China Di-Isononyl Phthalate (DINP) CAS NO. 28553-12-0 Pakistan

  • China Di-Isononyl Phthalate (DINP) CAS NO. 28553-12-0 Pakistan
  • China Di-Isononyl Phthalate (DINP) CAS NO. 28553-12-0 Pakistan
  • China Di-Isononyl Phthalate (DINP) CAS NO. 28553-12-0 Pakistan
  • What is a CAS RN for diisononyl phthalate?
  • On May 23rd EPA received a manufacturer requested risk evaluation for diisononyl phthalate (DINP; CAS RN 28553-12-0 & 68515-48-0). This substance is represented by two CAS RNs (28553-12-0 & 68515-48-0) that reflect differences in how the chemical is manufactured.
  • What is the EC number for Di-''isononyl'' phthalate?
  • REACH Di-''isononyl'' phthalate EC number: 249-079-5 |CAS number: 28553-12-0 General information Classification & Labelling & PBT assessment
  • Is Di-isononyl phthalate soluble in water?
  • Insoluble in water. DI-ISONONYL PHTHALATE (28553-12-0) reacts exothermically with acids to generate isononyl alcohol and phthalic acid. Strong oxidizing acids may cause a vigorous reaction that is sufficiently exothermic to ignite the reaction products. Heat is also generated by interaction with caustic solutions.
  • What is diisononyl phthalate?
  • Diisononyl Phthalate is a general-purpose plasticizer for polyvinyl chloride. ChEBI: The diisononyl ester of benzene-1,2-dicarboxylic acid. Oily colorless liquid with a slight ester odor. Denser than water. Insoluble in water. Insoluble in water. Diisononyl phthalate reacts exothermically with acids to generate isononyl alcohol and phthalic acid.
  • What is DINP phthalate used for?
  • About 95% of DINP is used in PVC applications. HMW phthalates can be used in (electrical) wire and cables, flexible PVC sheets, coated fabrics, automotive applications (synthetic leather for car interiors, car underbody coatings, cables), building and construction (e.g. waterproofing) and (vinyl) flooring (www.dinp-facts.com).
  • Is diisononyl phthalate soluble in water?
  • Insoluble in water. Insoluble in water. Diisononyl phthalate reacts exothermically with acids to generate isononyl alcohol and phthalic acid. Strong oxidizing acids may cause a vigorous reaction that is sufficiently exothermic to ignite the reaction products. Heat is also generated by interaction with caustic solutions.

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