Hydroxypropyl Methyl Cellulose(HPMC)

Hydroxypropyl Methyl Cellulose(HPMC) modified starch china

Packaging: 25 Kg/ Bag;
QC: HACCP, Kosher, Halal, Iso
Similar to: Bakels Thickener; Baka-Snak E; Cargill Tex 06201;
Origin: China

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Hydroxypropyl Methyl Cellulose(HPMC)

KosNature is a reliable Hydroxypropyl Methyl Cellulose(HPMC) supplier and manufacturer. We can supply high quality Hydroxypropyl Methyl Cellulose(HPMC) in china

OSWAY®Hydroxypropyl Methyl Cellulose (HPMC) is non- ionic cellulose ether made from natural cotton    fiber under series of chemical processing. It’s odorless, tasteless and non-toxic white powder, can be dissolved in cold water to form a transparent viscous solution with the properties of thickening, binding, dispersing, emulsifying, film coating, suspending, absorbing, gelling, water retention and colloid protection.

Physical and Chemical Specification

                    

SpecificationOS60OS65OS75
Gelling temperature ()58-6462-6868-90
Methoxy(WT%)27.0-30.027.0-30.019.0-24.0
Hydroxypropoxy(WT%)7.0-12.04.0-7.54.0-12.0
Viscosity (2WT% Solution)3,5,6,15,50,4000,10000,30000,50000,70000

             

 

Pharmaceutical Grade HPMC

HPMC is a multi-functional pharmaceutical adjuvant which can be used as thickener, dispersant, emulsifier and film-forming agent. As film coating and binder, it can improve the dissolution rate of drugs. It can also be used as a suspension aid, host material in ophthalmic preparations and etc.

Construction Grade HPMC

Excellent workability:  provide suitable viscosity, good plasticity and easy for construction.

Good water retention: make the slurry fully hydrated, extend the open time and avoid cracking.

Good slipping resistance: make slurry adhere to the surface strongly to prevent slipping.

Detergent Grade HPMC

Hydroxypropyl Methyl Cellulose (HPMC) can provide viscosity in all types of surfactant system. The powder surface has been treated through unique process, so it can be dissolved in the water quickly and has no agglomeration, flocculation or precipitation during dissolution.

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