General description
Paraffin Wax is a solidified microcrystal that is produced by continuous boiling of residual oils that include iso-alkanes. It is characterized in terms of soft and hard paraffins with a melting point in the range of 45-60°C.
Application
Paraffin wax can be used as a phase changing material (PCM) that can be loaded with exfoliated graphite nanoplatelets (xGnP) for the development of energy saving building materials. It may be used as a combustion material for hybrid rocket motor applications. Paraffin wax/graphite nanoparticles based nanocomposite may be used in the fabrication of hybrid storage material for solar still to desalinate seawater.
•Phase Change Material (PCM): Used in energy-saving building materials when loaded with exfoliated graphite nanoplatelets (xGnP) for thermal energy storage.
•Electrical Insulation: Utilized for its insulating properties in various electrical applications.
•Coatings and Sealants: Enhances water resistance in coatings for wood, metal, and concrete, providing protection against moisture and corrosion.
•Lubrification: Functions as a lubricant in rubber and plastic processing, metalworking, and textile manufacturing.
•Hybrid Rocket Motors: Serves as a combustion material in hybrid rocket motor applications.
•Solar Desalination: Paraffin wax/graphite nanoparticle composites used in hybrid storage materials for solar stills to desalinate seawater.
•Electrical Insulation: Utilized for its insulating properties in various electrical applications.
•Coatings and Sealants: Enhances water resistance in coatings for wood, metal, and concrete, providing protection against moisture and corrosion.
•Lubrification: Functions as a lubricant in rubber and plastic processing, metalworking, and textile manufacturing.
•Hybrid Rocket Motors: Serves as a combustion material in hybrid rocket motor applications.
•Solar Desalination: Paraffin wax/graphite nanoparticle composites used in hybrid storage materials for solar stills to desalinate seawater.
Features and Benefits
•Melting point range of 53-58 °C: ideal for various applications that require controlled melting
•Complies with the ASTM D 87 standard: ensuring consistent quality and performance in industrial settings.
•Hydrophobic Nature: Repels water, making it ideal for moisture barriers in various applications.
•Chemical Stability: Resistant to many acids, bases, and salts, ensuring integrity in diverse environments.
•Smooth Film Formation: Can form smooth, consistent films, enhancing coatings and packaging applications.
•Cost-Effectiveness: Affordable compared to other waxes, making it a preferred choice in many industries
•Complies with the ASTM D 87 standard: ensuring consistent quality and performance in industrial settings.
•Hydrophobic Nature: Repels water, making it ideal for moisture barriers in various applications.
•Chemical Stability: Resistant to many acids, bases, and salts, ensuring integrity in diverse environments.
•Smooth Film Formation: Can form smooth, consistent films, enhancing coatings and packaging applications.
•Cost-Effectiveness: Affordable compared to other waxes, making it a preferred choice in many industries
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nwg
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602.6 °F - Pensky-Martens closed cup
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317 °C - Pensky-Martens closed cup
ppe
Eyeshields, Gloves, type N95 (US)
Storage Class
11 - Combustible Solids
Regulatory Listings
Regulatory Listings are mainly provided for chemical products. Only limited information can be provided here for non-chemical products. No entry means none of the components are listed. It is the user’s obligation to ensure the safe and legal use of the product.
Substances Subject to be Indicated Names
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Substances Subject to be Notified Names
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327204-1KG:4.548173954936E12 + 327204-12KG:4.548173954929E12
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Fabrication method of based-paraffin reconfigurable microfluidic chips using liquid dielectrophoresis and electrowetting transductions.
Renaudot R, et al.
Solid-State Sensors, Actuators and Microsystems, 2013 Transducers & Eurosensors XXVII: The 17th International Conference on. IEEE, 2013. (2013)
Improvement of oil flowability by assembly of comb-type copolymers with paraffin and asphaltene
Li L, et al.
AIChE Journal, 58(7), 2254-2261 (2012)
Effect of graphite mass concentrations in a mixture of graphite nanoparticles and paraffin wax as hybrid storage materials on performances of solar still
Kabeel AE, et al.
Renewable Energy, 132, 119-128 (2019)