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  • Investigation of the co-metabolic transformation of 4-Chlorostyrene (cas 1073-67-2) into 4-chlorophenylacetic acid in Pseudomonas fluorescens ST
  • Add time:08/03/2019         Source:sciencedirect.com

    The side-chain oxygenation of styrene is able to yield substituted phenylacetic acids from corresponding styrenes by co-metabolic transformation. This co-metabolization was investigated in Pseudomonas fluorescens ST using 4-Chlorostyrene (cas 1073-67-2) as co-substrate. It was shown that non-substituted styrene is necessary to ensure the co-metabolic process. Furthermore, aspects affecting the co-transformation were studied, e.g. cell density, amount of inducer, pH, effects of co-substrate/co-product. It was demonstrated that 4-chlorophenylacetic acid and 4-chlorostyrene are able to inhibit the reaction. But, these inhibitions are influenced by salt and trace elements. Finally, a protocol was established which considers all findings. Therewith, about 6.7 g L−1 co-product were obtained after 451 h. Compared to previous studies, the co-product concentration was improved by the factor 1.4 while the reaction time was decreased by the factor 18.5. The study offers also aspects for prospective improvements in order to establish an efficient way to gain substituted acids without genetic manipulation.

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    Prev:Two-color resonant two-photon ionization and mass-analyzed threshold ionization spectroscopy of 4-Chlorostyrene (cas 1073-67-2)
    Next: Effect of cosolvent on cloud-point of binary and ternary systems for the poly(4-Chlorostyrene (cas 1073-67-2)) + cosolvent mixtures in supercritical fluid solvents)

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