Soap bar compositions for high moisture structuring and bonding
Incorporating hydroxyalkyl alkyl celluloses, psyllium, and sodium silicate in soap bars addresses the challenge of high water content retention, ensuring enhanced wear resistance and moisture resistance.
Patent Information
- Application Number
- JP2023511646
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2020-08-21
- Filing Date
- 2021-08-20
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2041-08-20
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Figure 0007791173000001 
Figure 0007791173000002
Abstract
Description
[Technical Field]
[0001] The present invention relates to a soap bar, particularly to a soap bar that is solid and comprises soap, water, a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, and an additive selected from the group consisting of psyllium, sodium silicate, and mixtures thereof. [Background technology]
[0002] Bar soaps remain popular with consumers for cleaning laundry, hard surfaces, and skin.
[0003] Finished milled soap bars are traditionally prepared from soap noodles having a total fatty matter (TFM) content of over 70% by weight, 10-14% by weight water, and other ingredients (e.g., titanium dioxide, surfactants, and fragrances). Currently, milled bars have a typical water content of about 8-15% by weight, while non-milled bars have a water content of 20-25% by weight.
[0004] Bar soaps of various compositions are known. Traditional bar soaps are formulated with various additives to provide the inherent benefits of soap. Traditional bar soaps contain at least one soap (i.e., monovalent sodium, potassium, ammonium, and alkanolammonium salts of monocarboxylic fatty acids) and, optionally, one or more adjuvants, such as moisturizing creams, humectants, antibacterial agents, water, fillers, polymers, processing aids, dyes, fragrances, etc., to enhance the cleansing and conditioning properties of the bar soap.
[0005] It is desirable to create bar soap compositions with high water content for ease of formulation and process efficiency. Nevertheless, maintaining a high water content in a formulation after processing to form a finished bar soap has been difficult.
[0006] Therefore, there remains a need for new soap bar formulations that allow for high water content in the finished bar soap while retaining other desirable soap bar properties such as wear rate. Summary of the Invention
[0007] The present invention provides a soap bar, the soap bar comprising 35 to <74.99 wt. % soap, based on the weight of the soap bar; >23 to 40 wt. % water, based on the weight of the soap bar; 0.01 to 5 wt. % cellulose derivative, based on the weight of the soap bar, selected from the group consisting of hydroxyalkyl alkyl celluloses; and an additive, based on the weight of the soap bar, selected from the group consisting of (a) 0.1 to 5 wt. % psyllium, (b) 2 to 18 wt. % sodium silicate, based on the weight of the soap bar, and (c) mixtures thereof, the soap bar being solid.
[0008] The present invention provides a soap bar comprising 35 to <74.89 wt. % soap, based on the weight of the soap bar; >23 to 40 wt. % water, based on the weight of the soap bar; 0.1 to 5 wt. % psyllium, based on the weight of the soap bar; 0.01 to 5 wt. % cellulose derivative selected from the group consisting of hydroxyalkyl alkyl cellulose, based on the weight of the soap bar; and 2 to 18 wt. % sodium silicate, based on the weight of the soap bar, wherein the soap bar is solid.
[0009] The present invention provides a soap bar comprising 35 to <74.89 wt. % soap, based on the weight of the soap bar; >23 to 40 wt. % water, based on the weight of the soap bar; 0.1 to 5 wt. % psyllium, based on the weight of the soap bar; 0.01 to 5 wt. % cellulose derivative, based on the weight of the soap bar, selected from the group consisting of hydroxyalkyl alkyl celluloses, where the cellulose derivative is selected from the group consisting of hydroxyethyl methyl cellulose, hydroxypropyl methyl cellulose, hydroxyethyl cellulose, and mixtures thereof; and 2 to 18 wt. % sodium silicate, based on the weight of the soap bar, wherein the soap bar is solid.
[0010] The present invention provides a soap bar comprising 35 to <74.88 wt. % soap, based on the weight of the soap bar; >23 to 40 wt. % water, based on the weight of the soap bar; 0.1 to 5 wt. % psyllium, based on the weight of the soap bar; 0.01 to 5 wt. % cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, where the cellulose derivative is hydroxyethyl methyl cellulose; 2 to 18 wt. % sodium silicate, based on the weight of the soap bar; and 0.01 to 3 wt. % processing aid, based on the weight of the soap bar, wherein the soap bar is solid.
[0011] The present invention provides a soap bar comprising 35 to <74.87% by weight of soap, based on the weight of the soap bar; >23 to 40% by weight of water, based on the weight of the soap bar; 0.1 to 5% by weight of psyllium, based on the weight of the soap bar; 0.01 to 5% by weight of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, where the cellulose derivative is hydroxyethyl methyl cellulose; 2 to 18% by weight of sodium silicate, based on the weight of the soap bar; 0.01 to 3% by weight of a processing aid, based on the weight of the soap bar; and 0.01 to 3% by weight of an optional ingredient selected from the group consisting of at least one of a fragrance and a dye, based on the weight of the soap bar, wherein the soap bar is solid.
[0012] The present invention provides a soap bar comprising 35 to <74.87% by weight of soap, based on the weight of the soap bar; >23 to 40% by weight of water, based on the weight of the soap bar; 0.1 to 5% by weight of psyllium, based on the weight of the soap bar; 0.01 to 5% by weight of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, where the cellulose derivative is hydroxyethyl methyl cellulose; 2 to 18% by weight of sodium silicate, based on the weight of the soap bar; 0.01 to 3% by weight of a processing aid, based on the weight of the soap bar; and 0.01 to 3% by weight of an optional ingredient selected from the group consisting of at least one of a fragrance and a dye, based on the weight of the soap bar; and a filler, wherein the soap bar is solid and the soap bar is a laundry soap bar.
[0013] The present invention provides a soap bar comprising 35 to <74.77% by weight of soap based on the weight of the soap bar, >23 to 40% by weight of water based on the weight of the soap bar, 0.1 to 5% by weight of psyllium based on the weight of the soap bar, and 0.01 to 5% by weight of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, where the cellulose derivative is hydroxyethyl methyl cellulose, 2 to 18% by weight of sodium silicate based on the weight of the soap bar, 0.01 to 3% by weight of a processing aid based on the weight of the soap bar, and 0.01 to 3% by weight of an optional ingredient selected from the group consisting of at least one of a fragrance and a dye based on the weight of the soap bar, and 0.1 to 5% by weight of a moisturizer based on the weight of the soap bar, wherein the soap bar is a solid, and the soap bar is a personal cleansing soap bar.
[0014] The present invention provides a soap bar comprising 50 to <74.76 wt. % soap, based on the weight of the soap bar; >23 to 40 wt. % water, based on the weight of the soap bar; 0.1 to 5 wt. % psyllium, based on the weight of the soap bar; 0.01 to 5 wt. % cellulose derivative selected from the group consisting of hydroxyalkyl alkyl cellulose, based on the weight of the soap bar, where the cellulose derivative is hydroxyethyl methyl cellulose; and 2 to 5 wt. % water, based on the weight of the soap bar. The present invention provides a soap bar comprising: up to 18% by weight of sodium silicate; 0.01 to 3% by weight of a processing aid, based on the weight of the soap bar; 0.01 to 3% by weight of an optional ingredient selected from the group consisting of at least one of a fragrance and a dye, based on the weight of the soap bar; 0.1 to 5% by weight of a moisturizer, based on the weight of the soap bar; and 0.01 to 0.5% by weight of a chelating agent, based on the weight of the soap bar, wherein the soap bar is solid and is a personal cleansing soap bar.
[0015] The present invention provides a method of making a soap bar, the method comprising: providing soap; providing psyllium; providing a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl cellulose; providing sodium silicate; providing water; mixing the soap, psyllium, hydroxyalkyl alkyl cellulose, sodium silicate, and water to form a combination; milling the combination; extruding the milled combination; and die-cutting the extruded material to provide a soap bar.
[0016] The present invention provides a method of making a soap bar, the method including: providing soap; providing psyllium; providing a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl cellulose; providing sodium silicate; providing water; providing a filler; providing a fragrance; providing a processing aid; mixing the soap, psyllium, hydroxyalkyl alkyl cellulose, sodium silicate, filler, fragrance, titanium dioxide, and water to form a combination; milling the combination; extruding the milled combination; and die-cutting the extruded material to provide a soap bar. DETAILED DESCRIPTION OF THE INVENTION
[0017] The inventors have surprisingly found that soap bars containing a synergistic combination of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses and at least one of psyllium and sodium silicate facilitate high water content (>23% by weight) in the finished soap bar while exhibiting enhanced wear resistance (preferably, the finished soap bar exhibits long-term water retention, and the finished soap bar resists cracking due to moisture loss for up to one year).
[0018] Unless otherwise indicated, ratios, percentages, parts, etc. are by weight.
[0019] As used herein, unless otherwise indicated, the terms "weight average molecular weight" and "Mw" are used interchangeably to refer to weight average molecular weight measured in conventional manner using gel permeation chromatography (GPC) and conventional standards such as polyethylene glycol standards. The GPC technique is discussed in detail in "Modem Size Exclusion Chromatography," W.W. Yau, J.J. Kirkland, D.D.Bly; Wiley-Interscience, 1979, and in "A Guide to Materials Characterization and Chemical Analysis," J.P. Sibilia; VCH, 1988, pp. 81-84. Weight average molecular weights are reported herein in units of Daltons.
[0020] Preferably, the soap bar of the present invention comprises 35 to <74.99 wt. % (preferably 40 to 70 wt. %, more preferably 45 to 68 wt. %, most preferably 50 to 65 wt. %) soap based on the weight of the soap bar, >23 to 40 wt. % (preferably 25.5 to 40 wt. %, more preferably 25.75 to 37.5 wt. %, most preferably 26 to 32 wt. %) water based on the weight of the soap bar, and 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, most preferably 0.3 to 4 wt. %) cellulose selected from the group consisting of hydroxyalkyl alkyl celluloses based on the weight of the soap bar. and an additive selected from the group consisting of (a) 0.1 to 5 wt % (preferably 0.2 to 4 wt %, more preferably 0.25 to 3.5 wt %, and most preferably 0.4 to 3.2 wt %) of psyllium, (b) 2 to 18 wt % (preferably 2.25 to 10 wt %, more preferably 2.5 to 7.5 wt %, and most preferably 3 to 5 wt %) of sodium silicate, based on the weight of the soap bar, and (c) mixtures thereof, wherein the soap bar is solid (i.e., the soap bar does not appreciably change shape when placed on a rigid surface and left at room temperature of 22°C and a pressure of 101.4 kPa for 24 hours).
[0021] Preferably, the soap bar of the present invention comprises 35 to <74.89 wt. % (preferably 40 to 70 wt. %, more preferably 45 to 68 wt. %, most preferably 50 to 65 wt. %) soap based on the weight of the soap bar, >23 to 40 wt. % (preferably 25.5 to 40 wt. %, more preferably 25.75 to 37.5 wt. %, most preferably 26 to 32 wt. %) water based on the weight of the soap bar, and 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, most preferably 0.3 to 4 wt. %) hydroxyalkyl alkyl cellulose based on the weight of the soap bar. and 0.1 to 5% by weight (preferably 0.2 to 4% by weight, more preferably 0.25 to 3.5% by weight, and most preferably 0.4 to 3.2% by weight) of psyllium based on the weight of the soap bar, and 2 to 18% by weight (preferably 2.25 to 10% by weight, more preferably 2.5 to 7.5% by weight, and most preferably 3 to 5% by weight) of sodium silicate based on the weight of the soap bar, wherein the soap bar is solid (i.e., the soap bar does not appreciably change shape when placed on a rigid surface and left at room temperature of 22°C and a pressure of 101.4 kPa for 24 hours).
[0022] Preferably, the soap bar of the present invention comprises 35 to <74.99 wt% (preferably 40 to 70 wt%, more preferably 45 to 68 wt%, most preferably 50 to 65 wt%) of soap based on the weight of the soap bar. More preferably, the soap bar of the present invention comprises 35 to <74.99 wt% (preferably 40 to 70 wt%, more preferably 45 to 68 wt%, most preferably 50 to 65 wt%) of soap based on the weight of the soap bar, the soap being selected from the group consisting of monovalent salts of monocarboxylic fatty acids having counterions selected from the group consisting of sodium, potassium, ammonium, and alkanolammonium ions. Even more preferably, the soap bars of the present invention comprise 35 to <74.99 wt. % (preferably 40 to 70 wt. %, more preferably 45 to 68 wt. %, and most preferably 50 to 65 wt. %) soap, based on the weight of the soap bar, which is an alkali (preferably sodium) salt of a fatty acid from at least one of animal fats and vegetable oils. Even more preferably, the soap bars of the present invention comprise 35 to <74.99 wt. % (preferably 40 to 70 wt. %, more preferably 45 to 68 wt. %, and most preferably 50 to 65 wt. %) soap, based on the weight of the soap bar, which is an alkali (preferably sodium) salt of a fatty acid from at least one of palm oil, palm kernel oil, castor oil, rice bran oil, sunflower oil, coconut oil, soybean oil, peanut oil, tallow, lard, fish oil, and blends thereof. Even more preferably, the soap bar of the present invention comprises 35 to <74.99 wt. % (preferably 40 to 70 wt. %, more preferably 45 to 68 wt. %, most preferably 50 to 65 wt. %) soap, based on the weight of the soap bar, which soap is an alkali (preferably sodium) salt of a fatty acid from a 40:60 to 97:3 blend of oils and fats (preferably the blend of oils and fats is selected from a blend of palm and palm kernel oils and a blend of palm and coconut kernel oils).Most preferably, the soap bars of the present invention comprise 35 to <74.99 wt. % (preferably 40 to 70 wt. %, more preferably 45 to 68 wt. %, most preferably 50 to 65 wt. %) soap, based on the weight of the soap bar, which soap is an alkali (preferably sodium) salt of a fatty acid from a 50:50, 60:40, 70:30, 80:20, or 90:10 (preferably 80:20) blend of palm oil and palm kernel oil.
[0023] Preferably, the soap bars of the present invention comprise >23-40% by weight (preferably 25.5-40% by weight, more preferably 25.75-37.5% by weight, and most preferably 26-32% by weight) of water, based on the weight of the soap bar. More preferably, the soap bars of the present invention comprise >23-40% by weight (preferably 25.5-40% by weight, more preferably 25.75-37.5% by weight, and most preferably 26-32% by weight) of water, based on the weight of the soap bar, and the water is at least one of distilled water and deionized water. Most preferably, the soap bars of the present invention comprise >23-40% by weight (preferably 25.5-40% by weight, more preferably 25.75-37.5% by weight, and most preferably 26-32% by weight) of water, based on the weight of the soap bar, and the water is deionized water.
[0024] Preferably, the soap bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, hydroxyalkyl celluloses, and mixtures thereof, based on the weight of the soap bar. More preferably, the soap bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl celluloses being hydroxy-(C 1~4 ) Alkyl C 1~4Even more preferably, the soap bar of the present invention comprises 0.01 to 5% by weight (preferably 0.1 to 4.75% by weight, more preferably 0.25 to 4.5% by weight, and most preferably 0.3 to 4% by weight) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl cellulose being selected from the group consisting of hydroxyethyl methyl cellulose, hydroxypropyl methyl cellulose, and mixtures thereof. Most preferably, the soap bar of the present invention comprises 0.01 to 5% by weight (preferably 0.1 to 4.75% by weight, more preferably 0.25 to 4.5% by weight, and most preferably 0.3 to 4% by weight) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl cellulose being hydroxyethyl methyl cellulose.
[0025] Preferably, the soap bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl celluloses having a weight average molecular weight M of 25,000 to 4,000,000 daltons (preferably 25,000 to 1,500,000 daltons, more preferably 25,000 to 500,000 daltons, and most preferably 25,000 to 150,000 daltons). WMore preferably, the soap bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl celluloses having a weight average molecular weight M of 25,000 to 4,000,000 daltons (preferably 25,000 to 1,500,000 daltons, more preferably 25,000 to 500,000 daltons, and most preferably 25,000 to 150,000 daltons). W wherein the hydroxyalkyl alkyl cellulose is selected from hydroxyethyl methyl cellulose, hydroxypropyl methyl cellulose, and mixtures thereof. Most preferably, the soap bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl cellulose having a weight average molecular weight M of 25,000 to 4,000,000 daltons (preferably 25,000 to 1,500,000 daltons, more preferably 25,000 to 500,000 daltons, and most preferably 25,000 to 150,000 daltons). W and the hydroxyalkyl alkyl cellulose is hydroxyethyl methyl cellulose.
[0026] Preferably, the soap bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, which are cellulose ethers having alkyl and hydroxyalkyl derivatives with an average number of substituents per anhydroglucose unit of 1 to 3 (preferably 1.5 to 3, more preferably 2 to 3). Preferably, the hydroxyalkyl group has 1 to 4 carbon atoms (preferably 1 to 3 carbon atoms, more preferably 2 to 3 carbon atoms, and most preferably 2 carbon atoms). Preferably, the alkyl group has 1 to 4 carbon atoms (preferably 1 to 3 carbon atoms, more preferably 1 to 2 carbon atoms, and most preferably 1 carbon atom).
[0027] Preferably, the soap bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl celluloses having a substantially linear cellulose backbone. As used herein and in the appended claims, the term "substantially linear" means that 97 to 100 wt. % (preferably 99 to 100 wt. %) of all glucose units in the hydroxyalkyl alkyl cellulose are present in the main chain of the cellulose backbone.
[0028] Preferably, the soap bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl celluloses having a substantially β-1,4 bonded backbone. As used herein and in the appended claims, the term "substantially β-1,4 bonded backbone" means that 97 to 100 wt. % (preferably 99 to 100 wt. %) of the glucose units in the hydroxyalkyl alkyl cellulose are joined to each other via β-1,4 bonds. When less than 100% by weight of the glucose units are linked to each other by β-1,4 linkages, the remaining glucose units may be linked in a variety of ways, including, for example, β-1,2, β-1,3, β-1,6, β-2,3, α-1,2, α-1,3, α-1,4, α-1,6, and α-2,3 linkages, and mixtures thereof.
[0029] Preferably, the soap bar of the present invention contains 0.1 to 5% by weight (preferably 0.2 to 4% by weight, more preferably 0.25 to 3.5% by weight, most preferably 0.4 to 3.2% by weight) of psyllium based on the weight of the soap bar. Psyllium is commercially available as particles or in powder form. Psyllium is a branched, neutral arabinoxylan having primarily (1→4) and (1→3) xylopyranose backbones, with side chains consisting of arabinose and xylose, which may be O-3 and / or O-4. It is attached to the main chain by an O-2 bond. Psyllium can be extracted from the husk (husk or husk) of the plant Psyllium (Plantago) or from psyllium seeds. Psyllium is composed primarily of arabinose (22% by weight), xylose (57% by weight), and uronic acids (10-15% by weight), with small amounts of galactose, rhamnose, glucose, and mannose. Psyllium is a highly branched, acidic arabinoxylan with a high molecular weight (approximately 1,500,000 daltons).
[0030] Preferably, the soap bar of the present invention comprises 2 to 18 wt. % (preferably 2.25 to 10 wt. %, more preferably 2.5 to 7.5 wt. %, most preferably 3 to 5 wt. %) sodium silicate based on the weight of the soap bar.
[0031] Preferably, the soap bar of the present invention comprises a blend of psyllium and a cellulose derivative in a weight ratio of 1:9 to 9:1 (preferably 1:5 to 5:1, more preferably 1:4 to 4:1).
[0032] Preferably, the soap bars of the present invention are solid. As used herein and in the appended claims with respect to soap bars, the term "solid" means that the soap bar will not appreciably change shape when placed on a rigid surface and allowed to rest on the rigid surface at room temperature (22°C) and pressure (101.4 kPa) for 24 hours.
[0033] Preferably, the soap bars of the present invention have an attrition rate of 0.5 to 9% by weight (more preferably 1 to 8% by weight), where attrition rate is the weight loss of the soap bar after 4 days of use as illustrated in the Examples.
[0034] Preferably, the soap bars of the present invention further comprise optional ingredients. More preferably, the soap bars of the present invention further comprise optional ingredients selected from the group consisting of humectants, processing aids (e.g., titanium dioxide), preservatives (e.g., benzoic acid, sorbic acid, phenoxyethanol), antioxidants (e.g., butylated hydroxytoluene), viscosity modifiers, polymers, free fatty acids, foam stabilizers, foam boosters, fillers, chelating agents, antimicrobial agents (e.g., biocides), pH adjusters, pH buffers, fragrances / fragrances, salts, colorants (e.g., dyes), and mixtures thereof. Most preferably, the soap bars of the present invention further comprise optional ingredients selected from the group consisting of processing aids (e.g., titanium dioxide), fragrances, colorants, and mixtures thereof.
[0035] Preferably, the soap bar of the present invention further comprises a humectant. More preferably, the soap bar of the present invention further comprises 0.1 to 5 wt. % (preferably 0.25 to 2 wt. %, more preferably 0.5 to 1.5 wt. %, and most preferably 0.75 to 1.25 wt. %) of a humectant based on the weight of the soap bar. Even more preferably, the soap bar of the present invention further comprises 0.1 to 5 wt. % (preferably 0.25 to 2 wt. %, more preferably 0.5 to 1.5 wt. %, and most preferably 0.75 to 1.25 wt. %) of a humectant based on the weight of the soap bar, the humectant being a polyhydric alcohol selected from the group consisting of glycerin, sorbitol, propylene glycol, butylene glycol, hexylene glycol, ethoxylated glucose, 1,2-hexanediol, hexanetriol, dipropylene glycol, erythritol, trehalose, diglycerin, xylitol, maltitol, maltose, glucose, fructose, and mixtures thereof. Even more preferably, the soap bars of the present invention further comprise 0.1 to 5% by weight (preferably 0.25 to 2% by weight, more preferably 0.5 to 1.5% by weight, and most preferably 0.75 to 1.25% by weight) of a humectant, based on the weight of the soap bar, the humectant comprising glycerin. Most preferably, the soap bars of the present invention further comprise 0.1 to 5% by weight (preferably 0.25 to 2% by weight, more preferably 0.5 to 1.5% by weight, and most preferably 0.75 to 1.25% by weight) of a humectant, based on the weight of the soap bar, the humectant being glycerin.
[0036] Preferably, the soap bar of the present invention further comprises a processing aid. More preferably, the soap bar of the present invention further comprises 0.05 to 2 wt. % (preferably 0.1 to 1.5 wt. %, more preferably 0.25 to 1.25 wt. %, and most preferably 0.5 to 1 wt. %) of a processing aid based on the weight of the soap bar. Even more preferably, the soap bar of the present invention further comprises 0.05 to 2 wt. % (preferably 0.1 to 1.5 wt. %, more preferably 0.25 to 1.25 wt. %, and most preferably 0.5 to 1 wt. %) of a processing aid based on the weight of the soap bar, the processing aid being an inorganic powder material selected from the group consisting of talc, calcite, kaolin, silicon dioxide, titanium dioxide, diatomaceous earth, and mixtures thereof. Even more preferably, the soap bars of the present invention further comprise 0.05 to 2% by weight (preferably 0.1 to 1.5% by weight, more preferably 0.25 to 1.25% by weight, and most preferably 0.5 to 1% by weight) of a processing aid, based on the weight of the soap bar, selected from the group consisting of talc, calcite, titanium dioxide, and mixtures thereof. Most preferably, the soap bars of the present invention further comprise 0.05 to 2% by weight (preferably 0.1 to 1.5% by weight, more preferably 0.25 to 1.25% by weight, and most preferably 0.5 to 1% by weight) of a processing aid, based on the weight of the soap bar, the processing aid comprising titanium dioxide.
[0037] Preferably, the soap bar of the present invention further comprises a chelating agent. More preferably, the soap bar of the present invention further comprises 0.01 to 0.5 wt. % (preferably 0.05 to 0.3 wt. %, more preferably 0.075 to 0.25 wt. %, and most preferably 0.1 to 0.2 wt. %) of a chelating agent based on the weight of the soap bar. Even more preferably, the soap bar of the present invention further comprises 0.01 to 0.5 wt. % (preferably 0.05 to 0.3 wt. %, more preferably 0.075 to 0.25 wt. %, and most preferably 0.1 to 0.2 wt. %) of a chelating agent based on the weight of the soap bar, the chelating agent being selected from the group consisting of diethylenetriaminepentaacetic acid, 1-hydroxyethane-1,1-diphosphonic acid, citric acid, ethylenediaminetetraacetic acid (EDTA), salts thereof, and mixtures thereof. Even more preferably, the soap bar of the present invention further comprises 0.01 to 0.5 wt. % (preferably 0.05 to 0.3 wt. %, more preferably 0.075 to 0.25 wt. %, and most preferably 0.1 to 0.2 wt. %) of a chelating agent selected from the group consisting of diethylenetriaminepentaacetic acid pentasodium salt, 1-hydroxyethane-1,1-diphosphonic acid disodium salt, citric acid, ethylenediaminetetraacetic acid (EDTA), ethylenediaminetetraacetic acid tetrasodium salt, and mixtures thereof. Most preferably, the soap bar of the present invention further comprises 0.01 to 0.5 wt. % (preferably 0.05 to 0.3 wt. %, more preferably 0.075 to 0.25 wt. %, and most preferably 0.1 to 0.2 wt. %) of a chelating agent based on the weight of the soap bar, the chelating agent being ethylenediaminetetraacetic acid tetrasodium salt.
[0038] Preferably, the soap bar of the present invention further comprises a fragrance. More preferably, the soap bar of the present invention further comprises 0.01 to 3 wt % (preferably 0.1 to 2 wt %, more preferably 0.5 to 1.75 wt %, most preferably 0.75 to 1.25 wt %) of fragrance based on the weight of the soap bar.
[0039] Preferably, the soap bar of the present invention further comprises a colorant, and more preferably, the soap bar of the present invention further comprises 0.01 to 3 wt % (preferably 0.1 to 2 wt %, more preferably 0.5 to 1.75 wt %, most preferably 0.75 to 1.25 wt %) of a colorant based on the weight of the soap bar.
[0040] Preferably, the soap bar of the present invention comprises 35 to <74.89 wt. % (preferably 40 to 70 wt. %, more preferably 45 to 68 wt. %, most preferably 50 to 65 wt. %) soap based on the weight of the soap bar; >23 to 40 wt. % (preferably 25.5 to 40 wt. %, more preferably 25.75 to 37.5 wt. %, most preferably 26 to 32 wt. %) water based on the weight of the soap bar; 0.1 to 5 wt. % (preferably 0.2 to 4 wt. %, more preferably 0.25 to 3.5 wt. %, most preferably 0.4 to 3.2 wt. %) psyllium based on the weight of the soap bar; 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, most preferably 0.3 to 4 wt. %) cellulose derivative selected from the group consisting of hydroxyalkyl alkyl cellulose based on the weight of the soap bar; Based on the soap bar weight, the soap bar further comprises 2 to 18 wt. % (preferably 2.25 to 10 wt. %, more preferably 2.5 to 7.5 wt. %, and most preferably 3 to 5 wt. %) of sodium silicate, and optionally a processing aid (preferably 0.01 to 3 wt. % (more preferably 0.1 to 2 wt. %, even more preferably 0.25 to 1.5 wt. %, and most preferably 0.5 to 1.0 wt. %) of a processing aid (preferably titanium dioxide)), and optionally an optional ingredient selected from at least one of a fragrance and a colorant (preferably 0.01 to 3 wt. % (more preferably 0.1 to 2 wt. %, even more preferably 0.25 to 1.5 wt. %, and most preferably 0.5 to 1.0 wt. %) of an optional ingredient selected from at least one of a fragrance and a colorant), wherein the soap bar is solid and the soap bar is a laundry soap bar.More preferably, the soap bar of the present invention comprises 35 to <74.89% by weight (preferably 40 to 70%, more preferably 45 to 68%, most preferably 50 to 65%) soap by weight of the soap bar, >23 to 40% by weight (preferably 25.5 to 40%, more preferably 25.75 to 37.5%, most preferably 26 to 32%) water by weight of the soap bar, 0.1 to 5% by weight (preferably 0.2 to 4%, more preferably 0.25 to 3.5%, most preferably 0.4 to 3.2%) psyllium by weight of the soap bar, and 0.01 to 5% by weight (preferably 0.1 to 4.75%, more preferably 0.25 to 4.5%, most preferably 0.3 to 4%) hydroxyalkyl alkyl cellulose by weight of the soap bar. a cellulose derivative, the cellulose derivative being hydroxyethyl methyl cellulose; 2 to 18% by weight (preferably 2.25 to 10% by weight, more preferably 2.5 to 7.5% by weight, and most preferably 3 to 5% by weight) of sodium silicate, 0.01 to 3% by weight (preferably 0.1 to 2% by weight, more preferably 0.25 to 1.5% by weight, and most preferably 0.5 to 1.0% by weight) of a processing aid (preferably titanium dioxide), based on the weight of the soap bar; and 0.01 to 3% by weight (preferably 0.1 to 2% by weight, more preferably 0.25 to 1.5% by weight, and most preferably 0.5 to 1.0% by weight) of an optional ingredient selected from at least one of a fragrance and a colorant, based on the weight of the soap bar; wherein the soap bar is a solid, and the soap bar is a laundry soap bar.
[0041] Preferably, the soap bar of the present invention comprises 35 to <74.89% by weight (preferably 40 to 70% by weight, more preferably 45 to 68% by weight, most preferably 50 to 65% by weight) of soap, >23 to 40% by weight (preferably 25.5 to 40% by weight, more preferably 25.75 to 37.5% by weight, most preferably 26 to 32% by weight) of water, based on the weight of the soap bar, and 0.1 to 5% by weight (preferably 0.2 to 4% by weight, more preferably 0.25 to 3.5% by weight, most preferably 0.4 to 3.5% by weight) of stearate, based on the weight of the soap bar. 0.01 to 5 wt. % (preferably 0.1 to 4.75 wt. %, more preferably 0.25 to 4.5 wt. %, and most preferably 0.3 to 4 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the cellulose derivative being hydroxyethyl methyl cellulose, and 2 to 18 wt. % (preferably 2.25 to 10 wt. %, more preferably 2.5 to 7.5 wt. %, and most preferably 3 to 5 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the cellulose derivative being hydroxyethyl methyl cellulose, based on the weight of the soap bar. ) sodium silicate, and optionally a processing aid (preferably 0.01 to 3 wt. % (more preferably 0.1 to 2 wt. %, even more preferably 0.25 to 1.5 wt. %, and most preferably 0.5 to 1.0 wt. %) of a processing aid (preferably titanium dioxide)), and optionally an optional ingredient selected from at least one of a fragrance and a colorant (preferably 0.01 to 3 wt. % (more preferably 0.1 to 2 wt. %, even more preferably 0.25 to 1.5 wt. %, and most preferably 0.5 to 1.0 wt. %) based on the weight of the soap bar. and optionally a moisturizing agent (preferably 0.1 to 5 wt. % (more preferably 0.25 to 2 wt. %, even more preferably 0.5 to 1.5 wt. %, and most preferably 0.75 to 1.25 wt. %) of moisturizing agent based on the weight of the soap bar), and optionally a chelating agent (preferably 0.01 to 0.5 wt. % (more preferably 0.05 to 0.3 wt. %, even more preferably 0.075 to 0.25 wt. %, and most preferably 0.1 to 0.5 wt. %) of moisturizing agent based on the weight of the soap bar).and 2% by weight of a chelating agent), the soap bar being solid, and the soap bar being a personal cleansing soap bar. More preferably, the soap bar of the present invention comprises 35 to <74.89% by weight (preferably 40 to 70% by weight, more preferably 45 to 68% by weight, and most preferably 50 to 65% by weight) of soap based on the weight of the soap bar, >23 to 40% by weight (preferably 25.5 to 40% by weight, more preferably 25.75 to 37.5% by weight, and most preferably 26 to 32% by weight) of water based on the weight of the soap bar, and 0.1 to 5% by weight (preferably 0.2 to 4% by weight, and more preferably 0.25 to 3. 5% by weight, most preferably 0.4 to 3.2% by weight, of psyllium, 0.01 to 5% by weight (preferably 0.1 to 4.75% by weight, more preferably 0.25 to 4.5% by weight, most preferably 0.3 to 4% by weight) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the cellulose derivative being hydroxyethyl methyl cellulose, and 2 to 18% by weight (preferably 2.25 to 10% by weight, More preferably, 2.5 to 7.5% by weight, most preferably 3 to 5% by weight, of sodium silicate; 0.01 to 3% by weight (preferably 0.1 to 2% by weight, more preferably 0.25 to 1.5% by weight, most preferably 0.5 to 1.0% by weight) of a processing aid (preferably titanium dioxide) based on the weight of the soap bar; and 0.01 to 3% by weight (preferably 0.1 to 2% by weight, more preferably 0.25 to 1.5% by weight, most preferably 0.5 to 1.0% by weight) of fragrances and colorants based on the weight of the soap bar. and 0.1 to 5 wt % (preferably 0.25 to 2 wt %, more preferably 0.5 to 1.5 wt %, most preferably 0.75 to 1.25 wt %) of a moisturizing agent and 0.01 to 0.5 wt % (preferably 0.05 to 0.3 wt %, more preferably 0.075 to 0.25 wt %, most preferably 0.1 to 0.2 wt %) of a chelating agent, based on the weight of the soap bar, wherein the soap bar is solid and is a personal cleansing soap bar.
[0042] Preferably, the method of making the soap bar of the present invention includes providing soap (preferably, the soap is provided as soap noodles, more preferably, the soap is provided as soap noodles comprising an aqueous mixture of at least 70% by weight total fatty material (TFM) and 10-15% by weight water), providing psyllium, providing a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses (preferably, the hydroxyalkyl alkyl cellulose is hydroxyethyl methyl cellulose), providing sodium silicate, providing water, mixing the soap, psyllium, hydroxyalkyl alkyl cellulose, sodium silicate, and water to form a combination (preferably, heating the soap, psyllium, hydroxyalkyl alkyl cellulose, sodium silicate, and water while mixing to form the combination), milling the combination, extruding the milled combination, and die-cutting the extruded material to provide the soap bar.More preferably, the method of making the soap bar of the present invention comprises providing soap (preferably, the soap is provided as soap noodles, more preferably, the soap is provided as soap noodles comprising an aqueous mixture of at least 70% by weight total fat matter (TFM) and 10-15% by weight water), providing psyllium, providing a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses (preferably, the hydroxyalkyl alkyl cellulose is hydroxyethyl methyl cellulose), providing sodium silicate, providing water, providing a fragrance, and providing a processing aid; mixing the soap, psyllium, hydroxyalkyl alkyl cellulose, sodium silicate, fragrance, processing aid, and water to form a combination (preferably, heating the soap, psyllium, hydroxyalkyl alkyl cellulose, sodium silicate, fragrance, processing aid, and water while mixing to form a combination), milling the combination, extruding the milled combination, and die-cutting the extruded material to provide the soap bar.
[0043] Some embodiments of the present invention will now be described in detail in the following examples.
[0044] Comparative Examples C1-C2 and Examples 1-10: Soap Bars Soap bars were prepared for each of Comparative Examples C1-C2 and Examples 1-10, each having the composition listed in Table 1. Soap noodles were ground in a Sigma mixer and mixed with the other ingredients in the amounts listed in Table 1. All ingredients were added sequentially, with no specific order, except for the fragrance, which was added last. The entire mass was then transferred from the Sigma mixer to a triple roll mill, where the mixture was ground. The entire process was carried out under ambient laboratory conditions. The mass received from the roll mill was then placed in a screw masher and extruded at a temperature of 45-65°C. The extruded mass was then cut into small pieces and punched with a soap die to obtain the final soap bar.
[0045] [Table 1]
[0046] Soap bar wear rate Trained panelists evaluated each of the soap bars prepared according to Comparative Example C1 and Examples 1-10 to assess wear rate as the percent weight loss from the soap bar after four days of use using the following test protocol: A 20 cm x 15 cm piece of water-soaked poplin cotton cloth was taken. The soap bar was first weighed (each soap bar composition was tested in triplicate). The bar was rubbed 10 times with the top surface of the bar facing the cloth. Each rub was one horizontal stroke. Using a similar method, the bar was rubbed 10 times with the bottom surface on a different cloth kept under the same conditions. A total of 20 rubs per soap bar was performed. The soap bar was allowed to sit for 30 minutes, and then the procedure was repeated. This process was repeated five times per day for each soap bar (i.e., 100 rubs per soap bar per day). The soap bar was then kept in a Petri dish in a tray containing some water, covered overnight with paraffin film just to allow for humidity. The next day, the process was repeated (i.e., 100 rubs per soap bar), and the soap bars were then stored as described. This continued for four consecutive days. On the fifth day, the soap bars were weighed and the average wear rate is reported in Table 2.
[0047] [Table 2]
Claims
1. A soap bar, 50 to 65 weight percent soap based on the weight of the soap bar; 26 to 32 weight percent water based on the weight of the soap bar; 0.25 to 4.5 wt. %, based on the weight of the soap bar, of a cellulose derivative selected from the group consisting of hydroxyethyl methylcellulose, hydroxypropyl methylcellulose, and mixtures thereof; an additive which is a mixture of 0.4 to 3.2% by weight of psyllium based on the weight of the soap bar and 3 to 5% by weight of sodium silicate based on the weight of the soap bar; Including, A solid soap bar.
2. 10. The soap bar of claim 1, further comprising 0.01 to 3 weight percent, based on the weight of the soap bar, of a processing aid selected from the group consisting of talc, calcite, kaolin, silicon dioxide, titanium dioxide, diatomaceous earth, and mixtures thereof.
3. 3. The soap bar of claim 2, further comprising 0.01 to 3% by weight, based on the weight of the soap bar, of an optional ingredient selected from the group consisting of at least one of a fragrance and a dye.
4. 4. The soap bar of claim 3, further comprising a filler, said soap bar being a laundry soap bar.
5. further comprising 0.1 to 5% by weight of a humectant based on the weight of the soap bar; the humectant is selected from the group consisting of glycerin, sorbitol, propylene glycol, butylene glycol, hexylene glycol, ethoxylated glucose, 1,2-hexanediol, hexanetriol, dipropylene glycol, erythritol, trehalose, diglycerin, xylitol, maltitol, maltose, glucose, fructose, and mixtures thereof; 4. The soap bar of claim 3, wherein said soap bar is a personal cleansing soap bar.
6. 6. The soap bar of claim 5 further comprising 0.01 to 0.5% by weight of a chelating agent, based on the weight of the soap bar.
7. 1. A method of making a soap bar, comprising: Providing soap and Providing psyllium; providing a cellulose derivative selected from the group consisting of hydroxyethyl methylcellulose, hydroxypropyl methylcellulose, and mixtures thereof; Providing sodium silicate; Providing water and mixing the soap, the psyllium, the cellulose derivative, the sodium silicate, and the water to form a combination; milling the combination; extruding the milled combination; stamping the extruded material to provide the soap bar; Including, The soap bar 50 to 65% by weight of said soap based on the weight of said soap bar; 26 to 32 weight percent of said water based on the weight of said soap bar; 0.25 to 4.5% by weight of the cellulose derivative based on the weight of the soap bar; 0.4 to 3.2% by weight of said psyllium based on the weight of said soap bar; 3 to 5% by weight of said sodium silicate based on the weight of said soap bar; A method comprising:
8. Providing a fragrance; providing a processing aid selected from the group consisting of talc, calcite, kaolin, silicon dioxide, titanium dioxide, diatomaceous earth, and mixtures thereof; Further comprising:
8. The method of claim 7, wherein the fragrance and the processing aid are mixed with the soap, the psyllium, the cellulose derivative, the sodium silicate, and the water to form the combination.
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