Preparation of ECTFE porous membrane with a green diluent TOTM and

                                               
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Trioctyl trimellitate 99 3319-31-1 - Sigma-Aldrich

                                               
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Structure and Diffusion Behavior of Trioctyl Trimellitate (TOTM) in PVC

                                               
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Totm | Sigma-Aldrich

                                               
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Toxicity Review of TOTM - CPSC.gov

                                               
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  • What is the structure of trioctyl trimellitate (TOTM)?
  • Structural formula of Trioctyl trimellitate (TOTM) As an ester of trimellitic acid, trioctyl trimellitate (TOTM) has a complex structure with the phenyl ring of this acid at its center. Trioctyl trimellitate is thus an aromatic compound.
  • Is trioctyl trimellitate combustible?
  • Trioctyl trimellitate (TOTM) is a plasticizer with high stability. The connection is basically combustible, but difficult to ignite and not explosive. When trioctyl trimellitate is burned and thermally decomposed, acrid fumes and noxious gases such as carbon monoxide are released.
  • What is trioctyl trimellitate?
  • The compound is obtained from trimellitic anhydride and 2-ethylhexanol in an acid catalyzed esterification process. Due to its high temperature resistance, low volatility and harmlessness to health, trioctyl trimellitate is suitable as a plasticizer for special applications and mainly replaces phthalates there.
  • Where can I find information about trioctyl trimellitate (CAS 3319-31-1)?
  • Global ( 367)Suppliers J & K SCIENTIFIC LTD. Trioctyl trimellitate (CAS 3319-31-1) information, including chemical properties, structure, melting point, boiling point, density, formula, molecular weight, uses, prices, suppliers, SDS and more, available at Chemicalbook.
  • What happens when trioctyl trimellitate is burned?
  • When trioctyl trimellitate is burned and thermally decomposed, acrid fumes and noxious gases such as carbon monoxide are released. Trioctyl trimellitate (TOTM) reacts with strong oxidizing agents and acids. This can lead to reactions with intense heat development, so that the reaction products ignite.
  • How does trioctyl trimellitate react with oxidizing agents?
  • Trioctyl trimellitate (TOTM) reacts with strong oxidizing agents and acids. This can lead to reactions with intense heat development, so that the reaction products ignite. Explosive hydrogen, among other things, can form in contact with alkali metals and alkali hydrides.