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pH influence on oxygen mass transfer coefficient in a bubble column. Individual characterization of kL and a

机译:pH对鼓泡塔中氧气传质系数的影响。 kL和a的个别表征

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摘要

Experiments were performed in a laboratory scale bubble column (10 L), to investigate the pH influence on oxygen mass transfer coefficient, in order to achieve a better control of biological processes. The liquid-side mass transfer coefficient, kL, and the specific interfacial area, a, were studied individually. The specific interfacial area was obtained using the new automatic image analysis technique developed by Ferreira et al. (2012). The pH was changed by the addition to the system of the most common acids and base used in biological process: hydrochloric acid (HCl), phosphoric acid (H3PO4) and potassium hydroxide (KOH). The results show that aqueous systems containing HCl, H3PO4 or KOH present lower volumetric liquid side mass transfer coefficient, kLa, in relation to pure systems (distilled water), this decrease being not linear. It was found that the specific interfacial area presents higher values in KOH and HCl solutions in comparison with distilled water. However, an opposite behavior was observed in the liquid-side mass transfer coefficient values. The kL behavior on the impure systems was explained based on bubble surface contamination. Higbie's and Fröessling's equations were adapted in the present work in order to be used in bubble dispersion systems.
机译:实验在实验室规模的鼓泡塔(10 L)中进行,以研究pH对氧气传质系数的影响,以便更好地控制生物过程。分别研究了液体侧传质系数kL和比界面面积a。使用Ferreira等人开发的新的自动图像分析技术获得特定的界面区域。 (2012)。通过添加生物过程中最常用的酸和碱的体系来改变pH值:盐酸(HCl),磷酸(H3PO4)和氢氧化钾(KOH)。结果表明,相对于纯净系统(蒸馏水),含有HCl,H3PO4或KOH的水性系统具有较低的体积液体侧传质系数kLa,该降低不是线性的。发现与蒸馏水相比,在KOH和HCl溶液中比界面面积呈现出更高的值。但是,在液侧传质系数值中观察到相反的行为。基于气泡表面污染来解释不纯系统上的kL行为。为了在气泡分散系统中使用,对Higbie和Fröessling的方程进行了修改。

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