Alternatives to LMW Phthalate Plasticizers for PVC: Selection Use Turkey

  • Alternatives to LMW Phthalate Plasticizers for PVC: Selection Use Turkey
  • Alternatives to LMW Phthalate Plasticizers for PVC: Selection Use Turkey
  • Alternatives to LMW Phthalate Plasticizers for PVC: Selection Use Turkey
  • Can LMW phthalates be substituted in the aquatic environment?
  • Unlike in the indoor environment, the substitution of LMW phthalates in the aquatic environment was characterized by a significant shift towards plasticizers with potentially hazardous properties.
  • What are LMW phthalates?
  • LMW phthalates are characterized by up to six carbon atoms in the main chain . Furthermore, the demand for alternative plasticizers is increasing. Today, the most frequently used non-phthalates are adipates, terephthalates (main representative DEHT) and Diisononyl 1, 2-cyclohexanedicarboxylic acid (DINCH) .
  • Are HMW phthalates a good plasticizer?
  • However, HMW phthalates already constituted a comparatively strong proportion in the mid-2000s. In general, plasticizers with low volatility and migration rate are more suitable for stressed outdoor applications with respect to hydrolysis, leaching and microbial degradation [72, 116].
  • Are there alternatives to phthalate plasticizers?
  • CALCE has been being interested in the performance and reliability of newly alternative materials, which are aligned to the legislations, and proposed potential alternatives to phthalate plasticizers, including bio-based substitutes and thermoplastic elastomers.
  • Are LMW phthalates harmful to reproductive health?
  • In particular, LMW ortho-phthalates have been found to be damaging to reproductive health . In the electronics industry, plasticized PVC forms the coatings on wires and various plastic parts in electronic devices. Some of the most common phthalates found in PVC applications include DEHP, DBP, DEP, and DiNP.
  • Are there alternatives to DEHP in plasticizing and processing PVC?
  • The alternatives need to maintain the high performance characteristics of DEHP in plasticizing and processing PVC while not inducing adverse effects on living organisms. Phthalates containing different aliphatic substituents were scrutinized first due to their structural similarities with DEHP.

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