Non-soap detergent bar composition
A non-soap detergent bar composition with detersive surfactants, builders, psyllium, and sodium silicate addresses the need for environmentally friendly bars with enhanced wear resistance and water retention, overcoming the limitations of traditional phosphate-based detergents.
Patent Information
- Application Number
- JP2023511856
- 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
AI Technical Summary
There is a need for non-soap detergent bars that are environmentally friendly, with acceptable in-use wear rates, hardness, durability, quick drying, and low smear, while reducing the use of sodium tripolyphosphate (STPP) due to environmental concerns.
A non-soap detergent bar composition comprising a detersive surfactant, a builder, psyllium, a cellulose derivative, and sodium silicate, with a method of mixing and extruding these components to form a solid bar.
The composition exhibits enhanced wear resistance and high water content, maintaining bar integrity and environmental compatibility, with improved properties like long-term water retention and resistance to cracking.
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Abstract
Description
[Technical Field]
[0001] The present invention relates to a non-soap detergent bar. Specifically, the present invention relates to a non-soap detergent bar that is solid and includes a detersive surfactant, a builder, psyllium, a cellulose derivative, a filler including sodium silicate, and water.
[0002] Bar soaps remain popular with consumers for cleaning laundry, hard surfaces, and skin.
[0003] Laundry detergent bars are used in many places to clean clothes. Technological developments in the field of laundry detergent bars include formulating laundry detergent bars that are effective in cleaning clothes, have acceptable foaming characteristics in both hot and cold water, and in hard and soft water, and have acceptable in-use wear rates, hardness, durability, feel, and are low slough and fast drying.
[0004] Sodium tripolyphosphate (STPP) has traditionally been considered a good builder and structurant for laundry bars. STPP helps provide good bar cohesion and promotes extended wear time. STPP also contributes to the bar's alkalinity, anti-redeposition, and cleaning efficiency. Nevertheless, high concentrations of STPP are considered undesirable for environmental reasons; specifically, phosphates can cause eutrophication in the environment. Therefore, there is a need to reduce the amount of STPP used in the production of detergent bars, including laundry bars.
[0005] Polycarboxylates have been found to be a substitute for STPP. Although polycarboxylates are good anti-redeposition and sequestrants, their use in laundry bars has been limited because the addition of liquid is thought to make it difficult to form laundry bars by extrusion. WO 00 / 040691 discloses phosphate-free laundry bar compositions that incorporate polycarboxylates into the composition. However, the problem with WO 00 / 040691 is that this reference does not disclose phosphate-free laundry detergents, but only those that are "substantially free" of phosphates.
[0006] Thus, there remains a need for non-soap detergent bars that have acceptable in-use wear rates, hardness, durability, quick drying, low smear, and are more environmentally friendly.
[0007] The present invention provides a non-soap detergent bar, the non-soap detergent bar being solid and comprising: a detersive surfactant; a builder; a cellulose derivative selected from the group consisting of psyllium and a hydroxyalkyl alkyl cellulose; a filler comprising sodium silicate; and water.
[0008] The present invention provides a method of making a non-soap detergent bar, the method comprising: providing a detersive surfactant; providing a builder; providing psyllium; providing a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses; providing a filler comprising sodium silicate; providing water; mixing the detersive surfactant, the builder, the psyllium, the cellulose derivative, the filler, and the water to form a combination; grinding the combination; and extruding the ground combination to provide the non-soap detergent bar.
[0009] The present invention provides a method of making a non-soap detergent bar, the method comprising: providing a detersive surfactant; providing a builder; providing psyllium; providing a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses; providing a filler comprising sodium silicate; providing a fragrance; providing a colorant; providing water; mixing the detersive surfactant, the builder, the psyllium, the cellulose derivative, the filler, the fragrance, the colorant, and the water to form a combination; grinding the combination; and extruding the ground combination to provide the non-soap detergent bar. DETAILED DESCRIPTION OF THE INVENTION
[0010] The inventors have surprisingly found that non-soap detergent bars containing a synergistic combination of sodium silicate, psyllium, and a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses exhibit enhanced wear resistance while facilitating high water content (>10% by weight) in the finished non-soap detergent bar (preferably, the finished non-soap detergent bar exhibits long-term water retention, and the finished bar resists cracking due to water loss for up to one year).
[0011] Unless otherwise indicated, ratios, percentages, parts, etc. are by weight.
[0012] 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 the conventional manner using gel permeation chromatography (GPC) and conventional standards such as polyethylene glycol standards. The GPC technique is described 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.
[0013] Preferably, the non-soap detergent bar of the present invention comprises a detersive surfactant (preferably 5 to 30 wt. % (more preferably 7 to 25 wt. %, even more preferably 8 to 20 wt. %, most preferably 10 to 15 wt. %) of detersive surfactant based on the weight of the non-soap detergent bar), a builder (preferably 8 to 50 wt. % (more preferably 9 to 40 wt. %, even more preferably 10 to 30 wt. %, most preferably 10.5 to 15 wt. %) of builder based on the weight of the non-soap detergent bar), and a surfactant. psyllium (preferably 0.1 to 5 wt. % (more preferably 0.5 to 4 wt. %, even more preferably 0.75 to 3.5 wt. %, most preferably 1 to 3 wt. %) based on the weight of the non-soap detergent bar), and a cellulose derivative (preferably 0.01 to 5 wt. % (more preferably 0.5 to 4 wt. %, even more preferably 0.6 to 3.5 wt. %, most preferably 0.65 to 3 wt. %) based on the weight of the non-soap detergent bar), a cellulose derivative selected from the group consisting of alkylcelluloses (e.g., hydroxyethyl methylcellulose); a filler (preferably 20-70% (more preferably 30-65%; even more preferably 40-60%; most preferably 45-55% by weight of filler, based on the weight of the non-soap detergent bar) comprising sodium silicate); and water (preferably >10-30% (more preferably 12-28%; even more preferably 15-25%; most preferably 18-22% by weight of water, based on the weight of the non-soap detergent bar) of water), wherein the solid non-soap detergent bar is solid (i.e., the solid non-soap detergent bar does not appreciably change shape when placed on a rigid surface and left undisturbed for 24 hours at room temperature of 22°C and a pressure of 101.4 kPa) (preferably, the non-soap detergent bar has at least one of the following properties: acceptable in-use wear rate, hardness, durability, fast drying, low soiling, and improved environmental compatibility).
[0014] Preferably, the non-soap detergent bar of the present invention comprises 5 to 30% by weight (preferably 7 to 25% by weight, more preferably 8 to 20% by weight, most preferably 10 to 15% by weight) of a detersive surfactant based on the weight of the non-soap detergent bar. More preferably, the non-soap detergent bar of the present invention comprises 5 to 30% by weight (preferably 7 to 25% by weight, more preferably 8 to 20% by weight, most preferably 10 to 15% by weight) of a detersive surfactant based on the weight of the non-soap detergent bar, the detersive surfactant being selected from the group consisting of alkyl sulfonic acids, alkyl sulfates, alkyl sulfonates, alkyl benzene sulfonic acids, alkyl benzene sulfates, alkyl benzene sulfonates, alkyl ether sulfonic acids, alkyl ether sulfates, alkyl ether sulfonates, paraffin sulfonic acids, paraffin sulfates, paraffin sulfonates, olefin sulfonic acids, olefin sulfates
[0023] Even more preferably, the non-soap detergent bar of the present invention comprises from 5 to 30 wt. % (preferably, 7 to 25 wt. %, more preferably, 8 to 20 wt. %, and most preferably, 10 to 15 wt. %) of a detersive surfactant, based on the weight of the non-soap detergent bar, the detersive surfactant being selected from the group consisting of alkyl glyceryl ether sulfonates, alkyl glyceryl ether sulfates, alkyl glyceryl ether sulfonates, sulfates of fatty acids, sulfonates of fatty acids, sulfonates of fatty acid esters, alkylphenol polyethoxy ether sulfates, 2-acryloxy-alkane-1-sulfonic acids, 2-acryloxy-alkane-1-sulfonates, beta-alkyloxyalkane sulfonic acids, beta-alkyloxyalkane sulfonates, salts thereof, and mixtures thereof. Even more preferably, the non-soap detergent bar of the present invention comprises from 5 to 30 wt. % (preferably, 7 to 25 wt. %, more preferably, 8 to 20 wt. %, and most preferably, 10 to 15 wt. %) of a detersive surfactant, based on the weight of the non-soap detergent bar, the detersive surfactant being selected from the group consisting of C 8~20 Alkylbenzene sulfonic acid, C 8~20 Alkylbenzene sulfate, C 8~20 Alkylbenzene sulfonate, C 8~20 Alkyl ether sulfonic acid, C 8~20 Alkyl ether sulfate, C 8~20Preferably, the non-soap detergent bar of the present invention comprises from 5 to 30% by weight (preferably, 7 to 25%, more preferably, 8 to 20%, and most preferably, 10 to 15% by weight) of a detersive surfactant, based on the weight of the non-soap detergent bar, said detersive surfactant being selected from the group consisting of alkyl ether sulfonates, paraffin sulfonic acids, paraffin sulfates, paraffin sulfonates, α-olefin sulfonic acids, α-olefin sulfates, α-olefin sulfonates, sulfonates of fatty acids, sulfonates of fatty acid esters, salts thereof, and mixtures thereof. Even more preferably, the non-soap detergent bar of the present invention comprises from 5 to 30% by weight (preferably, 7 to 25%, more preferably, 8 to 20%, and most preferably, 10 to 15% by weight) of a detersive surfactant, said detersive surfactant being selected from the group consisting of alkyl ether sulfonates, paraffin sulfonic acids, paraffin sulfates, paraffin sulfonates, α-olefin sulfonic acids, α-olefin sulfates, α-olefin sulfonates, sulfonates of fatty acid esters, salts thereof, and mixtures thereof. 10~16 Alkylbenzene sulfonic acid, C 10~16 Alkylbenzene sulfonate, C 10~16 Alkylpolyethoxysulfonic acid, C 10~16 Alkyl polyethoxy sulfate, C 10~16 Even more preferably, the non-soap detergent bar of the present invention comprises from 5 to 30% (preferably, from 7 to 25%, more preferably, from 8 to 20%, and most preferably, from 10 to 15% by weight of the non-soap detergent bar) of a detersive surfactant, the detersive surfactant being selected from the group consisting of alkyl polyethoxy sulfonates, salts thereof, and mixtures thereof. 11~14 Alkylbenzene sulfonic acid, C 11~14 Alkylbenzene sulfonate, C 11~14 Alkylpolyethoxysulfonic acid, C 11~14 Alkyl polyethoxy sulfate, C 11~14 Most preferably, the non-soap detergent bar of the present invention comprises 5 to 30% (preferably 7 to 25%, more preferably 8 to 20%, most preferably 10 to 15%) by weight of the non-soap detergent bar of a detersive surfactant, the anionic surfactant being selected from the group consisting of alkyl polyethoxy sulfonates, salts thereof, and mixtures thereof. 11~14 alkylbenzene sulfonic acid (preferably C 11~14 alkylbenzene sulfonic acid).
[0015] Preferably, the non-soap detergent bars of the present invention comprise 8 to 50% (preferably 9 to 40%, more preferably 10 to 30%, and most preferably 10.5 to 15%) by weight of builder based on the weight of the non-soap detergent bar. More preferably, the non-soap detergent bars of the present invention comprise 8 to 50% (preferably 9 to 40%, more preferably 10 to 30%, and most preferably 10.5 to 15%) by weight of builder based on the weight of the non-soap detergent bar, the builder being selected from the group consisting of hydrated alkali metal phosphates, alkalis (including carbonates and bicarbonates), zeolites, ethylenediaminetetraacetates, nitrilotriacetates, and mixtures thereof. More preferably, the non-soap detergent bars of the present invention comprise 8 to 50% by weight (preferably 9 to 40%, more preferably 10 to 30%, and most preferably 10.5 to 15%) of a builder based on the weight of the non-soap detergent bar, the builder being selected from the group consisting of zeolite, sodium citrate, sodium silicate, sodium carbonate, calcium carbonate, sodium bicarbonate, calcium bicarbonate, and mixtures thereof. Most preferably, the non-soap detergent bars of the present invention comprise 8 to 50% by weight (preferably 9 to 40%, more preferably 10 to 30%, and most preferably 10.5 to 15%) of a builder based on the weight of the non-soap detergent bar, the builder comprising at least one of sodium carbonate and calcium carbonate.
[0016] Preferably, the non-soap detergent bar of the present invention comprises 0.1 to 5% by weight (preferably 0.5 to 4% by weight, more preferably 0.75 to 3.5% by weight, most preferably 1 to 3% by weight) of psyllium, based on the weight of the non-soap detergent bar. Psyllium is commercially available as particles or in powder form. Psyllium is preferably branched and consists of neutral arabinoxylans 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. The hydroxyl groups are linked to the main chain by two bonds. Psyllium is preferably extracted from the seed coat (husk or husk) of Plantago ispaghula or from the seeds of plantain. Psyllium is preferably 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 preferably a highly branched, acidic arabinoxylan with a high molecular weight (approximately 1,500,000 daltons).
[0017] Preferably, the non-soap detergent bar of the present invention comprises 0.01 to 5% by weight (preferably 0.5 to 4% by weight, more preferably 0.6 to 3.5% by weight, and most preferably 0.65 to 3% by weight) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses. More preferably, the non-soap detergent bar of the present invention comprises 0.01 to 5% by weight (preferably 0.5 to 4% by weight, more preferably 0.6 to 3.5% by weight, and most preferably 0.65 to 3% by weight) 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 non-soap detergent bar of the present invention comprises 0.01 to 5% by weight (preferably 0.5 to 4%, more preferably 0.6 to 3.5%, and most preferably 0.65 to 3%) 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, based on the weight of the non-soap detergent bar. Most preferably, the non-soap detergent bar of the present invention comprises 0.01 to 5% by weight (preferably 0.5 to 4%, more preferably 0.6 to 3.5%, and most preferably 0.65 to 3%) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl cellulose being hydroxyethyl methyl cellulose.
[0018] Preferably, the non-soap detergent bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.5 to 4 wt. %, more preferably 0.6 to 3.5 wt. %, and most preferably 0.65 to 3 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, based on the weight of the non-soap detergent bar, 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). WMore preferably, the non-soap detergent bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.5 to 4 wt. %, more preferably 0.6 to 3.5 wt. %, and most preferably 0.65 to 3 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 wherein the hydroxyalkyl alkyl cellulose is selected from hydroxyethyl methyl cellulose, hydroxypropyl methyl cellulose, and mixtures thereof. Most preferably, the non-soap detergent bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.5 to 4 wt. %, more preferably 0.6 to 3.5 wt. %, and most preferably 0.65 to 3 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 wherein the hydroxyalkyl alkyl cellulose is hydroxyethyl methyl cellulose.
[0019] Preferably, the non-soap detergent bar of the present invention comprises, based on the weight of the non-soap detergent bar, 0.01 to 5 wt. % (preferably 0.5 to 4 wt. %, more preferably 0.6 to 3.5 wt. %, and most preferably 0.65 to 3 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).
[0020] Preferably, the non-soap detergent bar of the present invention comprises 0.01 to 5% by weight (preferably 0.5 to 4% by weight, more preferably 0.6 to 3.5% by weight, and most preferably 0.65 to 3% by weight) 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 in this specification and the appended claims, the term "substantially linear" means that 97 to 100% by weight (preferably 99 to 100% by weight) of all glucose units in the hydroxyalkyl alkyl cellulose are present in the main chain of the cellulose backbone.
[0021] Preferably, the non-soap detergent bar of the present invention comprises 0.01 to 5 wt. % (preferably 0.5 to 4 wt. %, more preferably 0.6 to 3.5 wt. %, and most preferably 0.65 to 3 wt. %) of a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, the hydroxyalkyl alkyl cellulose 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.
[0022] Preferably, the non-soap detergent 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).
[0023] Preferably, the non-soap detergent bars of the present invention comprise 20 to 70% (preferably 30 to 65%, more preferably 40 to 60%, and most preferably 45 to 55%) by weight of a filler based on the weight of the non-soap detergent bar, the filler comprising sodium silicate. More preferably, the non-soap detergent bars of the present invention comprise 20 to 70% (preferably 30 to 65%, more preferably 40 to 60%, and most preferably 45 to 55%) by weight of a filler based on the weight of the non-soap detergent bar, the filler further comprising a material selected from the group consisting of sulfates, chlorides, calcite, silicates, dolomite, and mixtures thereof. Most preferably, the non-soap detergent bars of the present invention comprise 20 to 70% (preferably 30 to 65%, more preferably 40 to 60%, and most preferably 45 to 55%) by weight of a filler based on the weight of the non-soap detergent bar, the filler comprising a mixture of magnesium sulfate, hydrated aluminum silicate (china clay), calcite, dolomite, sodium silicate, and sodium chloride.
[0024] Preferably, the non-soap detergent bars of the present invention comprise >10-30% by weight (preferably 12-28%, more preferably 15-25%, most preferably 18-22%) of water, based on the weight of the non-soap detergent bar. More preferably, the non-soap detergent bars of the present invention comprise >10-30% by weight (preferably 12-28%, more preferably 15-25%, most preferably 18-22%) of water, based on the weight of the non-soap detergent bar, the water being at least one of distilled water and deionized water. Most preferably, the non-soap detergent bars of the present invention comprise >10-30% by weight (preferably 12-28%, more preferably 15-25%, most preferably 18-22%) of water, based on the weight of the non-soap detergent bar, the water being deionized water.
[0025] Preferably, the non-soap detergent bars of the present invention are solid. As used herein and in the appended claims with respect to non-soap detergent bars, the term "solid" means that the non-soap detergent bar does 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.
[0026] Preferably, the non-soap detergent bars of the present invention have a wear rate of 0.5 to 9% by weight (more preferably 1 to 8% by weight), the wear rate being the weight loss of the non-soap detergent bar after 4 days of use.
[0027] Preferably, the non-soap detergent bars of the present invention further comprise optional ingredients. More preferably, the non-soap detergent 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, chelating agents, antimicrobial agents (e.g., biocides), pH adjusters, pH buffers, fragrances / fragrances, colorants (e.g., dyes), and mixtures thereof. Most preferably, the non-soap detergent bars of the present invention further comprise optional ingredients selected from the group consisting of fragrances, colorants, and mixtures thereof.
[0028] Preferably, the non-soap detergent bar of the present invention further comprises a humectant, and more preferably, the non-soap detergent bar of the present invention further comprises 0.1 to 5% by weight (preferably 0.25 to 2% by weight, more preferably 0.5 to 1.5% by weight, most preferably 0.75 to 1.25% by weight) of a humectant, based on the weight of the non-soap detergent bar. Even more preferably, the non-soap detergent bar of the present invention further comprises 0.1 to 5% (preferably 0.25 to 2%, more preferably 0.5 to 1.5%, and most preferably 0.75 to 1.25%) by weight of a humectant, based on the weight of the non-soap detergent bar, which humectant is 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 non-soap detergent bars of the present invention further comprise 0.1 to 5% by weight (preferably 0.25 to 2%, more preferably 0.5 to 1.5%, and most preferably 0.75 to 1.25%) of a humectant based on the weight of the non-soap detergent bar, the humectant comprising glycerin. Most preferably, the non-soap detergent bars of the present invention further comprise 0.1 to 5% by weight (preferably 0.25 to 2%, more preferably 0.5 to 1.5%, and most preferably 0.75 to 1.25%) of a humectant based on the weight of the non-soap detergent bar, the humectant being glycerin.
[0029] Preferably, the non-soap detergent bars of the present invention further comprise a processing aid. More preferably, the non-soap detergent bars of the present invention further comprise 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 non-soap detergent bar. Even more preferably, the non-soap detergent bars of the present invention further comprise 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 non-soap detergent 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 non-soap detergent bars of the present invention further comprise 0.05 to 2% (preferably 0.1 to 1.5%, more preferably 0.25 to 1.25%, and most preferably 0.5 to 1%) by weight of a processing aid based on the weight of the non-soap detergent bar, the processing aid being selected from the group consisting of talc, calcite, titanium dioxide, and mixtures thereof. Most preferably, the non-soap detergent bars of the present invention further comprise 0.05 to 2% (preferably 0.1 to 1.5%, more preferably 0.25 to 1.25%, and most preferably 0.5 to 1%) by weight of a processing aid based on the weight of the non-soap detergent bar, the processing aid comprising titanium dioxide.
[0030] Preferably, the non-soap detergent bar of the present invention further comprises a chelating agent. More preferably, the non-soap detergent 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 non-soap detergent bar. Even more preferably, the non-soap detergent 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 non-soap detergent 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 non-soap detergent 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 non-soap detergent bar, 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 non-soap detergent 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 non-soap detergent bar, the chelating agent comprising ethylenediaminetetraacetic acid tetrasodium salt.
[0031] Preferably, the non-soap detergent bar of the present invention further comprises a fragrance. More preferably, the bar soap of the present invention further comprises 0.01 to 3 wt. % (preferably 0.02 to 2 wt. %, more preferably 0.03 to 1 wt. %, most preferably 0.035 to 0.1 wt. %) of a fragrance, based on the weight of the non-soap detergent bar.
[0032] Preferably, the non-soap detergent bar of the present invention further comprises a colorant. More preferably, the non-soap detergent bar of the present invention further comprises 0.01 to 3 wt. % (preferably 0.02 to 2 wt. %, more preferably 0.03 to 1 wt. %, most preferably 0.035 to 0.1 wt. %) of a colorant based on the weight of the non-soap detergent bar.
[0033] Preferably, the non-soap detergent bars of the present invention are selected from personal care bars, dish bars, and laundry bars. More preferably, the non-soap detergent bars of the present invention are selected from dish bars and laundry bars. Most preferably, the non-soap detergent bars of the present invention are laundry bars.
[0034] Preferably, the method of making the non-soap detergent bar of the present invention includes providing a detersive surfactant, providing a builder, providing psyllium, providing a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses, providing a filler, providing water, mixing the detergent surfactant, the builder, the psyllium, the cellulose derivative, the filler, and the water to form a combination (preferably by heating the detergent surfactant, the builder, the psyllium, and the cellulose derivative while mixing to form a combination), grinding the combination, extruding the ground combination, and die-cutting the extruded material to provide the non-soap detergent bar. More preferably, the method of making the non-soap detergent bar of the present invention includes providing a detersive surfactant, providing a builder, providing psyllium, providing a cellulose derivative selected from the group consisting of hydroxyalkyl alkyl celluloses (preferably, the hydroxyalkyl alkyl cellulose is at least one of hydroxyethyl methyl cellulose and hydroxypropyl methyl cellulose), providing a filler, providing water, mixing the detergent surfactant, the builder, the psyllium, the cellulose derivative, the filler, and the water to form a combination (preferably, heating the detergent surfactant, the builder, the psyllium, and the cellulose derivative while mixing to form a combination), grinding the combination, extruding the ground combination, and die-cutting the extruded material to provide the non-soap detergent bar.
[0035] Some embodiments of the present invention will now be described in detail in the following examples.
[0036] Comparative Example C and Examples 1-2: Non-Soap Detergent Bars Non-soap detergent bars are prepared having the compositions set forth in Table 1 for each of Comparative Example C and Examples 1-2. The ingredients are mixed together in the amounts set forth in Table 1 in a sigma mixer. All ingredients are added sequentially, with no specified order, except that the fragrance is added last. The entire mass is then transferred from the sigma mixer to a three-roll mill, where the mixture is ground. The entire process is carried out in the laboratory under ambient conditions. The mass received from the roll mill is then prodded in a screw prodder and extruded at a temperature of 45-55°C. The extruded mass is then cut into small pieces to provide the final non-soap detergent bar.
[0037] [Table 1]
Claims
1. 1. A non-soap detergent bar comprising: 10 to 20 wt. %, based on the weight of the non-soap detergent bar, of a detersive surfactant selected from the group consisting of C 11-14 alkyl benzene sulfonic acid, C 11-14 alkyl benzene sulfonate, C 11-14 alkyl polyethoxy sulfonic acid, C 11-14 alkyl polyethoxy sulfate, C 11-14 alkyl polyethoxy sulfonate, salts thereof and mixtures thereof; 8 to 15 wt. %, based on the weight of the non-soap detergent bar, of a builder which is at least one of sodium carbonate and calcium carbonate; 1 to 3% by weight of psyllium, based on the weight of the non-soap detergent bar; 0.65 to 3% by weight, based on the weight of the non-soap detergent bar, of a cellulose derivative selected from the group consisting of hydroxyethyl methylcellulose, hydroxypropyl methylcellulose, and mixtures thereof; 45 to 55 weight percent, based on the weight of the non-soap detergent bar, of a filler selected from the group consisting of sulfates, chlorides, calcite, silicates, dolomite, and mixtures thereof, including sodium silicate; 18 to 22% by weight of water, based on the weight of the non-soap detergent bar; and Optionally, an optional ingredient selected from the group consisting of humectants, processing aids, preservatives, antioxidants, viscosity modifiers, free fatty acids, foam stabilizers, foam boosters, chelating agents, antimicrobial agents, pH adjusters, pH buffers, fragrances, colorants, and mixtures thereof. consists only of 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; the processing aid is selected from the group consisting of talc, kaolin, silicon dioxide, titanium dioxide, diatomaceous earth, and mixtures thereof; the preservative is selected from the group consisting of benzoic acid, sorbic acid, and phenoxyethanol; the antioxidant is butylated hydroxytoluene; the chelating agent is selected from the group consisting of diethylenetriaminepentaacetic acid, 1-hydroxyethane 1,1-diphosphonic acid, citric acid, ethylenediaminetetraacetic acid (EDTA), salts thereof, and mixtures thereof; A non-soap detergent bar, wherein said non-soap detergent bar is a solid.
2. 10. The non-soap detergent bar of claim 1, wherein said cellulose derivative is hydroxyethyl methyl cellulose.
3. 10. The non-soap detergent bar of claim 1 comprising 0.01 to 3% by weight of colorant based on the weight of the non-soap detergent bar.
4. 4. The non-soap detergent bar of claim 3 comprising 0.01 to 3% by weight of fragrance based on the weight of the non-soap detergent bar.
5. 5. The non-soap detergent bar of claim 4, wherein said filler further comprises at least one of magnesium sulfate, hydrated aluminum silicate, calcite, dolomite, and sodium chloride.
6. 5. The non-soap detergent bar of claim 4, wherein said filler further comprises a mixture of magnesium sulfate, hydrated aluminum silicate, calcite, dolomite, and sodium chloride.
7. 7. The non-soap detergent bar of claim 6 which is a laundry bar.
8. 1. A method of making a non-soap detergent bar, comprising: providing a detersive surfactant selected from the group consisting of C 11-14 alkyl benzene sulfonic acid, C 11-14 alkyl benzene sulfonate, C 11-14 alkyl polyethoxy sulfonic acid, C 11-14 alkyl polyethoxy sulfate, C 11-14 alkyl polyethoxy sulfonate, salts thereof and mixtures thereof; providing a builder which is at least one of sodium carbonate and calcium carbonate; Providing psyllium; providing a cellulose derivative selected from the group consisting of hydroxyethyl methylcellulose, hydroxypropyl methylcellulose, and mixtures thereof; providing a filler selected from the group consisting of sulfates, chlorides, calcite, silicates, dolomites and mixtures thereof, the filler comprising sodium silicate; Providing water, an optional ingredient selected from the group consisting of humectants, processing aids, preservatives, antioxidants, viscosity modifiers, free fatty acids, foam stabilizers, foam accelerators, chelating agents, antibacterial agents, pH adjusters, pH buffers, fragrances, colorants, and mixtures thereof, wherein the humectant is 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, wherein the processing aid is selected from the group consisting of talc, kaolin, silicon dioxide, titanium dioxide, diatomaceous earth, and mixtures thereof, the preservative is selected from the group consisting of benzoic acid, sorbic acid, and phenoxyethanol, the antioxidant is butylated hydroxytoluene, and the chelating agent is selected from the group consisting of diethylenetriaminepentaacetic acid, 1-hydroxyethane 1,1-diphosphonic acid, citric acid, ethylenediaminetetraacetic acid (EDTA), salts thereof, and mixtures thereof; mixing the detersive surfactant, the builder, the psyllium, the cellulose derivative, the filler, the water, and optionally the optional ingredients to form a combination; grinding the combination; and extruding the ground combination to provide the non-soap detergent bar. Including, the non-soap detergent bar comprising: 10 to 20 wt. % of said detersive surfactant, based on the weight of said non-soap detergent bar; 8 to 15 wt. % of said builder, based on the weight of said non-soap detergent bar; 1 to 3% by weight of said psyllium, based on the weight of said non-soap detergent bar; 0.65 to 3% by weight of said cellulose derivative, based on the weight of said non-soap detergent bar; 45 to 55 weight percent of said filler, based on the weight of said non-soap detergent bar; 18 to 22% by weight of said water, based on the weight of said non-soap detergent bar; and Optionally, the method consists solely of said optional ingredients.
9. providing a fragrance and providing a colorant; 9. The method of claim 8, wherein the fragrance and the colorant are mixed together with the detersive surfactant, the builder, the psyllium, the cellulose derivative, the filler, the water, and optionally, the optional ingredients other than the fragrance and the colorant to form the combination.
Citation Information
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