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首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Investigation of hydrodynamic behaviour of a pilot-scale trickle bed reactor packed with hydrophobic and hydrophilic packings using radiotracer technique (Conference Paper)
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Investigation of hydrodynamic behaviour of a pilot-scale trickle bed reactor packed with hydrophobic and hydrophilic packings using radiotracer technique (Conference Paper)

机译:使用放射性示踪技术研究装有疏水性和亲水性填料的中试滴流床反应器的流体力学行为(会议论文)

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摘要

A radiotracer study was carried out in a trickle bed reactor (TBR) independently filled with two different types of packing i.e., hydrophobic and hydrophilic. The study was aimed at to estimate liquid holdup and investigate the dispersion characteristics of liquid phase with both types of packing at different operating conditions. Water and H 2 gas were used as aqueous and gas phase, respectively. The liquid and gas flow rates used ranged from 0.83 × 10 ~(-7)-16.67 × 10 ~(-7) m ~3/s and 0-3.33 × 10 ~(-4) m ~3 (std)/s, respectively. Residence time distribution (RTD) of liquid phase was measured using ~(82)Br as radiotracer and about 10 MBq activity was used in each run. Mean residence time (MRT) and holdup of liquid phase were estimated from the measured RTD data. An axial dispersion with exchange model was used to simulate the measured RTD curves and model parameters (Peclet number and MRT) were obtained. At higher liquid flow rates, the TBR behaves as a plug flow reactor, whereas at lower liquid flow rates, the flow was found to be highly dispersed. The results of investigation indicated that the dispersion of liquid phase is higher in case of hydrophobic packing, whereas holdup is higher in case of hydrophilic packing.
机译:放射性示踪剂的研究是在滴滤床反应器(TBR)中进行的,该反应器独立装有两种不同类型的填料,即疏水性填料和亲水性填料。该研究旨在估计液体的滞留率,并研究两种填料在不同操作条件下的液相分散特性。水和H 2气分别用作水相和气相。所使用的液体和气体流速范围为0.83×10〜(-7)-16.67×10〜(-7)m〜3 / s和0-3.33×10〜(-4)m〜3(std)/ s , 分别。使用〜(82)Br作为放射性示踪剂测量了液相的停留时间分布(RTD),每次运行使用了约10 MBq的活性。根据测量的RTD数据估算平均停留时间(MRT)和液相滞留率。使用带有交换模型的轴向色散来模拟测得的RTD曲线,并获得模型参数(Peclet号和MRT)。在较高的液体流速下,TBR充当活塞流反应器,而在较低的液体流速下,发现流动高度分散。研究结果表明,在疏水填料的情况下,液相的分散度较高,而在亲水填料的情况下,固位率较高。

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