Metabolism of the plasticizer and phthalate substitute South Africa

  • Metabolism of the plasticizer and phthalate substitute South Africa
  • Metabolism of the plasticizer and phthalate substitute South Africa
  • Metabolism of the plasticizer and phthalate substitute South Africa
  • How are phthalate ester plasticizers determined?
  • ABSTRACT Phthalate ester plasticizers were determined in rivers and dams of the Venda region, South Africa. Liquid-liquid extraction, column chromatographic clean-up and capillary gas chromatography were the methods used for the quantitative analyses.
  • Do phthalate esters plasticizers exist in south western Nigeria?
  • FATOKI OS and OGUNFOWOKAN AO (1993a) Determination of phthalate esters plasticizers in the aquatic environment of South Western Nigeria. Environ.
  • Are phthalate esters found in rivers in South Africa?
  • They are, however, comparable to the values recorded for phthalate esters in the rivers of south-western Nigeria (Fatoki and Ogunfowokan, 1993a) but lower than the levels reported for rivers in the Eastern Cape Province of South Africa (Fatoki and Noma, 2002).
  • Is 2-dicarboxylate a high-molecular-weight plasticizer?
  • 2-dicarboxylate) is a new high-molecular-weight plasticizer and a phthalate substitute. In this study, the metabolism of DINCH was investigated by oral dosage of three male vol-unteers with approximately 50 mg Hexamoll DINCH (resulting in individual doses between 0.552 and 0.606 mg/kg body weight).
  • Which phthalate ester is most prevalent in water systems?
  • On the contrary, the general pattern emerging from this study was that DBP, used primarily as a plasticizer but which also has a wide variety of non-plasticizer use, such as ingredients in paints, inks, glue, nail polish, hairspray and insect repellents, was found to be the most predominant phthalate ester in the water systems.
  • How do phthalate metabolites differ from parent phthalates?
  • Metabolites display different toxic mechanism compared to parent phthalates. Differences exist in distribution of phthalate metabolites in multiple human specimens. Urinary profiles of phthalates vary markedly for people on different continents. Reasonable FUE data are suggested for phthalate exposure assessment by human experiments.

Recommended hot-selling products