首页> 外文期刊>Journal of Chemical Technology & Biotechnology >An integrated biodesulfurization process, including inoculum preparation, desulfurization and sulfate removal in a single step, for removing sulfur from oils
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An integrated biodesulfurization process, including inoculum preparation, desulfurization and sulfate removal in a single step, for removing sulfur from oils

机译:集成的生物脱硫工艺,包括接种物制备,脱硫和一步一步去除硫酸盐的过程,用于从油脂中去除硫

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BACKGROUND: A single-stage reactor, in which the growth of bacterial culture, induction of desulfurizing enzymes, and desulfurization reaction are carried out in a single step, was adopted to investigate desulfurization of dibenzothiophene (DBT) at high cell densities. Rhodococcus erythropolis, IGTS8 was used as the biocatalyst. Optimal conditions for bacterial growth and DBT desulfurization were investigated. RESULTS: Optimization of fermentation conditions was necessary to obtain high cell densities including controlling accumulation of acetate. Under optimal operating conditions, the maximum optical density at 600 nm (OD600) was measured to be 26.6 at 118 h of cultivation. When biodesulfurization of DBT in model oil with a high cell density culture of IGTS8 was investigated, accumulation of sulfate was found to limit the extent of desulfurization. A sulfate removal step was added to obtain a single-stage integrated biodesulfurization process. Sulfate removal was achieved via an aqueous bleed stream and use of a separation unit to recycle the organic phase. CONCLUSION: A proof of principle of a complete system capable of biocatalyst growth, induction, desulfurization and by-product separation was demonstrated. This system enables simplification of the biodesulfurization process and has potential to lower the operating cost of the bioprocess. (c) 2008 Society of Chemical Industry.
机译:背景:采用单级反应器,其中细菌培养的生长,脱硫酶的诱导和脱硫反应是一步进行的,用于研究高细胞密度下二苯并噻吩(DBT)的脱硫。红球红球菌IGTS8被用作生物催化剂。研究了细菌生长和DBT脱硫的最佳条件。结果:优化发酵条件对于获得高细胞密度是必要的,包括控制乙酸盐的积累。在最佳操作条件下,培养118 h时测得的600 nm最大光密度(OD600)为26.6。当对具有高细胞密度培养物IGTS8的模型油中DBT的生物脱硫进行了研究时,发现硫酸盐的积累限制了脱硫的程度。添加硫酸盐去除步骤以获得单级集成生物脱硫工艺。通过含水排出物流和使用分离单元再循环有机相来实现硫酸盐的去除。结论:证明了能够生物催化剂生长,诱导,脱硫和副产物分离的完整系统的原理证明。该系统能够简化生物脱硫过程,并具有降低生物过程运行成本的潜力。 (c)2008年化学工业协会。

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