Nontoxic Plasticizer-ATBC Switzerland

  • Nontoxic Plasticizer-ATBC Switzerland
  • Nontoxic Plasticizer-ATBC Switzerland
  • Nontoxic Plasticizer-ATBC Switzerland
  • Are bio-based plasticizers toxic?
  • Thermal stability, migration stability, biodegradability and plasticizing efficiency of bio-based plasticizers have been widely investigated and discussed in the literature. However, research on biological toxicity of bio-based plasticizers on human body and animal such as experimental mice and fish is scant.
  • What are bio-based plasticizers?
  • These bio-based plasticizers mainly include epoxidized plasticizer, polyester plasticizer, macromolecular plasticizer, flame retardant plasticizer, citric acid ester plasticizer, glyceryl ester plasticizer and internal plasticizer.
  • What are non phthalate plasticizers?
  • Therefore, plasticizers are mainly used to decrease hardness, softening temperature, elastic modulus, and embrittlement temperature of polymers, while improving their flexibility and elongation. Non-phthalate plasticizer alternatives include citric acid ester, phosphates, polyesters, halogenated alkanes, and epoxy compounds [4, 5, 6, 7].
  • Is epoxidized cardanol glycidyl ether a biobased plasticizer?
  • A novel biobased plasticizer of epoxidized cardanol glycidyl ether: Synthesis and application in soft poly (vinyl chloride) films. RSC Adv. 2015, 5, 56171–56180. [Google Scholar] [CrossRef]
  • What is epoxidized plasticizer?
  • Compared with other plasticizers, the epoxy group in the epoxidized plasticizer structure could absorb and neutralize the hydrogen chloride released by PVC during light or thermal degradation, which restricts or delays the continuous decomposition of PVC, endows PVC products with good light and thermal stability and extends their service life.
  • Can bio-based plasticizers replace O-phthalate plasticizer?
  • Bio-based plasticizers with the advantages of renewability, degradability, hypotoxicity, excellent solvent resistant extraction and plasticizing performances make them potential to replace o-phthalate plasticizers partially or totally.

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