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Biodegradation of 2-fluorobenzoate in upflow fixed bed bioreactors operated with different growth support materials

机译:2-氟苯甲酸酯在采用不同生长支持材料操作的上流固定床生物反应器中的生物降解

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Three upflow fixed bed bioreactors treating an aqueous stream containing 2-fluorobenzoate were operated for a period of 7 months, during which they were exposed to high organic loading rates and starvation. The reactors contained granular activated carbon (GAC), polyethylene (PE) particles and expanded clay (EC) respectively as growth support for microbial biofilms. The performance of the reactors was compared and the biofilm microbial population was followed by cell counting and denaturing gradient gel electrophoresis (DGGE). The reactor containing GAC always had 100% removal efficiency owing to the adsorption properties of the material combined with biodegradation. The GAC reactor also recovered better after starvation periods in the sense that it showed more stable behaviour than the reactors containing EC and PE. The highest biological elimination capacity was observed for the reactor containing EC, which reached 200 mg day(-1) L-1 during reactor start-up, but during long-term operation the reactor containing GAC showed the highest biological elimination capacity, 140 mg day(-1) L-1. DGGE analysis indicated that starvation periods seemed to be responsible for shifts in the microbial population. (c) 2006 Society of Chemical Industry.
机译:将三个处理含2-氟苯甲酸酯的水流的上流式固定床生物反应器运行7个月,在此期间,它们会暴露于高有机负荷率和饥饿状态。反应器分别包含粒状活性炭(GAC),聚乙烯(PE)颗粒和膨胀粘土(EC)作为微生物生物膜的生长载体。比较反应器的性能,并通过细胞计数和变性梯度凝胶电泳(DGGE)跟踪生物膜微生物种群。含有GAC的反应器由于材料的吸附性能以及生物降解作用,始终具有100%的去除效率。饥饿期后,GAC反应器的恢复性能也更好,因为它表现出比含EC和PE的反应器更稳定的性能。观察到含有EC的反应器具有最高的生物消除能力,在反应器启动期间达到200 mg day(-1)L-1,但在长期运行期间,含有GAC的反应器显示出最高的生物消除能力,为140 mg第(-1)天L-1。 DGGE分析表明,饥饿时期似乎是微生物种群变化的原因。 (c)2006年化学工业协会。

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