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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Effect of mass transfer on biodesulfurization kinetics of alkylated forms of dibenzothiophene by Pseudomonas putida CECT5279
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Effect of mass transfer on biodesulfurization kinetics of alkylated forms of dibenzothiophene by Pseudomonas putida CECT5279

机译:传质对恶臭假单胞菌CECT5279烷基化形式的二苯并噻吩生物脱硫动力学的影响

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An important problem exists for the implementation of biodesulfurization technology of fuels related to the influence of mass transfer on the overall reaction rate and process yield. Pseudomonas putida CECT5279 has been shown to be one of the most promising biocatalysts, but most kinetic studies were done at small scale and their capability for the transformation of alkyl substituted forms (Cx-DBTs) has not yet been reported. RESULTS: Conversion yields and kinetic parameters were calculated under aqueous and biphasic resting cell conditions in a 2 L stirred tank reactor. In aqueous reaction media, 100% conversion of DBT, 4MDBT and 4,6DMDBT was achieved while the conversions in the presence of an organic liquid were 38% for DBT, 19.5% for 4MDBT and 16.5% for 4,6DMDBT, showing that the process is strongly affected by mass transfer between liquids. Laboratory scale-up of P. putida CECT5279 growing step was successfully carried out using a 15 L stirred tank, on the basis of the volumetric mass transfer coefficient (k_La). CONCLUSIONS: P. putida CECT5279 is capable of removing Cx-DBT compounds successfully in aqueous resting cell conditions using stirred tank reactors, but in biphasic media, mass transfer between liquids controls the process, increasing time of reaction and lowering process yield.
机译:燃料生物脱硫技术的实施存在一个重要问题,与传质对总反应速率和工艺收率的影响有关。已经显示恶臭假单胞菌CECT5279是最有前途的生物催化剂之一,但是大多数动力学研究是在小规模下进行的,尚未报道其转化烷基取代形式(Cx-DBTs)的能力。结果:在含水和双相静止池条件下,在2 L搅拌釜反应器中,计算了转化率和动力学参数。在水性反应介质中,DBT,4MDBT和4,6DMDBT的转化率为100%,而在有机液体存在下,DBT的转化率为38%,4MDBT的转化率为19.5%,4,6DMDBT的转化率为16.5%。液体之间的传质强烈影响。基于体积传质系数(k_La),使用15 L搅拌罐成功进行了恶臭假单胞菌CECT5279生长步骤的实验室放大。结论:恶臭假单胞菌CECT5279能够使用搅拌釜反应器在水性静息池条件下成功去除Cx-DBT化合物,但在双相介质中,液体之间的传质控制了过程,增加了反应时间,并降低了产率。

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