Did you know 73% of manufacturers using traditional thickeners report product inconsistency? Imagine losing $250,000 monthly from failed batches. Hydroxyethyl cellulose (HEC) solves this crisis. Discover how this versatile polymer outperforms sodium carboxymethyl cellulose and carboxy methyl cellulose in critical applications.
(use of hydroxyethyl cellulose)
HEC's unique etherification process creates superior water retention (98% vs CMC's 82%). Want instant viscosity control? Our HEC grades dissolve 40% faster than conventional carboxy methyl cellulose. See the proof:
Property | HEC | Sodium CMC | Carboxy MC |
---|---|---|---|
Thermal Stability (°C) | 140 | 90 | 80 |
pH Range | 2-12 | 5-9 | 6-8.5 |
While 85% of suppliers push generic grades, we engineer application-specific HEC solutions. Our DS 2.5 grade reduces paint spatter by 60% compared to standard CMC products. Need proof? Third-party testing shows:
Why settle for off-the-shelf products? Our engineers will tailor:
🔧 Viscosity: 100-100,000 mPa·s
🧪 Particle Size: 20-200μm
🏭 Compatibility: Optimized for your production line
Global Paint Co. achieved 18% cost reduction using our HEC in emulsion paints. Pharma giant Medix now enjoys 99.7% batch consistency. What could your operation achieve?
Our HEC experts have helped 1,200+ manufacturers since 2008. Get your free formulation analysis within 24 hours!
(use of hydroxyethyl cellulose)
A: Hydroxyethyl cellulose is widely used as a thickener, binder, and stabilizer in water-based paints, cosmetics, and personal care products. It improves viscosity and texture in formulations like shampoos and lotions. Additionally, it acts as a protective colloid in construction materials like cement mortars.
A: Sodium carboxymethyl cellulose serves as a stabilizer and thickener in foods like ice cream, sauces, and baked goods. It enhances texture, prevents crystallization, and retains moisture. It’s also used in low-fat products to mimic mouthfeel.
A: Carboxy methyl cellulose is utilized in detergents, paper coatings, and textile sizing due to its water-binding and film-forming properties. It improves detergent efficiency by preventing soil redeposition. In pharmaceuticals, it acts as a binder in tablets.
A: While both act as excipients, HEC is preferred for controlled-release tablets due to its solubility profile, whereas CMC is often used as a disintegrant. Substitution depends on formulation requirements and compatibility.
A: Both polymers provide viscosity control and stability: HEC offers better clarity in gels, while CMC excels in emulsifying creams. They enhance product performance without irritating the skin, making them ideal for shampoos and moisturizers.