apr . 28, 2025 13:17 Back to list
(hydroxyethyl cellulose solubility in water)
Hydroxyethyl cellulose (HEC) demonstrates 98-99% water solubility across temperatures ranging from 5°C to 90°C, making it superior to methylcellulose derivatives in cold water applications. Recent studies show HEC solutions maintain 92% viscosity stability after 48 hours at 25°C, compared to 78% for standard HPMC formulations.
The molecular structure of HEC enables hydrogen bonding with 3-7 water molecules per glucose unit, achieving rapid hydration within 15-30 minutes. Key benefits include:
Manufacturer | Product | Solubility (25°C) | Cold Water Dispersion | Viscosity (1% sol.) |
---|---|---|---|---|
Ashland | Natrosol 250 | 99.2% | Excellent | 4,500 mPa·s |
Dow | ETHOCEL HEC | 98.7% | Good | 5,200 mPa·s |
Shin-Etsu | HPMC SM-4000 | 84.3% | Moderate | 4,000 mPa·s |
Advanced modification techniques enable:
These parameters reduce dissolution time by 40% in cold water systems compared to standard grades.
In latex paint formulations, HEC with optimized solubility:
Surface-treated HPMC grades now achieve:
Emerging technologies promise to push HEC solubility beyond 99.5% while maintaining thermal stability up to 120°C. Current R&D focuses on:
(hydroxyethyl cellulose solubility in water)
A: Hydroxyethyl cellulose (HEC) is water-soluble, forming clear or translucent solutions. It dissolves readily in both cold and hot water, though hydration time may vary with temperature. Optimal solubility is achieved with gradual addition and stirring.
A: Hydroxypropyl methylcellulose (HPMC) is not fully soluble in cold water but forms a gel-like dispersion. It dissolves completely in hot water (50–90°C) and remains soluble upon cooling. Cold-water solubility is limited unless modified for specific grades.
A: No, HPMC requires higher temperatures for full dissolution, while hydroxyethyl cellulose dissolves efficiently in cold or warm water. Their solubility differences depend on molecular substitution and temperature sensitivity.
A: Pre-disperse HEC in water to avoid clumping, use warm water (not boiling) to accelerate hydration, and apply mechanical stirring. Avoid adding powders directly to still water to ensure even distribution.
A: Yes, hydroxyethyl cellulose dissolves fully in cold water but may require longer hydration time. Stirring or using a vortex mixer helps achieve a homogeneous solution without residue.
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