Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Clariant Polyglykol M

Clariant Polyglykol M is a high-purity, low-foaming polyethylene glycol-based surfactant from Clariant’s Polyglykol series—designed for industrial cleaning, textile processing and agrochemical formulations where consistent wetting, emulsification and biodegradability are critical. It offers excellent water solubility, thermal stability and low ecotoxicity.
  • clariant polyglykol m_d873fd5d
  • clariant polyglykol m_d873fd5d

Features Of Clariant Polyglykol M

  1. High-purity, low-volatility polyglycol-based synthetic fluid with excellent thermal and oxidative stability.

  2. Non-toxic and biodegradable formulation compliant with REACH and GHS safety standards.

  3. Superior lubricity and film strength under high-pressure and elevated-temperature conditions.

  4. Low pour point and wide operational viscosity range for reliable performance across diverse climates.

  5. Compatible with common elastomers, seals, and metal substrates—minimizing swelling or corrosion risks.

Typical Applications Of Clariant Polyglykol M

  1. High-performance compressor lubricants for natural gas and air compression systems.

  2. Heat transfer fluids in closed-loop industrial heating and cooling circuits.

  3. Base fluid for specialty hydraulic fluids in food-grade and pharmaceutical manufacturing equipment.

  4. Lubricant component in precision gear oils for textile and paper machinery.

  5. Carrier fluid in metalworking formulations requiring low misting and high flash point.

Specifications Of Clariant Polyglykol M

Chemical TypePolyalkylene glycol (PAG), specifically polypropylene glycol-based
Product FormClear, amber liquid
AppearanceTransparent, slightly viscous liquid, free from sediment or haze
Primary ApplicationsCompressor lubrication, heat transfer, hydraulic systems, metalworking carriers
Key FeaturesThermally stable, hydrolytically resistant, non-corrosive to copper and aluminum
BenefitsExtended service life, reduced deposit formation, improved energy efficiency
Density (20 °C)Approx. 1.02–1.05 g/cm³
Flash Point (COC)≥ 220 °C


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