Business Type:
Manufacturer/Factory,Trading Company
Business Range:
Decolorant, Polycrylamide, Polyelectrolyte, Polydadmac, PAC, PHPA, CMC
Establishment:
2004
R&D Capacity:
OwnBrand, ODM, OEM
Terms of Payment:
LC, T/T, D/P
Main Markets:
North America, South America, Europe, Southeast Asia, Middle East, Africa, East Asia(Japan, South Korea), Australia
OEM/ODM Service
Sample Available

PHPA Emulsion, Emulsion, PHPA manufacturer / supplier in China, offering PHPA Emulsion for Drilling Flocculants, China Best Seller Water Decolor Agent for Textile Effluent Treatment, Sludge Dewatering Cationic Polyacrylamide and so on.

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Supplier Homepage Chemicals Plastic & Polymer Polymer & Resin China Super Absorbent Polymers Sap for Diapers

China Super Absorbent Polymers Sap for Diapers

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Min. Order / Reference FOB Price
1 Tons US $2000.00/ Tons
Local Area: Jian, Jiangxi, China
R&D Capacity: OEM, ODM, Other
Payment Terms: LC, T/T, D/P
CAS No.: 9005-05-8
Molecular Principal Chain: Element Organic Polymer
Color: White
Super Absorbent Polymers SAP for Diapers
Technical Data Sheet
BSorb®-228
Chemical Basis
Sodium Polyacrylate, cross-linked
Properties/Characteristics

ItemsUnitSpecificationAppearanceWhite granulesVisualMoisture content%≤6Free Absorbencyg/g≥55Retention Capacity after centrifugation:g/g≥32Absorption Under Load (0.7psi): g/g ≥18Residual monomer :ppm≤500Bulk density:g/ml0.5-0.7pH 5.5-6.5Particle size distribution:%>20mesh ≤2
<100mesh ≤6


Safety data
Labeling according to EC directives: not relevant

Shelf life and Storage
12 months under proper storage conditions
Ensure that bags are well sealed completely under a cool and dry location because SAP is hygroscopic

Packing:
20kg Paper bag
800kg Bulk Bag
Applications
With high absorption and retention capacity, this superabsorbent is specifically designed to use in modern baby diapers and adult incontinence articles. It is particularly recommended to use BSorb228 grade to optimize the performance of hygiene articles that contain a lower to moderately high super absorbents concentration within the absorbent core.