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Gasoline Liquefied Dimethyl Ether DME Chemical Solvent Flammable Gas

Product Details

Place of Origin: Shandong China

Brand Name: JIURUNFA

Certification: ISO9001

Model Number: DEM

Payment & Shipping Terms

Minimum Order Quantity: 1T

Price: Negotiable

Packaging Details: 50kg/100kg cylinders or ISO tanks

Delivery Time: 7-15 Days

Payment Terms: L/C,D/P,D/A,T/T

Supply Ability: 100000T

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Product Details
Highlight:

Gasoline liquefied dimethyl ether

,

flammable liquefied dimethyl ether

,

dme chemical gas

Molecular Weight:
46.07 G/mol
Flash Point:
-41 °C
Solubility In Water:
Slightly Soluble
Flammability:
Highly Flammable
Autoignition Temperature:
200 °C
Appearance:
Colorless Gas
Melting Point:
-141.5 °C
Density:
0.664 G/cm3
Molecular Weight:
46.07 G/mol
Flash Point:
-41 °C
Solubility In Water:
Slightly Soluble
Flammability:
Highly Flammable
Autoignition Temperature:
200 °C
Appearance:
Colorless Gas
Melting Point:
-141.5 °C
Density:
0.664 G/cm3
Product Description
Gasoline Liquefied Dimethyl Ether (DME) Chemical Solvent Flammable Gas
Product Introduction
Dimethyl Ether (DME) is a colorless, volatile, and flammable gas with versatile industrial applications. This solvent combines excellent performance with environmental benefits.
Industrial Applications
DME serves as an exceptional industrial solvent with multiple advantages:
  • Superior Solvent: Used in adhesives, cleaning agents, oil extractants, and paint formulations
  • Environmental Benefits: Low toxicity, rapid evaporation, and residue-free performance
  • Aerosol Propellant: Replaces harmful hydrofluorocarbons in spray products including cosmetics, paints, and medical applications
Additional Applications
DME demonstrates remarkable versatility across multiple sectors:
  • Clean Fuel Alternative: Superior to LPG with higher combustion efficiency and lower emissions for automotive and household use
  • Hydrogen Production: Enables cost-effective hydrogen generation through steam reforming at lower temperatures
Production Methods
Methanol Dehydration Method
The predominant industrial production method featuring:
  • Catalytic conversion of methanol (2CH3OH → CH3OCH3 + H2O)
  • Simple process with low operational costs
  • Utilizes γ-alumina or ion exchange resin catalysts
Synthesis Gas Method
Advanced production techniques offering:
  • One-Step Process: Direct conversion of syngas (2CO + 4H2 → CH3OCH3 + H2O)
  • Two-Step Process: Syngas to methanol followed by dehydration
  • Broad raw material availability and high production efficiency
Market Outlook
The DME market shows strong growth potential due to:
  • Increasing global demand for clean energy solutions
  • Government support for environmentally friendly alternatives
  • Expanding applications across multiple industries
  • Continuous technological advancements in production
Conclusion
DME's unique properties make it invaluable for:
  • Industrial solvents and aerosol propellants
  • Clean fuel applications
  • Hydrogen production
With ongoing technological improvements and growing environmental awareness, DME is positioned to play an increasingly vital role in sustainable industrial development.