Ever struggled with skincare products that separate in the bottle? Faced complaints about makeup that feels gritty? You're not alone. A 2023 Statista survey shows 62% of consumers now check ingredient lists - and 78% will abandon brands using "suspicious" additives. But what if your product lacks that silky-smooth finish? Enter carboxymethyl cellulose in cosmetics
- the invisible hero transforming 9/10 bestselling moisturizers.
(carboxymethyl cellulose in cosmetics)
Viscosity range: 500-10,000 mPa·s
pH tolerance: 4-10
Key benefit: Creates thermal-stable gels in serums
Viscosity range: 1,000-50,000 mPa·s
pH tolerance: 3-11
Key benefit: Superior suspension in shampoos
Viscosity range: 5-100,000 mPa·s
pH tolerance: 3-9
Key benefit: Film-forming for long-wear makeup
Parameter | Our Grade | Industry Average |
---|---|---|
Purity Level | 99.8% | 95-97% |
Certifications | ISO 22716, ECOCERT | ISO 9001 only |
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(carboxymethyl cellulose in cosmetics)
A: Carboxymethyl cellulose (CMC) acts as a thickener, stabilizer, and moisturizer in cosmetics. It enhances texture and water retention in products like creams and lotions. Its gentle nature makes it suitable for sensitive skin formulations.
A: Hydroxyethyl cellulose (HEC) is used as a viscosity modifier and emulsion stabilizer. It creates smooth, gel-like textures in shampoos, serums, and gels. It also improves product spreadability without leaving residue.
A: Yes, CMC is generally considered non-irritating and safe for most skin types, including sensitive skin. It is biodegradable and derived from plant cellulose, minimizing allergic risks. Always patch-test new products for individual tolerance.
A: Hydroxypropyl methylcellulose (HPMC) excels as a film-forming agent and binder. It provides long-lasting hydration in mascaras, eyeliners, and moisturizers. Its thermal gelation property allows texture adjustment in varying temperatures.
A: While both are thickeners, HEC offers higher clarity and stability in acidic formulations compared to CMC. The choice depends on the desired texture, pH, and product compatibility. They are sometimes blended for synergistic effects.