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Dibenzothiophene oxidation by horseradish peroxidase in organic media: Effect of the DBT:H_2O_2 molar ratio and H_2O_2 addition mode

机译:辣根过氧化物酶在有机介质中氧化二苯并噻吩:DBT:H_2O_2摩尔比和H_2O_2添加方式的影响

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摘要

Its is well known that in the biodesulfurization (BDS) process the low water solubility of sulfur compounds hinders its transference from the oil phase to the cells being the rate-limiting step in the metabolism of dibenzothiophenes (DBT). Thus sulfur compounds derivatives with high water solubility could be more easily transported increasing the BDS efficiency. The present work performed a stepwise evaluation of the enzymatic oxidation of DBT by horseradish peroxidase (HRP). Reactions were carried out in monophasic organic media containing 25% (v/v) acetonitrile. The following parameters were evaluated: DBT:H_2O_2 molar ratio (1:1-1:20); H_2O_2 addition mode (single or stepwise); pH (6.0-8.0) and temperature (37-50℃). Best results were observed in a reaction medium at pH 8.0 presenting HRP 0.06 IU ml~(-1), DBT 0.267 mM, DBT:H_2O_2 molar ratio of 1:20 (stepwise hydrogen peroxide addition) and incubated at 45 ℃ for 60 min. Under these conditions 60% of DBT was converted into dibenzothiophene sulfoxide (12%) and dibenzothiophene sulfone (46%). The DBT oxidation rate observed in this work, of 5 mmol min~(-1) g~(-1) of HRP, was 250-fold higher than the BDS rate, 20 μmol min~(-1) g~(-1) of catalyst. As such a combined enzyme-microbial desulfurization process could be envisaged. Products were determined by HPLC RP C-18.
机译:众所周知,在生物脱硫(BDS)过程中,硫化合物的低水溶性阻碍了其从油相向细胞的转移,这是二苯并噻吩(DBT)代谢的限速步骤。因此,具有较高水溶性的硫化合物衍生物可以更容易地运输,从而提高了BDS的效率。本工作对辣根过氧化物酶(HRP)对DBT的酶促氧化进行了逐步评估。反应在含有25%(v / v)乙腈的单相有机介质中进行。评估以下参数:DBT:H_2O_2摩尔比(1:1-1:20); H_2O_2加法模式(单个或逐步); pH(6.0-8.0)和温度(37-50℃)。在pH 8.0的反应介质中,HRP为0.06 IU ml〜(-1),DBT为0.267 mM,DBT:H_2O_2摩尔比为1:20(逐步加入过氧化氢)观察到最佳结果,并在45℃下孵育60分钟。在这些条件下,60%的DBT转化为二苯并噻吩亚砜(12%)和二苯并噻吩砜(46%)。在这项工作中观察到的DBT氧化速率为5 mmol min〜(-1)g〜(-1)的HRP,比BDS速率高20μmolmin〜(-1)g〜(-1)250倍。 )的催化剂。因此,可以设想组合的酶-微生物脱硫方法。产物通过HPLC RP C-18确定。

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