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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Enhancement of Dibenzothiophene Desulfurization by Gordonia alkanivorans Strain 1B Using Sugar Beet Molasses as Alternative Carbon Source
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Enhancement of Dibenzothiophene Desulfurization by Gordonia alkanivorans Strain 1B Using Sugar Beet Molasses as Alternative Carbon Source

机译:使用甜菜糖蜜作为替代碳源的链球戈登酵母1B菌株增强二苯并噻吩脱硫

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摘要

There are several problems limiting an industrial application of fossil fuel biodesulfurization, and one of them is the cost of culture media used to grow the microorganisms involved in the process. In this context, the utilization of alternative carbon sources resulting from agro-industrial by-products could be a strategy to reduce the investment in the operating expenses of a future industrial application. Recently, Gordonia alkanivorans 1B was described as a fructophilic desulfurizing bacterium, and this characteristic opens a new interest in alternative carbon sources rich in fructose. Thus, the goal of this study was to evaluate the utilization of sugar beet molasses (SBM) in the dibenzothiophene (DBT) desulfurization process using strain 1B. SBM firstly treated with 0.25 % BaCl_2 (w/v) was used after sucrose acidic hydrolysis or in a simultaneous saccharification and fermentation process with a Zygosaccharomyces bailii Talf1 invertase (1 %), showing promising results. In optimal conditions, strain 1B presented a μ_(max) of 0.0795 h~(?1), and all DBT was converted to 2-hydroxybiphenyl (250 μM) within 48 h with a maximum production rate of 7.78 μM h~(?1). Our results showed the high potential of SBM to be used in a future industrial fossil fuel biodesulfurization process using strain 1B.
机译:存在一些限制化石燃料生物脱硫的工业应用的问题,其中之一是用于培养涉及该过程的微生物的培养基的成本。在这种情况下,利用由农业工业副产品产生的替代碳源可以成为减少对未来工业应用的运营支出进行投资的策略。近来,Gordonia alkanivorans 1B被描述为一种果糖性脱硫细菌,这种特性引起了对富含果糖的替代碳源的新兴趣。因此,本研究的目的是评估使用菌株1B在二苯并噻吩(DBT)脱硫过程中甜菜糖蜜(SBM)的利用。蔗糖酸水解后,或用百日咳酵母(Zygosaccharomyces bailii Talf1)转化酶(1%)同时糖化和发酵过程中,先用0.25%BaCl_2(w / v)处理的SBM被使用,显示出令人鼓舞的结果。在最佳条件下,菌株1B的μ_(max)为0.0795 h〜(?1),所有DBT在48 h内均转化为2-羟基联苯(250μM),最大生产率为7.78μMh〜(?1)。 )。我们的结果表明,SBM在使用1B菌株的未来工业化石燃料生物脱硫工艺中具有很高的潜力。

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