Water-absorbent resin composition, absorbent material and absorbent article
US-2024424473-A1 · Dec 26, 2024 · US
US10086361B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10086361-B2 |
| Application number | US-201615247475-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 25, 2016 |
| Priority date | Apr 25, 2012 |
| Publication date | Oct 2, 2018 |
| Grant date | Oct 2, 2018 |
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The present invention relates to a super absorbent polymer (SAP) and a preparation method thereof. More specifically, the present invention provides a SAP satisfying the overall properties required to a SAP and especially the superior initial absorbency and absorbing rate under load at the same time, and a preparation method thereof, by treating the surface of the SAP with a surface treatment solution including water and a diol-based or glycol-based surface crosslinking agent.
Opening claim text (preview).
The invention claimed is: 1. A super absorbent polymer (SAP), comprising a base polymer powder comprising a crosslinked polymer of at least partially neutralized water-soluble ethylenic unsaturated monomer of acrylic acid; and a surface crosslinking layer formed on the base polymer powder, wherein the surface crosslinking layer is obtained by crosslinking the surface of the base polymer powder with a C 2 -C 8 diol-based or glycol-based compound, wherein the surface crosslinking is performed by using a surface treatment solution comprising the C 2 -C 8 diol-based or glycol-based compound, and the concentration of the C 2 -C 8 diol-based or glycol-based compound is 0.1 to 10 wt % per total surface treatment solution, wherein the SAP has the SPAN value of 1.2 or less, represented by the following Mathematical Formula 1, satisfies the absorbing rate under load (ARUL) represented by the following Mathematical Formula 2, and wherein the base polymer powder comprises the powder having the diameter of 300 to 600 μm in an amount of 60 to 80 weight %, the powder having the diameter of 600 to 850 μm in an amount of 10 to 20 weight %, and the powder having the diameter of 150 to 300 μm in an amount of 10 to 20 weight %: SPAN=[ D (90%)− D (10%)]/ D (50%)≤1.2 [Mathematical Formula 1] in Mathematical Formula 1, D(90%) is the diameter of the particle when the accumulated weight from the smallest particle becomes 90%, when the SAP particles are arranged in order of particle diameter measured according to EDANA method WSP 220.2, D(10%) is the diameter of the particle when the accumulated weight from the smallest particle becomes 10%, when the SAP particles are arranged in order of particle diameter measured according to EDANA method WSP 220.2, and D(50%) is the diameter of the particle when the accumulated weight from the smallest particle becomes 50%, when the SAP particles are arranged in order of particle diameter measured according to EDANA method WSP 220.2, 1.0>ARUL=AUP(10min)/AUP(60min)>0.70 [Mathematical Formula 2] in Mathematical Formula 2, wherein, AUP (10min) is the absorbency under pressure after 10 mins represented by the following Mathematical Formula 3, and AUP (60min) is the absorbency under pressure after 60 mins represented by the following Mathematical Formula 3, AUP(g/g)=[ Wb (g)− Wa (g)]/weight of absorbent polymer (g) [Mathematical Formula 3] in Mathematical Formula 3, Wa (g) is the sum of the weight of the absorbent polymer and the weight of the device capable of providing load to the absorbent polymer, and Wb (g) is the sum of the weight of the absorbent polymer in which moisture is absorbed under load (0.7 psi) for a given time of 10 mins or 60 mins and the weight of the device capable of providing load to the absorbent polymer. 2. The super absorbent polymer according to claim 1 , wherein the surface crosslinking is performed by spraying the surface treatment aqueous solution comprising the C 2 -C 8 diol-based or glycol-based compound on the base polymer powder and carrying out the surface crosslinking reaction at 120to 250° C. for 10 to 120 minutes, wherein the spray angle of the surface treatment aqueous solution is 10 to 30°. 3. A sanitary fitting including the super absorbent polymer of claim 1 . 4. A diaper including the super absorbent polymer of claim 1 . 5. A product including the super absorbent polymer of claim 1 , wherein the product is a water combination soil for horticulture, a water-stop material for civil engineering and construction, a nursery sheet, a freshness preservation in a food distribution field or a poultice material.
Powdering or granulating · CPC title
Superabsorbents · CPC title
Water soluble or water swellable polymers, e.g. aqueous gels · CPC title
Sorbent size or size distribution, e.g. particle size · CPC title
Acrylic acid; Methacrylic acid; Metal salts or ammonium salts thereof · CPC title
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