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首页> 外文期刊>African Journal of Biotechnology >Compounds interaction on biodegradation of toluene and methyl ethyl ketone mixtures in a composite biofilter
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Compounds interaction on biodegradation of toluene and methyl ethyl ketone mixtures in a composite biofilter

机译:复合生物滤池中化合物对甲苯和甲乙酮混合物生物降解的相互作用

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Compounds interaction on biodegradation of toluene and methyl ethyl ketone (MEK) mixtures in a composite bead biofilter was investigated.?The biodegradation rate of two compounds in the exponential growth phase and stationary phase?for the single compound and two compounds mixing systems was determined. For the single compound system, the biodegradation rate of two compounds in the microbial growth phase and stationary phase was inhibited with increasing inlet compound concentration. The inhibitive effect resulting from increasing the inlet compound concentration was predominated at higher inlet compound concentrations. For the two compounds mixing system, the microbial metabolic activity of biodegraded toluene in the microbial growth process and biochemical reaction process was inhibited as MEK was introduced. The inhibitive effect resulting from compounds interaction was more pronounced at higher inlet concentrations of both compounds. The maximum elimination capacity of toluene was reduced as MEK was introduced and that of MEK was not affected as toluene was introduced. Increasing concentration of MEK in the influent mixture strongly suppressed the biodegradation efficiency of toluene, while increasing concentration of toluene in the influent mixture had no effect on the biodegradation efficiency of MEK.
机译:研究了复合珠生物滤池中化合物与甲苯和甲乙酮(MEK)混合物生物降解的相互作用。?测定了两种化合物在指数生长期和固定相中的生物降解速率,确定了单一化合物和两种化合物混合体系的生物降解速率。对于单一化合物系统,随着入口化合物浓度的增加,两种化合物在微生物生长期和固定期的生物降解率受到抑制。在较高的入口化合物浓度下,由增加入口化合物浓度引起的抑制作用占主导。对于两种化合物的混合体系,引入MEK抑制了生物降解甲苯在微生物生长过程和生化反应过程中的微生物代谢活性。在两种化合物的较高入口浓度下,由化合物相互作用引起的抑制作用更加明显。引入MEK会降低甲苯的最大消除能力,而引入甲苯不会影响MEK的消除能力。进水混合物中MEK浓度的增加强烈抑制了甲苯的生物降解效率,而进水混合物中甲苯浓度的增加对MEK的生物降解效率没有影响。

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