Polyoxymethylene Dimethyl Ethers: Difference between revisions

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=Basics=
=Basics=
*Often abbreviated as PODE ‘’’p’’’oly’’’O’’’xymethylene’’’d’’’ymethl’’’e’’’ther, OMEx ( ‘’’O’’’xy’’’m’’’ethyle dimethyl ‘’’e’’’thers where X is the chain length) or more infrequently POMDME
*Often abbreviated as PODE ‘’’p’’’oly’’’O’’’xymethylene’’’d’’’ymethl’’’e’’’ther, OMEx ( ‘’’O’’’xy’’’m’’’ethyle dimethyl ‘’’e’’’thers where X is the chain length) or more infrequently POMDME
*Polyoxymethylene Dimethyl Ethers are a class of compounds related to [[DME]]
*Polyoxymethylene Dimethyl Ethers are a class of Oligomers (Something in between a compund and a giant chain polymer) related to [[DME]]
*They have the advantage of being liquid at [[STP]]
*They have the advantage of being liquid at [[STP]]
**Thus they can be used with more conventional fuel system/blended into Diesel Fuel (in a similar manner to how [[Biodiesel]] is currently blended, or how [[Ethanol]] and other [[Alcohol Fuels]] are blended into [[Gasoline]]
**Thus they can be used with more conventional fuel system/blended into Diesel Fuel (in a similar manner to how [[Biodiesel]] is currently blended, or how [[Ethanol]] and other [[Alcohol Fuels]] are blended into [[Gasoline]]
*More complex to synthesize than [[Methanol]] or [[DME]] however  
*More complex to synthesize than [[Methanol]] or [[DME]] however  
=Oligomers=
==OME₁==
*Called Dimethoxymethane
**Also known as  “Formaldehyde dimethylacetal”
**C₃H₈O₂
** (CH3O)2CH2
** (CH₃O)₂CH₂
*Properties (as of now pulled from wikipedia):
**Density: 0.8593 g cm−3 (at 20 °C)
**[[Melting Point]] −105 °C
**[[Boiling Point]] 42 °C
**[[Vapor Presssure]] 330 mmHg (20 °C)
***Need to see how this compares to how [[RVP]] is measured
**[[NIOSH]] (US health exposure limits):
***[[PEL]] [[TWA]] of 1000 ppm
***[[REL]] [[TWA]] of 1000 ppm
***[[IDLH]] [[TWA]] of 2200 ppm
***GRANTED as with more novel/niche chemicals take this with a grain of salt
***ALSO need to see if standard [[5 Gas Monitors]] / [[LEL]] + [[VOC]] meters will accurately pick up the presence + concentration of this
=Synthesis=
*As Per [https://www.sciencedirect.com/science/article/abs/pii/S0926337317305507 A 2017 Review in “Applied Catalysis” Titled “ Catalytic synthesis of polyoxymethylene dimethyl ethers (OME): A review]
**[[Formaldehyde]] -> [[Trioxane]] (TRI) or [[Paraformaldehyde]] (PF) ->
**[[Methanol]] + [[Formaldehyde]] (Or [[Formalin]] ;  need to see if it needs to be [[Anhydrous]] ) -> OME1 (aka [[Dimethoxymethane]] )


=Internal Links=
=Internal Links=
*
*[[DME]]
*[[Diesel Fuel Additives]]
*[[POM (Plastic) ]] (Related compound albeit way longer [[Chain Length]] )


=External Links=
=External Links=
*
*[https://en.m.wikipedia.org/wiki/Polyoxymethylene_dimethyl_ethers The Wikipedia Page on Polyoxymethylene Dimethyl Ethers]
*[https://www.researchgate.net/publication/381496897_Development_of_a_reduced_primary_reference_fuel_-_oxymethylene_dimethyl_ether_PRF-OMEx_mechanism_for_diesel_engine_applications A June 2024 Paper in “International Journal of Engine Research” Titled “Development of a reduced primary reference fuel – oxymethylene dimethyl ether (PRF-OMEx) mechanism for diesel engine applications“ ]
*[https://www.sciencedirect.com/science/article/abs/pii/S0016236110002383 A 2010 Study Titled “ Poly(oxymethylene) dimethyl ethers as components of tailored diesel fuel: Properties, synthesis and purification concepts” ]
*[https://www.sae.org/publications/technical-papers/content/2020-01-5084/ A 2020 Study Titled “ Nitrogen Oxide Reduction Potentials Using Dimethyl Ether and Oxymethylene Ether in a Heavy-Duty Diesel Engine” ]
*[https://www.sciencedirect.com/science/article/abs/pii/S0016236122008651 A 2022 Study Titled “Heat release peculiarities of polyoxymethylene dimethyl ether 1 – Part I: Effect of initial thermochemical conditions” ]
*[https://www.sciencedirect.com/science/article/abs/pii/S0016236120317658 A 2022 Study Titled “ The effect of poly(oxymethylene) dimethyl ethers (PODE3) on soot formation in ethylene/PODE3 laminar coflow diffusion flames” ]
*[https://pmc.ncbi.nlm.nih.gov/articles/PMC11197779/ “Critical solubility of dimethyl ether (DME)+diesel fuel and dimethyl carbonate (DMC)+diesel fuel” ]

Latest revision as of 13:01, 26 July 2025

Basics

  • Often abbreviated as PODE ‘’’p’’’oly’’’O’’’xymethylene’’’d’’’ymethl’’’e’’’ther, OMEx ( ‘’’O’’’xy’’’m’’’ethyle dimethyl ‘’’e’’’thers where X is the chain length) or more infrequently POMDME
  • Polyoxymethylene Dimethyl Ethers are a class of Oligomers (Something in between a compund and a giant chain polymer) related to DME
  • They have the advantage of being liquid at STP
    • Thus they can be used with more conventional fuel system/blended into Diesel Fuel (in a similar manner to how Biodiesel is currently blended, or how Ethanol and other Alcohol Fuels are blended into Gasoline
  • More complex to synthesize than Methanol or DME however

Oligomers

OME₁

  • Called Dimethoxymethane
    • Also known as “Formaldehyde dimethylacetal”
    • C₃H₈O₂
    • (CH3O)2CH2
    • (CH₃O)₂CH₂
  • Properties (as of now pulled from wikipedia):
    • Density: 0.8593 g cm−3 (at 20 °C)
    • Melting Point −105 °C
    • Boiling Point 42 °C
    • Vapor Presssure 330 mmHg (20 °C)
      • Need to see how this compares to how RVP is measured
    • NIOSH (US health exposure limits):
      • PEL TWA of 1000 ppm
      • REL TWA of 1000 ppm
      • IDLH TWA of 2200 ppm
      • GRANTED as with more novel/niche chemicals take this with a grain of salt
      • ALSO need to see if standard 5 Gas Monitors / LEL + VOC meters will accurately pick up the presence + concentration of this

Synthesis

Internal Links

External Links