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Mono Ethylene Glycol (MEG)

Mono Ethylene Glycol (MEG)

Mono Ethylene Glycol (MEG) is one of the most widely used organic compounds in the chemical industry. Its chemical formula is C₂H₆O₂, and it is considered the simplest type of glycol. It is also known by names such as ethylene alcohol, dihydroxyethane, and hydrocarbonic acid.

Physical and Chemical Properties of MEG
MEG is a colorless, odorless, and toxic liquid with a sweet taste that remains in liquid form at room temperature. It is produced through the oxidation of ethylene to ethylene oxide, followed by hydration. The final product is obtained with high efficiency under neutral or acidic conditions in the presence of excess water.
Main Applications of Mono Ethylene Glycol
1. Polyester and Polymer Resin Production MEG is used as a raw material in the production of polyester fibers, polymer resins, and plastic bottles (PET). The textile, packaging, and plastics industries are the largest consumers of this compound. 2. Automotive and Industrial Antifreeze A common application of MEG is the production of antifreeze and coolant for cars, airplanes, and HVAC systems. Its low freezing point and high heat transfer capability prevent engine freezing and overheating. 3. Gas and Refining Industry In the gas industry, MEG is used as a dehydrating agent to remove moisture from natural gas. It also finds applications in chemical processes and the production of certain organic carbon compounds. 4. Other Industrial Uses Other applications include use in paints, adhesives, printing inks, leather industry, shoe wax, screen cleaners, and capacitor electrolytes.
Global MEG Market
The Asia-Pacific (APAC) region, with over 45% of the global market share, is the largest producer and consumer of MEG. Countries such as China, India, and Taiwan have the highest consumption due to the growth of textile and packaging industries. In 2018, MEG imports were valued at $14.8 billion, with China alone accounting for 61.2% of this market.
Iran; MEG Producer with 99% Purity
Iran is a major producer of high-purity MEG in the region, with products used in domestic and international industries.
MEG Production Method
Mono Ethylene Glycol is produced from ethylene and ethylene oxide in the presence of water and a silver catalyst. The process includes the following reaction:
C₂H₄O + H₂O → HOCH₂CH₂OH
In the final stages, distillation under vacuum separates by-products such as diethylene glycol and triethylene glycol from MEG. Some producers have developed innovative methods for higher purity MEG production with fewer intermediate steps.
Packaging and Storage Conditions
MEG is supplied in 230-liter drums, IBC tanks, isotanks, and corrosion-resistant polyethylene containers. The recommended storage temperature is 2–8°C to prevent glycol decomposition.
Safety Precautions
  • Store in a dry, cool, and well-ventilated area
  • Avoid heat sources, oxidizing agents, and acids
  • Use masks and gloves when handling MEG
  • Keep away from food and pharmaceutical products
Importance of MEG in PET Production
Mono Ethylene Glycol plays a key role in producing polyethylene terephthalate (PET), used in beverage bottles, packaging films, and fibers. Due to its durability and high recyclability, PET is recognized as an environmentally friendly material worldwide.
Green Innovation Example
Braskem (Brazil) and Haldor Topsoe (Denmark) launched a project in 2017 to produce MEG from sugar instead of fossil fuels, marking a significant step towards green PET production and reduced environmental impact.
Summary and MEG Benefits
Feature Benefits
Chemical Polyester production, antifreeze, industrial solvent
Industrial Use in gas, packaging, paint, and adhesives industries
Economic Global market growth with CAGR over 6% until 2025
Environmental Recyclable, alternative to fossil fuels

Information

29053100

HS Code

FCA, FOB, CIF, CFR, CPT Based on customer’s inquiry

Deliver Terms

BULK (shipped in special polyethylene tanker)

  • Bulk in seagoing vessels/barges
  • Bulk in flexi tank cars
  • Bulk in road tank cars
  • Bulk in iso tank containers

Packing into IBC barrels

230-liter barrels stacked on pallets

Packaging

Iran

Origin

Product Analysis Results Table

Mono Ethylene Glycol

No. Test Test Method Value / Result
1 Purity (PURITY) ASTM E-202 Minimum 99.8%
2 Diethylene Glycol (DEG) ASTM E-202 Maximum 0.08%
3 Water Content ASTM E-203 Maximum 0.08%
4 Acidity as Acetic Acid ASTM D-1613 Maximum 10 ppm
5 Ash (ASH) DC-254A Maximum 0.005 g/100ml
6 Chlorides EO-635 Maximum 0-1 ppm
7 Iron (Fe) ASTM E-202 Maximum 0.1 ppm
8 Aldehyde as Formaldehyde DC-163C Maximum 10 ppm
9 Color Pt-Co ASTM D-1209 Maximum 5
10 Density (20°C) ASTM D-891 1.1151 – 1.1156 g/cm³
11 Distillation @ 760 mm-Hg ASTM D-1078 IBP: ≥196°C, DP: ≤199°C, 5-95%: ≤1°C
12 UV Transmission EO-577A 220 nm: ≥70%, 275 nm: ≥95%, 359 nm: ≥99%

Mono Ethylene Glycol (MEG) 99.10%

No. Property Test Method Limit Result
1 Appearance Visual Inspection Colorless, Transparent Colorless, Transparent
2 Purity, %wt ASTM E-202 Minimum 99 99.10 MEG
3 Glycols (DEG & TEG), %wt ASTM E-202 Maximum 1.0 0.6 DEG, 0.22 TEG
4 Water, %wt ASTM E-203 Maximum 0.1 0.08
5 Acidity as Acetic Acid, ppm wt ASTM D-1613 Maximum 10 8.5
6 Density, at 20°C ASTM D-891 1.1151 – 1.1156 1.1154
7 Color, Pt-Co ASTM D-1209 Maximum 10 10
8 Distillation Range @ 760 mmHg, 5~95% Volume ASTM D-1078 IBP ≥196°C, DP ≤199°C 197

MEG - G

No. Property Normal Value Result
1 Density @ 15°C 1.05-1.11 1.11
2 Maximum MEG Content 98.6-99.6% 99.5%
3 Color (Pt-Co) 5-10 6
4 Maximum Water 2.4% 0
5 Solids 0 0
6 Suspended Materials 0 0
7 Solubility in Water Soluble Soluble
8 IBP Minimum 175 181
9 5% Minimum 194 194
10 20% Minimum 196 196
11 95% Minimum 196 198
12 DBP Maximum 210 205
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