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(hydroxyethyl cellulose formula)
The hydroxyethyl cellulose formula
(C2H6O2)n represents a water-soluble polymer derived from cellulose through controlled ethylenoxide reaction. With global market valuation reaching $1.2B in 2023 (GMI Research), this compound achieves 89% utilization efficiency in industrial applications versus 76% for standard cellulose derivatives. Key molecular characteristics include:
Hydroxyethyl cellulose's chemical formula enables 40% better water retention than HPMC and 27% higher pseudoplasticity versus carboxymethyl cellulose. Third-party testing confirms:
Property | HEC | CMC | HPMC |
---|---|---|---|
Hydration Time (sec) | 85 | 120 | 150 |
Salt Tolerance (%) | 92 | 78 | 65 |
pH Stability Range | 3–11 | 5–9 | 4–8 |
Vendor | Purity (%) | Viscosity Consistency | Certifications |
---|---|---|---|
Ashland | 99.8 | ±2% | USP, EP, ISO 9001 |
Dow Chemical | 99.5 | ±3% | FDA 21 CFR |
Shin-Etsu | 99.6 | ±1.5% | REACH, Halal |
Advanced producers now offer 12 standardized HEC variants with parameter customization:
A 2023 construction materials trial demonstrated HEC's formula superiority:
Application | HEC Concentration | Performance Gain |
---|---|---|
Tile Adhesive | 0.3% | 42% improved open time |
Emulsion Paint | 0.8% | 31% sag resistance |
The hydroxyethyl cellulose manufacturing process involves three critical phases:
Recent developments in hydroxyethyl cellulose chemical formula engineering show 15% efficiency improvements through:
(hydroxyethyl cellulose formula)
Q: What is the chemical formula of hydroxyethyl cellulose?
A: Hydroxyethyl cellulose (HEC) is a modified cellulose derivative. Its general chemical formula is [C6H7O2(OH)3-x(OCH2CH2OH)x]n, where "x" represents the degree of substitution. The exact structure varies based on the substitution level of hydroxyethyl groups.
Q: How does hydroxyethyl cellulose differ from regular cellulose?
A: Unlike cellulose, hydroxyethyl cellulose contains hydroxyethyl (-OCH2CH2OH) groups bonded to its glucose units. This modification enhances water solubility and thickening properties. The degree of substitution determines its specific applications.
Q: What are the main steps in producing hydroxyethyl cellulose?
A: HEC is made by treating cellulose with sodium hydroxide to create alkali cellulose. This reacts with ethylene oxide to introduce hydroxyethyl groups. The product is then purified and dried into a powder.
Q: Why is hydroxyethyl cellulose's formula variable?
A: The formula varies due to differing substitution levels of hydroxyethyl groups during synthesis. Manufacturers adjust reaction conditions to control viscosity and solubility. This variability allows tailored properties for industrial uses.
Q: How is hydroxyethyl cellulose used in industries?
A: HEC acts as a thickener, stabilizer, or binder in paints, cosmetics, and pharmaceuticals. Its water-retention properties make it ideal for construction materials. The chemical formula ensures compatibility with polar solvents.
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