首页> 外文期刊>Journal of Environmental Engineering >Continuous cometabolic transformation of 4-chlorophenol in the presence of phenol in a hollow fiber membrane bioreactor
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Continuous cometabolic transformation of 4-chlorophenol in the presence of phenol in a hollow fiber membrane bioreactor

机译:在中空纤维膜生物反应器中苯酚存在下4-氯苯酚的连续代谢转化

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Ail immobilized cell hollow fiber membrane bioreactor was operated continuously for the cometabolic transformation of 4-cp in the presence of phenol. In contrast to the batch operation of the bioreactor in which the immobilized cells were exposed to decreasing Substrate concentrations, at high Substrate concentrations, Under continuous Operation, dissolved oxygen was found to be a limiting nutrient. It was found that Substrate degradation was enhanced by aerating the feed with pure oxygen. It was also found that the optimum number of hollow fibers in the bioreactor was 25, ca. 30% bioreactor volume. This Occurred due to a balance of the pore space available for cell immobilization in the fibers against the extracapillary space available for Suspension cell growth. During continuous operation, regardless of feed rate (21-60 mL(.)h(-1)), the maximum substrate loading was found to be 9 mg(.)h(-1) each of phenol and 4-cp in order that both substrates were completely transformed. In anticipation of reduced provision of phenol as a specific growth substrate for 4-cp cometabolic transformation, it was concluded that complete transformation of 4-cp could be effected through a minimum Substrate concentration ratio of phenol:4-cp of 1:1.8.
机译:将所有固定化细胞的中空纤维膜生物反应器在苯酚存在下连续进行4-cp的代谢转化。与将固定化细胞暴露于降低的底物浓度的生物反应器的分批操作相反,在高底物浓度下,在连续操作下,发现溶解氧是一种限制性营养素。发现通过用纯氧对进料充气对底物的降解作用得到增强。还发现生物反应器中的中空纤维的最佳数量为约25。 30%生物反应器体积。这是由于可用于固定在纤维中的细胞的孔空间与可用于悬浮细胞生长的毛细血管外空间之间的平衡所致。在连续操作过程中,无论进料速度如何(21-60 mL(.h)(-1)),苯酚和4-cp的最大底物负载量均为9 mg(.h(-1))。两种底物都已完全转化。预期减少苯酚作为4-cp代谢转化的特定生长底物的提供量,可以得出结论,可以通过苯酚:4-cp的最小底物浓度比为1:1.8来实现4-cp的完全转化。

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