Claims
- 1. A nonionic powdery detergent composition having a water-soluble alkali metal silicate content of less than 5% by weight based on the total weight of the composition, consisting essentially of;
- (a) 12 to 35% by weight based on the total weight of the composition of a nonionic surfactant having a melting point of 40.degree. C. or below;
- (b) 5 to 60% by weight based on the total weight of the composition of a water-soluble chelating agent;
- (c) 5 to 20% by weight based on the total weight of the composition of an amorphous aluminosilicate oil-absorbent carrier containing silicon in an amount of 30% by weight or more of SiO.sub.2 as determined with no hydrate present, said amorphous aluminosilicate oil-absorbent carrier having an oil absorbability of 80 ml/100 g or more, and wherein said amorphous aluminosilicate oil-absorbent carrier as a 5% by weight dispersion has a pH value of 9 or greater; or wherein the amount of dissolution of said amorphous aluminosilicate oil-absorbent carrier in 100 ml of a 2% by weight aqueous NaOH solution is 0.5 g or less; and
- (d) 2 to 40% by weight based on the total weight of the composition of an alkali metal carbonate;
- obtained by the process comprising:
- mixing the powders comprising the water-soluble chelating agent (b), the oil-absorbent carrier (c) and the alkali metal carbonate (d);
- gradually adding or spraying the non-ionic surfactant (a) onto said obtained mixture under stirring; and
- granulating the mixture.
- 2. The nonionic powdery detergent composition according to claim 1, wherein the nonionic surfactant (a) is a polyoxyethylene alkyl ether produced by adding ethylene oxide to an alcohol having 10 to 20 carbon atoms in such a manner that the average number of moles of addition of ethylene oxide is 5 to 15.
- 3. The nonionic powdery detergent composition according to claim 1, wherein the water-soluble chelating agent (b) is at least one member selected from the group consisting of pyrophosphates, hexametaphosphates and tripolyphosphates.
- 4. The nonionic powdery detergent composition according to claim 1, wherein the water-soluble chelating agent (b) is citric acid or its salt.
- 5. The nonionic powder detergent composition according to claim 1, wherein the oil-absorbent carrier (c) is one satisfying both requirements that said oil-absorbent carrier as a 5% by weight dispersion has a pH value of 9 greater and that the amount of dissolution of said oil-absorbent carrier in 100 ml of a 2% by weight aqueous NaOH solution is 0.5 g or less.
- 6. The nonionic powdery detergent composition according to claim 1, wherein the alkali metal carbonate (d) is sodium carbonate.
- 7. The nonionic powdery detergent composition according to claim 1, which has a bulk density of 0.6 to 1.2 g/cm.sup.3 and an average particle diameter of 200 to 1000 .mu.m.
- 8. A nonionic powdery detergent composition having a water-soluble alkali metal silicate content of less than 5% by weight based on the total weight of the composition consisting essentially of;
- (a) 12 to 35% by weight based on the total weight of the composition of a nonionic surfactant having a melting point of 40.degree. C. or below;
- (b) 5 to 60% by weight based on the total weight of the composition of a water-soluble chelating agent;
- (c) 5 to 20% by weight based on the total weight of the composition of an oil-absorbent carrier containing silicon in an amount of 30% by weight or more of SiO.sub.2 as determined with no hydrate present, said oil-absorbent carrier having an oil absorbability of 80 ml/100 g or more, and wherein said oil-absorbent carrier as a 5% by weight dispersion has a pH value of 9 or greater; or wherein the amount of dissolution of said oil-absorbent carrier in 100 ml of a 2% by weight aqueous NaOH solution is 0.5 g or less;
- (d) 2 to 40% by weight based on the total weight of the composition of an alkali metal carbonate; and
- (e) 1 to 5% by weight based on the total weight of the composition of a polyethylene glycol having a weight average molecular weight of 4,000 to 20,000;
- obtained by the process comprising:
- mixing components comprising the water-soluble chelating agent (b), the oil-absorbent carrier (c), the alkali metal carbonate (d) and the polyethylene glycol (e);
- gradually adding or spraying the nonionic surfactant (a) onto said obtained mixture, under stirring; and
- granulating the mixture.
- 9. The nonionic powdery detergent composition according to claim 8, wherein the water-soluble chelating agent (b) is citric acid or its salt.
- 10. The nonionic powdery detergent composition according to claim 8, wherein the oil-absorbent carrier (c) is an amorphous silica.
- 11. The nonionic powder detergent composition according to claim 8, wherein the oil-absorbent carrier (c) is an amorphous aluminosilicate.
- 12. The nonionic powder detergent composition according to claim 8, wherein the oil-absorbent carrier (c) is one satisfying both requirements that said oil-absorbent carrier as a 5% by weight dispersion has a pH value of 9 greater and that the amount of dissolution of said oil-absorbent carrier in 100 ml of a 2% by weight aqueous NaOH solution is 0.5 g or less.
- 13. The nonionic powdery detergent composition according to claim 8, which has a bulk density of 0.6 to 1.2 g/cm.sup.3 and an average particle diameter of 200 to 1000 .mu.m.
- 14. A process for producing a nonionic powdery detergent composition having a water-soluble alkali metal silicate content of less than 5% by weight based on the total weight of the composition consisting essentially of;
- gradually adding or spraying under stirring (a) 12 to 35% by weight based on the total weight of the composition of a nonionic surfactant having a melting point of 40.degree. C. or below onto a mixture comprising (b) 5 to 60% by weight based on the total weight of the composition of a water-soluble chelating agent; (c) 5 to 20% by weight based on the total weight of the composition of an oil-absorbent carrier containing silicon in an amount of 30% by weight or more of SiO.sub.2 as determined with no hydrate present, said oil-absorbent carrier having an oil absorbability of 80 ml/100 g or more, and wherein said oil-absorbent carrier as a 5% by weight dispersion has a pH value of 9 or greater; or wherein the amount of dissolution of said oil-absorbent carrier in 100 ml of a 2% by weight aqueous NaOH solution is 0.5 g or less; and (d) 2 to 40% by weight based on the total weight of the composition of an alkali metal carbonate;
- to produce particles having an average particle diameter of 150 to 1000 .mu.m.
- 15. The process according to claim 14, which further comprises mixing said produced particles with at least one detergent assistant or an additive selected from the group consisting of an inorganic electrolyte, an antiredeposition agent, an enzyme, an antioxidant, a fluorescent dye, a blueing agent, a perfume, a bleaching agent, a stabilizer for peroxide, a cationic surfactant and an anionic surfactant.
- 16. A process for producing a nonionic powdery detergent composition having a water-soluble alkali metal silicate content of less than 5% by weight based on the total weight of the composition which consisting essentially of;
- adding under stirring (e) 1 to 5% by weight based on the total weight of the composition of a polyethylene glycol having a weight average molecular weight of 4,000 to 20,000 to a mixture comprising (b) 5 to 60% by weight based on the total weight of the composition of a water-soluble chelating agent; (c) 5 to 20% by weight based on the total weight of the composition of an oil-absorbent carrier containing silicon in an amount of 30% by weight or more of SiO.sub.2 as determined with no hydrate present, said oil-absorbent carrier having an oil absorbability of 80 ml/100 g or more, and wherein said oil-absorbent carrier as a 5% by weight dispersion has a pH value of 9 or greater; or wherein the amount of dissolution of said oil-absorbent carrier in 100 ml of a 2% by weight aqueous NaOH solution is 0.5 g or less; and (d) 2 to 40% by weight based on the total weight of the composition of an alkali metal carbonate; and gradually adding or spraying under stirring (a) 12 to 35% by weight based on the total weight of the composition of a nonionic surfactant having a melting point of 40.degree. C. or below onto the obtained mixture;
- to produce particles having an average particle diameter of 150 to 1000 .mu.m.
- 17. The process according to claim 16, which further comprises mixing said produced particles with at least one detergent assistant or additive selected from the group consisting of an inorganic electrolyte, an antiredeposition agent, an enzyme, an antioxidant, a fluorescent dye, a blueing agent, a perfume, a bleaching agent, a stabilizer for peroxide, a cationic surfactant and an anionic surfactant.
- 18. A nonionic powdery detergent composition having a water-soluble alkali metal silicate content of less than 5% by weight based on the total weight of the composition, consisting essentially of;
- (a) 12 to 35% by weight based on the total weight of the composition of a nonionic surfactant having a melting point of 40.degree. C. or below;
- (b) 5 to 60% by weight based on the total weight of the composition of a water-soluble chelating agent;
- (c) 5 to 20% by weight based on the total weight of the composition of an amorphous aluminosilicate oil-absorbent carrier containing silicon in an amount of 30% by weight or more of SiO.sub.2 as determined with no hydrate present, said amorphous aluminosilicate oil-absorbent carrier having the following formula
- Na.sub.2 O.Al.sub.2 O.sub.3.m(SiO.sub.2).c(H.sub.2 O) (2)
- wherein
- m is 1.8 to 3.2 and c is 1 to 6; and
- (d) 2 to 40% by weight based on the total weight of the composition of an alkali metal carbonate;
- obtained by the process comprising:
- mixing the powders comprising the water-soluble chelating agent (b), the oil-absorbent carrier (c) and the alkali metal carbonate (d);
- gradually adding or spraying the non-ionic surfactant (a) onto said obtained mixture under stirring; and
- granulating the mixture.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-071208 |
Mar 1992 |
JPX |
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Parent Case Info
This application is a continuation, of application Ser. No. 08/030,719 filed on Mar. 12, 1993, now abandoned.
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Continuations (1)
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Number |
Date |
Country |
Parent |
30719 |
Mar 1993 |
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