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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Ozonation of Cl Reactive Black 5 using rotating packed bed and stirred tank reactor
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Ozonation of Cl Reactive Black 5 using rotating packed bed and stirred tank reactor

机译:使用旋转填充床和搅拌釜反应器将Cl反应性黑5臭氧化

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摘要

This study investigates the ozonation of Cl Reactive Black 5 (11135) by using the rotating packed bed (RPB) and completely stirred tank reactor (CSTR) as ozone contactors. The RPB, which provides high gravitational force by adjusting the rotational speed, was employed as a novel ozone contactor. The same ozone dosage was separately introduced into either the RPB or the CSTR for the investigation, while the experimental solution was continuously circulated within the apparatus consisting of the RPB and CSTR. The decolorization and mineralization efficiencies of RB5 in the course of ozonation are compared for these two methods. Moreover, the dissolved and off-gas ozone concentrations were simultaneously monitored for the further analysis. As a result, the ozone mass transfer rate per unit volume of the RPB was significantly higher because of its higher mass transfer coefficient and gas-liquid concentration driving force. Furthermore, ozonation kinetics was found to be independent of the gravitational magnitude of an ozone gas-liquid contactor. Therefore, the results suggest employing RPBs as ozone-contacting devices with the advantage of volume reduction. The experimental results, which can be used for further modeling of the ozonation process in the RPB, also show the requirement of correct design for the RPB. Consequently, the present study is useful for the understanding of practical application of RPBs. (C) 2004 Society of Chemical Industry.
机译:本研究通过使用旋转填充床(RPB)和完全搅拌釜反应器(CSTR)作为臭氧接触器,研究了Cl反应性黑5(11135)的臭氧化作用。通过调节转速提供高重力的RPB被用作新型臭氧接触器。将相同的臭氧剂量分别引入RPB或CSTR中进行研究,而实验溶液则在由RPB和CSTR组成的设备中连续循环。比较了这两种方法在臭氧化过程中RB5的脱色和矿化效率。此外,同时监测溶解的臭氧和废气中的臭氧浓度,以进行进一步分析。结果,由于RPB的每单位体积的臭氧传质速率更高,因为它具有更高的传质系数和气液浓度驱动力。此外,发现臭氧化动力学与臭氧气液接触器的重力大小无关。因此,结果表明采用RPB作为具有体积减小的优点的臭氧接触装置。实验结果可用于对RPB中的臭氧化过程进行进一步建模,也表明对RPB进行正确设计的要求。因此,本研究对于理解RPB的实际应用是有用的。 (C)2004年化学工业协会。

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