high purity Dimethyl Phthalate Plasticizer Bangladesh

  • high purity Dimethyl Phthalate Plasticizer Bangladesh
  • high purity Dimethyl Phthalate Plasticizer Bangladesh
  • high purity Dimethyl Phthalate Plasticizer Bangladesh
  • What is plasticizer phthalate?
  • Plasticizer phthalate is a pollutant. Its teratogenic or carcinogenic effects on human. Phytotoxic effects of phthalate and its transmission through food chain. Abatement of phthalate via bioremediation. Microbe-mediated soil-phthalate bioaugmentation approaches.
  • What are phthalates used for?
  • In addition to their use as plasticizers, phthalates also find their applications in many personal care products such as colognes, perfumes, soaps, shampoos, and other cosmetic products as a fragrance (Khalil et al., 2022).
  • Is bioremediation a solution to phthalate toxicity?
  • Nevertheless, the release of these compounds in the environment is unabated. Bioremediation has been suggested as one of the ways of mitigating this menace, but studies regarding the field applications of phthalate utilizing microbes for this purpose are limited.
  • How can phthalate be biodegradable?
  • For this reason, additional supplementations of co-substrates such as acetate, glucose, or yeast extract are added to the media to accelerate bacterial growth and enhance phthalate biodegradability (Ahuactzin-Pérez et al., 2018; Gao and Wen, 2016; Li et al., 2019; Ren et al., 2016).
  • What are phthalates physico-chemical properties?
  • According to the physico-chemical properties, phthalates are water-insoluble, lipophilic, colorless liquids. Based on the length of side chains phthalates are mainly classified into low molecular weight (LMW) and high molecular weight (HMW) compounds.
  • Which enzyme converts di-alkyl phthalate into phthalic acid?
  • In the first reaction, the enzyme di-alkyl phthalate hydrolase converts the di-alkyl phthalates to their monoalkyl ester forms (hydrolyzation step I) which is then converted into phthalic acid (PA) by the activity of the enzyme monoalkyl phthalate hydrolase (hydrolyzation step II) (Fan et al., 2018; Tang et al., 2016; Wu et al., 2010a).

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