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首页> 外文期刊>The Korean journal of chemical engineering >A Physiological Study on Growth and Dibenzothiophene (DBT) Desulfurization Characteristics of Gordonia sp. CYKS1
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A Physiological Study on Growth and Dibenzothiophene (DBT) Desulfurization Characteristics of Gordonia sp. CYKS1

机译:Gordonia sp。的生长和二苯并噻吩(DBT)脱硫特性的生理研究。 CYKS1

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Physiological characteristics of DBT desulfurization and cell growth of Gordonia sp. CYKS1 were investigated. It exhibited a preference to ethanol in a medium containing two carbon sources, ethanol and one of the carbohydrates used, glucose, sucrose, maltose, and galactose although it consumed both carbon sources simultaneously. Cell growth on ethanol or glucose followed the Monod kinetics. The optimal range of pH for the desulfurization of DBT and the cell growth was 7 to 8. The desulfurization rate decreased about 30% at pH 6, and no significant desulfurization or cell growth was observed at pH 5. As the initial DBT concentration increased up to 1.5 mM, the desulfurization rate also increased while no significant changes in the growth rate were observed. The maximum desulfurization rate was 12.50 μmol L~(-1) h~(-1) at an initial DBT concentration of 1.5 mM. Cell growth and desulfurization activity were severely inhibited by the presence of 2-hydroxybiphenyl (2-HBP). When 0.05 mM of 2-HBP was added atthe beginning, both of the desulfurization rate and cell growth rate decreased about 20%. It was found that cell growth and desulfurization were completely inhibited in the presence of 2-HBP at 0.15 mM or a higher concentration. The inhibition by 2,2′-dihydroxybiphenyl (DHBP) was less severe than 2-HBP. About 80% of desulfurization activity was retained in the presence of 2,2′-DHBP at 0.4 mM.
机译:戈登尼亚菌DBT脱硫的生理特性和细胞生长CYKS1进行了调查。尽管它同时消耗两种碳源,但它在含有两种碳源,乙醇和所用碳水化合物之一,葡萄糖,蔗糖,麦芽糖和半乳糖的培养基中表现出对乙醇的偏爱。在乙醇或葡萄糖上的细胞生长遵循Monod动力学。 DBT脱硫和细胞生长的最佳pH范围是7至8。在pH值为6时,脱硫率降低了约30%,并且在pH值为5时未观察到明显的脱硫或细胞生长。达到1.5 mM时,脱硫率也提高了,而未观察到增长率的显着变化。在初始DBT浓度为1.5 mM时,最大脱硫率为12.50μmolL〜(-1)h〜(-1)。 2-羟基联苯(2-HBP)的存在严重抑制了细胞的生长和脱硫活性。当开始添加0.05 mM 2-HBP时,脱硫率和细胞生长率均下降约20%。发现在0.15mM或更高浓度的2-HBP存在下,细胞生长和脱硫被完全抑制。 2,2'-二羟基联苯(DHBP)的抑制作用不如2-HBP严重。在2,2'-DHBP(0.4 mM)存在下保留了约80%的脱硫活性。

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