

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WO2018112853A1
WO2018112853A1 PCT/CN2016/111588 CN2016111588W WO2018112853A1 WO 2018112853 A1 WO2018112853 A1 WO 2018112853A1 CN 2016111588 W CN2016111588 W CN 2016111588W WO 2018112853 A1 WO2018112853 A1 WO 2018112853A1
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parts
fiber
fibers
loofah
composite
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PCT/CN2016/111588
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English (en)
French (fr)
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郑均思
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郑均思
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Priority to PCT/CN2016/111588 priority Critical patent/WO2018112853A1/zh
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    • CCHEMISTRY; METALLURGY
    • C11ANIMAL OR VEGETABLE OILS, FATS, FATTY SUBSTANCES OR WAXES; FATTY ACIDS THEREFROM; DETERGENTS; CANDLES
    • C11DDETERGENT COMPOSITIONS; USE OF SINGLE SUBSTANCES AS DETERGENTS; SOAP OR SOAP-MAKING; RESIN SOAPS; RECOVERY OF GLYCEROL
    • C11D1/00Detergent compositions based essentially on surface-active compounds; Use of these compounds as a detergent
    • C11D1/88Ampholytes; Electroneutral compounds
    • C11D1/94Mixtures with anionic, cationic or non-ionic compounds

Definitions

  • the invention belongs to the technical field of detergents, and relates to a household kitchen detergent, in particular to a loofah fiber-loaded fiber vine fiber composite detergent.
  • oily dirt Due to cooking methods and traditional living habits, most household kitchens in China have more fumes, and oily dirt is likely to remain on the surface and around the appliance, especially such as range hoods, ventilation fans, gas stoves, ceramic tiles and walls. This is especially true on the surface.
  • the causes of oily dirt include: 1. The tiny dust floating in the environment and other small solid particles attached to the solid surface by sedimentation and physical adsorption. The presence of oily substances promotes the adhesion; 2. The soot formed during cooking Gasification or even partial carbonization under high temperature conditions.
  • these oil fume can be condensed to form an oily substance attached to a solid surface, and on the other hand, can be bonded to a solid surface by physical or chemical action;
  • the unsaturated oil in which the unsaturated oil will polymerize, forms a dense and strong film-type dirt on the solid surface, which is the most difficult component to remove in all dirt.
  • the detergents currently on the market are not ideal for kitchen oil stains, especially heavy oil stains.
  • the object of the present invention is to overcome the deficiencies of the prior art and to design a vegetable oil-based soil remover for vegetable oil stain cleaning, especially heavy oil stain cleaning.
  • the present invention relates to a loofah fiber-loaded fiber vine fiber composite detergent, 1-5 parts per 100 parts of sodium hydroxide, 5-10 parts peroxyacetic acid, octadecyl dihydroxyethyl beet 4-9 parts of base, 10-16 parts of butoxyethanol, 3-8 parts of sodium xylene sulfonate, 3-8 parts of sodium lauryl sulfate, 3-8 parts of polysiloxane, antioxidant 0.2- 0.8 parts, 10-15 parts of composite fiber, the composite fiber comprises loofah fiber, charged fiber and wild vine fiber, the mass fraction ratio of loofah fiber, lotus fiber and wild vine fiber is 1:1:0.5, and the balance is deionization Water, the above parts are parts by mass.
  • the antioxidant is one of sodium sulfite, sodium metabisulfite or dibutyl phenol.
  • the loofah fiber is prepared by drying the mature loofah, removing the pulp and the seed portion, leaving only the loofah net, pulverizing the loofah net, drying and grinding to 300-1200 mesh.
  • the charged fiber is prepared by drying the lotus rod and breaking it into a filament having a diameter of 0.05 to 0.15 mm, spraying a sodium hydroxide aqueous solution having a mass concentration of 10% into the filamentous material, and spraying. After uniform drying, grinding to 300 ⁇ 1200 mesh.
  • the wild vine fiber is prepared by drying the wild cane into a filament having a diameter of 0.05 to 0.15 mm and drying and grinding to 300 to 1200 mesh.
  • the plant fiber cleaning agent of the present embodiment 1 part of sodium hydroxide per 100 parts, 5 parts of peracetic acid, 4 parts of octadecyl dihydroxyethyl betaine, 10 parts of butoxyethanol, sodium xylene sulfonate 3 parts, 3 parts of sodium lauryl sulfate, 3 parts of polysiloxane, 0.2 parts of antioxidant, 10 parts of composite fiber, the composite fiber includes loofah fiber, lotus fiber and wild vine fiber, loofah fiber, and fiber
  • the mass fraction ratio of the wild and the rattan fiber is 1:1:0.5, and the balance is deionized water, and the above fraction is the mass fraction.
  • the antioxidant is sodium sulfite
  • the preparation method of the loofah fiber is: after drying the mature loofah, removing the pulp and the seed part, leaving only the loofah net, pulverizing the loofah net, drying and grinding to 300 mesh; preparation method of the charged fiber
  • it is broken into a filament having a diameter of 0.05 to 0.15 mm, and a sodium hydroxide aqueous solution having a mass concentration of 10% is sprayed into the filamentous raw material, sprayed uniformly, and then twice dried and ground to 300.
  • the method of preparing wild vine fiber is to dry the wild cane into a filament having a diameter of 0.05 to 0.15 mm and dry to 1200 mesh.
  • the vegetable fiber cleaning agent of the present embodiment has 5 parts of sodium hydroxide per 100 parts, 10 parts of peracetic acid, 9 parts of octadecyl dihydroxyethyl betaine, 16 parts of butoxyethanol, and sodium xylene sulfonate. 8 parts, 8 parts of sodium lauryl sulfate, 8 parts of polysiloxane, 0.8 parts of antioxidant, 15 parts of composite fiber, composite fiber including loofah fiber, lotus fiber and wild vine fiber, loofah fiber, lotus fiber and wild
  • the mass fraction ratio of the rattan fiber is 1:1:0.5, the balance is deionized water, and the above parts are parts by mass.
  • the antioxidant is dibutyl phenol
  • the loofah fiber is prepared by drying the mature loofah, removing the pulp and the seed part, leaving only the loofah net, pulverizing the loofah net, drying and grinding to 1200 mesh
  • the preparation method comprises the following steps: drying the lotus rod to break into a filament having a diameter of 0.05 to 0.15 mm, spraying a sodium hydroxide aqueous solution having a mass concentration of 10% into the filamentous raw material, spraying uniformly, and then drying twice, powder. Grinding to 1200 mesh; the method of preparing wild vine fiber is to dry the wild cane and crush it into a filament having a diameter of 0.05 to 0.15 mm, and dry and grind to 300 mesh.

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  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Wood Science & Technology (AREA)
  • Organic Chemistry (AREA)
  • Cleaning Implements For Floors, Carpets, Furniture, Walls, And The Like (AREA)
  • Detergent Compositions (AREA)

Abstract

一种丝瓜纤维荷纤维野藤纤维复合去污剂,每百份中氢氧化钠1-5份,过氧乙酸5-10份,十八烷基二羟乙基甜菜碱4-9份,丁氧基乙醇10-16份,二甲苯磺酸钠3-8份,十二烷基硫酸钠3-8份,聚硅氧烷3-8份,抗氧剂0.2-0.8份,复合纤维10-15份,复合纤维包括丝瓜纤维、荷纤维和野藤纤维,丝瓜纤维、荷纤维和野藤纤维的质量分数比为1:1:0.5,余量为去离子水,上述份数为质量份数;能够快速清除厨房器具表面及周边存留的油性污垢,特别适用于抽油烟机、换气扇、燃气灶、瓷砖及墙壁等硬表面,清洗效果好,能够有效避免清洗过程中对器具表面造成划痕,使用环境友好。

Description

一种丝瓜纤维荷纤维野藤纤维复合去污剂 技术领域
本发明属于去污剂技术领域,涉及一种家用厨房去污剂,特别涉及一种丝瓜纤维荷纤维野藤纤维复合去污剂。
背景技术
由于烹饪方式和传统生活习惯等方面的原因,我国绝大部分家庭厨房环境中油烟较多,在器具表面及周边容易存留油性污垢,尤其像抽油烟机,换气扇,燃气灶,瓷砖及墙壁等硬表面上更是如此。油性污垢的成因包括:1、环境中漂浮的微小尘埃及其他固体小颗粒通过沉降和物理吸附附着在固体表面上,油性物质的存在对这种附着有促使作用;2、烹饪过程中形成的油烟,在高温条件下气化甚至部分碳化形成,这些油烟一方面可以冷凝形成油状物附着于固体表面上,另一方面还可以通过物理的或化学的作用结合到固体表面上;3食用油中包含的不饱和油脂,在气化的成分中不饱和油脂会发生聚合,从而在固体表面形成一层较为致密且结合力很强的薄膜型污垢,此类污垢为所有污垢中最难去除的成分。
现在市场销售的洗洁精对厨房油渍,特别是重度油污处理效果不理想。
发明内容
本发明的目的在于克服现有技术的缺陷,设计一种适用于厨房油渍清理,特别是重度油渍清理的含植物纤维的厨房油渍去除剂。
为了实现上述目的,本发明涉及的丝瓜纤维荷纤维野藤纤维复合去污剂,每百份中氢氧化钠1-5份,过氧乙酸5-10份,十八烷基二羟乙基甜菜碱4-9份,丁氧基乙醇10-16份,二甲苯磺酸钠3-8份,十二烷基硫酸钠3-8份,聚硅氧烷3-8份,抗氧剂0.2-0.8份,复合纤维10-15份,所述复合纤维包括丝瓜纤维、荷纤维和野藤纤维,丝瓜纤维、荷纤维和野藤纤维的质量分数比为1:1:0.5,余量为去离子水,上述份数为质量份数。
优选的是,所述抗氧化剂为亚硫酸钠、焦亚硫酸钠或二丁基苯酚中的一种。
优选的是,所述丝瓜纤维的制备方法为,将成熟的丝瓜晒干后,除去果肉和种子部分,只保留丝瓜网,将丝瓜网粉碎之后烘干、粉磨至300~1200目。
优选的是,所述荷纤维的制备方法为,将荷花杆烘干后破碎成直径为0.05~0.15mm粗的丝状,向丝状原料中喷洒质量浓度为10%的氢氧化钠水溶液,喷洒均匀后二次烘干、粉磨至300~1200目。
优选的是,所述野藤纤维的制备方法为,将野藤茎烘干后破碎成直径为0.05~0.15mm粗的丝状,烘干粉磨至300~1200目。
本发明的有益效果为:
(1)能够快速清楚厨房器具表面及周边存留的油性污垢,特别适用于抽油烟机、换气扇、燃气灶、瓷砖及墙壁等硬表面,清洗效果好;
(2)能够有效避免清洗过程中对器具表面造成划痕,使用环境友好。
具体实施方式
下面通过具体实施例对本发明作进一步描述:
实施例一
本实施例的植物纤维清洗剂,每百份中氢氧化钠1份,过氧乙酸5份,十八烷基二羟乙基甜菜碱4份,丁氧基乙醇10份,二甲苯磺酸钠3份,十二烷基硫酸钠3份,聚硅氧烷3份,抗氧剂0.2份,复合纤维10份,所述复合纤维包括丝瓜纤维、荷纤维和野藤纤维,丝瓜纤维、荷纤维和野藤纤维的质量分数比为1:1:0.5,余量为去离子水,上述份数为质量份数。
抗氧化剂为亚硫酸钠;丝瓜纤维的制备方法为,将成熟的丝瓜晒干后,除去果肉和种子部分,只保留丝瓜网,将丝瓜网粉碎之后烘干、粉磨至300目;荷纤维的制备方法为,将荷花杆烘干后破碎成直径为0.05~0.15mm粗的丝状,向丝状原料中喷洒质量浓度为10%的氢氧化钠水溶液,喷洒均匀后二次烘干、粉磨至300目;野藤纤维的制备方法为,将野藤茎烘干后破碎成直径为0.05~0.15mm粗的丝状,烘干粉磨至1200目。
实施例二
本实施例的植物纤维清洗剂,每百份中氢氧化钠5份,过氧乙酸10份,十八烷基二羟乙基甜菜碱9份,丁氧基乙醇16份,二甲苯磺酸钠8份,十二烷基硫酸钠8份,聚硅氧烷8份,抗氧剂0.8份,复合纤维15份,复合纤维包括丝瓜纤维、荷纤维和野藤纤维,丝瓜纤维、荷纤维和野藤纤维的质量分数比为1:1:0.5,余量为去离子水,上述份数为质量份数。
抗氧化剂为二丁基苯酚;丝瓜纤维的制备方法为,将成熟的丝瓜晒干后,除去果肉和种子部分,只保留丝瓜网,将丝瓜网粉碎之后烘干、粉磨至1200目;荷纤维的制备方法为,将荷花杆烘干后破碎成直径为0.05~0.15mm粗的丝状,向丝状原料中喷洒质量浓度为10%的氢氧化钠水溶液,喷洒均匀后二次烘干、粉磨至1200目;野藤纤维的制备方法为,将野藤茎烘干后破碎成直径为0.05~0.15mm粗的丝状,烘干粉磨至300目。

Claims (2)

  1. 一种丝瓜纤维荷纤维野藤纤维复合去污剂,其特征在于:每百份中氢氧化钠1-5份,过氧乙酸5-10份,十八烷基二羟乙基甜菜碱4-9份,丁氧基乙醇10-16份,二甲苯磺酸钠3-8份,十二烷基硫酸钠3-8份,聚硅氧烷3-8份,抗氧剂0.2-0.8份,复合纤维10-15份,所述复合纤维包括丝瓜纤维、荷纤维和野藤纤维,丝瓜纤维、荷纤维和野藤纤维的质量分数比为1:1:0.5,余量为去离子水,上述份数为质量份数;
    所述丝瓜纤维的制备方法为,将成熟的丝瓜晒干后,除去果肉和种子部分,只保留丝瓜网,将丝瓜网粉碎之后烘干、粉磨至300~1200目;
    所述荷纤维的制备方法为,将荷花杆烘干后破碎成直径为0.05~0.15mm粗的丝状,向丝状原料中喷洒质量浓度为10%的氢氧化钠水溶液,喷洒均匀后二次烘干、粉磨至300~1200目;
    所述野藤纤维的制备方法为,将野藤茎烘干后破碎成直径为0.05~0.15mm粗的丝状,烘干粉磨至300~1200目。
  2. 根据权利要求1所述的丝瓜纤维荷纤维野藤纤维复合去污剂,其特征在于:所述抗氧化剂为亚硫酸钠、焦亚硫酸钠或二丁基苯酚中的一种。
PCT/CN2016/111588 2016-12-22 2016-12-22 一种丝瓜纤维荷纤维野藤纤维复合去污剂 WO2018112853A1 (zh)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110693775A (zh) * 2019-09-10 2020-01-17 武汉创新欧派科技股份有限公司 一种抑菌可降解棉柔巾及其制备方法
WO2023148766A1 (en) * 2022-02-02 2023-08-10 Ramratan Dr Textile fiber extracted from stem of cayratia trifolia l. plant

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* Cited by examiner, † Cited by third party
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CN1616627A (zh) * 2004-09-30 2005-05-18 霍纪功 污垢清洁剂
CN102010804A (zh) * 2010-12-08 2011-04-13 胡志焕 以丝瓜为原料生产洗涤用品的方法
CN102894923A (zh) * 2012-11-13 2013-01-30 沈阳信达信息科技有限公司 一种厨房专用湿纸巾
CN104069041A (zh) * 2014-07-18 2014-10-01 张付浩 环保健康油污去除膏
CN104988516A (zh) * 2015-07-11 2015-10-21 渤海大学 一种水基型金属清洗剂及其制备方法

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1616627A (zh) * 2004-09-30 2005-05-18 霍纪功 污垢清洁剂
CN102010804A (zh) * 2010-12-08 2011-04-13 胡志焕 以丝瓜为原料生产洗涤用品的方法
CN102894923A (zh) * 2012-11-13 2013-01-30 沈阳信达信息科技有限公司 一种厨房专用湿纸巾
CN104069041A (zh) * 2014-07-18 2014-10-01 张付浩 环保健康油污去除膏
CN104988516A (zh) * 2015-07-11 2015-10-21 渤海大学 一种水基型金属清洗剂及其制备方法

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110693775A (zh) * 2019-09-10 2020-01-17 武汉创新欧派科技股份有限公司 一种抑菌可降解棉柔巾及其制备方法
WO2023148766A1 (en) * 2022-02-02 2023-08-10 Ramratan Dr Textile fiber extracted from stem of cayratia trifolia l. plant

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