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Continuous Desulfurization of Dibenzothiophene with Rhodococcus rhodochrous IGTS8 (ATCC 53968)

机译:用Rhodococcus rhodochrous IGTS8(ATCC 53968)对二苯并噻吩进行连续脱硫

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摘要

Desulfurization of a model fuel system consisting of hexadecane and dibenzothiophene (DBT) by Rhodococcus rhodochrous IGTS8 was demonstrated in a 2-L continuous stirred tank reactor (CSTR). The reactor was operated in a semicontinuous and continuous mode with and without recycling of the model fuel. A constant volumetric desulfurization activity A(t), (in mg HBP L~(-1) h~(-!)) was maintained in the reactor with a feeding strategy of fresh cell suspension based on a first-order decay of the biocatalyst. Maximum desulfurization rates, as measured by specific desulfurization activity, of 1.9 mg HBP/g DCW h were attained. Rates of biocatalyst decay were on the order of 0.072 h~(-1). Theoretical predictions of a respiratory quotient (RQ) associated with this biotransformation reaction agree well with experimental data from off-gas analysis. In addition, the ratio of the specific desulfurization activity a(t), (in mg HBP/g DCW h) of recycled and fresh biocatalyst was determined and evaluated.
机译:在2升连续搅拌釜反应器(CSTR)中证明了由Rhodococcus rhodochrous IGTS8对由十六烷和二苯并噻吩(DBT)组成的模型燃料系统进行脱硫。反应器在有和没有模型燃料再循环的情况下以半连续和连续模式运行。在反应器中保持恒定的体积脱硫活性A(t)(以HBP L〜(-1)h〜(-!mg为单位)),并基于生物催化剂的一级衰变提供新鲜细胞悬浮液的进料策略。通过比脱硫活性测定的最大脱硫速率为1.9mg HBP / g DCW·h。生物催化剂的降解速率约为0.072 h〜(-1)。与这种生物转化反应相关的呼吸商(RQ)的理论预测与废气分析的实验数据非常吻合。另外,确定并评估了再循环的和新鲜的生物催化剂的比脱硫活性a(t)的比(以mg HBP / g DCW h计)。

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