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Influence of solid polymers on the response of multi-phase bioreactors treating a-pinene-polluted air

机译:固体聚合物对多相生物反应器处理α-pine烯污染空气的响应的影响

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The use of biological techniques for the removal of hydrophobic and recalcitrant volatile compounds at industrial scale has recently significantly increased. In the present work, studies were undertaken aimed at comparing the performance of a continuous stirred tank bioreactor (CSTB) with either a single liquid phase or in the presence of a solid non-aqueous phase (NAP), for the biodegradation of a-pinene. Specifically, 3.5 mm diameter beads of Hytrel G3548L were selected as solid NAP based on their affinity for a-pinene. Performance was evaluated over a period of 322 days. However, the experimental results showed no significant enhancement of a-pinene biodegradation in presence of the NAP compared to the reactor with a single liquid phase. Under steady-state conditions, when Hytrel G3548L (5%) was added to the CSTB, the maximum elimination capacity (EC_(max)) achieved was ~60 g m~(-3) h~(-1), which was similar as in the absence of the NAP. Under transient shock-load conditions similar results were obtained with or without NAP, although attenuation was observed in the decrease of the removal efficiency (RE) during overload when polymer beads were present.
机译:最近,在工业规模上使用生物技术去除疏水性和难降解的挥发性化合物的数量大大增加。在当前的工作中,进行了旨在比较连续搅拌釜式生物反应器(CSTB)与单一液相或在存在固体非水相(NAP)的情况下a--烯生物降解性能的研究。 。具体地,基于它们对α-pine烯的亲和力,将Hytrel G3548L的3.5mm直径的珠选择为固体NAP。在322天的时间内评估了性能。然而,实验结果表明,与具有单一液相的反应器相比,在存在NAP的情况下,α-pine烯的生物降解没有显着增强。在稳态条件下,当将Hytrel G3548L(5%)加入CSTB时,达到的最大消除容量(EC_(max))为〜60 gm〜(-3)h〜(-1),与在没有NAP的情况下。在瞬态冲击载荷条件下,使用或不使用NAP均可获得相似的结果,尽管在存在聚合物珠粒的情况下,过载期间去除效率(RE)的降低已观察到衰减。

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