IP Library Granted Patent US 9,199,218
Granted Patent B2
US 9,199,218 · App. 14/127,784 · Granted Dec 1, 2015

Water absorbing resin particles, method for manufacturing water absorbing resin particles, absorption body, absorptive article, and water-sealing material

Inventors: Masayoshi Handa (Himeji, JP); Kenji Tanimura (Himeji, JP); Atsushi Heguri (Osaka, JP); Yuichi Onoda (Himeji, JP)
Assignee: Sumitomo Seika Chemicals Co., Ltd.
B01J20/261A61L15/26A61L15/28A61L15/48A61L15/60B01J20/265C08F2/32C08F220/06C08J3/075C08J3/12C08J2301/00C08J2333/00Y10T428/2982
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Quick Facts
Patent No.
US 9,199,218
App. No.
14/127,784
Granted
Dec 1, 2015
Kind
B2
Abstract

Disclosed is a water-absorbent resin particle in which the water-absorption rate of physiological saline is 1 second to 15 seconds, the median particle size is 100 μm to 600 μm, and the residual volatile component content is 1.5% by weight or less.

Claims (28)

1. A water-absorbent resin particle, wherein a water-absorption rate of physiological saline is 1 second to 15 seconds, a median particle size is 100 μm to 600 μm, a residual volatile component content is 1.5% by weight or less, and the water-absorption rate is measured by the amount of time from addition of 2.0±0.002 g of the water-absorbent resin particles into 50.0±0.1 g of vortexed physiological saline at a rotating speed of 600 rpm until the vortex on the liquid surface converged.

2. The water-absorbent resin particle according to claim 1 , wherein a specific surface area is 0.08 m 2 /g or more.

3. The water-absorbent resin particle according to claim 1 , wherein a water-absorption capacity of the physiological saline is 30 g/g to 90 g/g.

4. A method of producing a water-absorbent resin particle, comprising in the following order:

a first polymerization step including obtaining a suspension containing a water-containing gelated polymer by polymerizing a water-soluble ethylenically unsaturated monomer in a suspension containing an oily liquid containing a hydrocarbon dispersion medium, a first aqueous liquid containing an aqueous solvent, the water-soluble ethylenically unsaturated monomer and a radical polymerization initiator, and a surfactant having an HLB value of 6 or higher, the first aqueous liquid being dispersed in the oily liquid; and

a second polymerization step including mixing the suspension containing the water-containing gelated polymer at 45° C. or higher with a second aqueous liquid containing an aqueous solvent, a water-soluble ethylenically unsaturated monomer and a radical polymerization initiator, and polymerizing the water-soluble ethylenically unsaturated monomer in a suspension in which the second aqueous liquid is further dispersed.

5. The method according to claim 4 , wherein in the second polymerization step, a temperature of the suspension in which the second aqueous liquid has been further dispersed at the time of completion of mixing of the suspension with the second aqueous liquid is 35° C. or higher.

6. The method according to claim 4 , wherein in the first polymerization step, the oily liquid contains 50 parts by weight to 650 parts by weight of the hydrocarbon dispersion medium relative to 100 parts by weight of the water-soluble ethylenically unsaturated monomer contained in the first aqueous liquid.

7. A method of producing a water-absorbent resin particle comprising:

a polymerization step including polymerizing a water-soluble ethylenically unsaturated monomer in a suspension containing an oily liquid containing a hydrocarbon dispersion medium, and an aqueous liquid containing an aqueous solvent and the water-soluble ethylenically unsaturated monomer, the aqueous solvent containing water, the aqueous liquid being dispersed in the oily liquid, wherein

the aqueous liquid has a viscosity of 20 mPa·s or more at 20° C., and

the suspension further contains a surfactant having an HLB value of 6 or higher.

8. The method according to claim 7 , wherein the aqueous liquid further contains a water-soluble thickener, and the water-soluble thickener contains at least one type of compound selected from hydroxyalkyl celluloses, hydroxyalkyl alkyl celluloses and carboxyalkyl hydroxyalkyl celluloses.

9. A method of producing a water-soluble resin particle, comprising:

a polymerization step including polymerizing a water-soluble ethylenically unsaturated monomer in a suspension containing an oily liquid containing a hydrocarbon dispersion medium, and an aqueous liquid containing an aqueous solvent and the water-soluble ethylenically unsaturated monomer, the aqueous solvent containing water, the aqueous liquid being dispersed in the oily liquid, wherein

the aqueous liquid further contains a hydrophilic polymeric dispersion agent, and

the suspension further contains a surfactant having an HLB value of 6 or higher.

10. The method according to claim 9 , wherein the hydrophilic polymeric dispersion agent contains at least one type of compound selected from the group consisting of polyvinyl alcohol, polyvinylpyrrolidone, polyethylene glycol, polypropylene glycol and polyglycerol.

11. The method according to claim 9 , wherein the aqueous liquid contains 0.001 parts by weight to 10 parts by weight of the hydrophilic polymeric dispersion agent relative to 100 parts by weight of the water-soluble ethylenically unsaturated monomer.

12. The method according to claim 4 , wherein the surfactant contains at least one type of compound selected from the group consisting of sorbitan fatty acid esters, polyglycerol fatty acid esters and sucrose fatty acid esters.

13. The method according to claim 4 , wherein the water-soluble ethylenically unsaturated monomer contains at least one type of compound selected from the group consisting of acrylic acid and a salt thereof, methacrylic acid and a salt thereof, and acrylamide.

14. The method according to claim 4 , wherein the hydrocarbon dispersion medium contains at least one type of compound selected from the group consisting of chain aliphatic hydrocarbons having 6 to 8 carbon atoms and alicyclic hydrocarbons having 6 to 8 carbon atoms.

15. The method according to claim 8 , wherein the surfactant contains at least one type of compound selected from the group consisting of sorbitan fatty acid esters, polyglycerol fatty acid esters and sucrose fatty acid esters.

16. The method according to claim 9 , wherein the surfactant contains at least one type of compound selected from the group consisting of sorbitan fatty acid esters, polyglycerol fatty acid esters and sucrose fatty acid esters.

17. The method according to claim 8 , wherein the water-soluble ethylenically unsaturated monomer contains at least one type of compound selected from the group consisting of acrylic acid and a salt thereof, methacrylic acid and a salt thereof, and acrylamide.

18. The method according to claim 9 , wherein the water-soluble ethylenically unsaturated monomer contains at least one type of compound selected from the group consisting of acrylic acid and a salt thereof, methacrylic acid and a salt thereof, and acrylamide.

19. The method according to claim 8 , wherein the hydrocarbon dispersion medium contains at least one type of compound selected from the group consisting of chain aliphatic hydrocarbons having 6 to 8 carbon atoms and alicyclic hydrocarbons having 6 to 8 carbon atoms.

20. The method according to claim 9 , wherein the hydrocarbon dispersion medium contains at least one type of compound selected from the group consisting of chain aliphatic hydrocarbons having 6 to 8 carbon atoms and alicyclic hydrocarbons having 6 to 8 carbon atoms.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2013
From: HANDA, MASAYOSHI; TANIMURA, KENJI; HEGURI, ATSUSHI; ONODA, YUICHI
To: SUMITOMO SEIKA CHEMICALS CO., LTD.
Reel/Frame 031822/0492 →
Priority Claims (8)
JP 2011-170462 · Aug 3, 2011 · national
JP 2011-170466 · Aug 3, 2011 · national
JP 2011-170467 · Aug 3, 2011 · national
JP 2011-170471 · Aug 3, 2011 · national
JP 2011-170473 · Aug 3, 2011 · national
JP 2011-170477 · Aug 3, 2011 · national
JP 2011-218018 · Sep 30, 2011 · national
JP 2011-218028 · Sep 30, 2011 · national
Continuity (1)
Related Publication 20140127510A1 · May 8, 2014