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MASS TRANSFER RATES FOR UP-PUMPING IMPELLER SYSTEMS

机译:泵浦叶轮系统的传质速率

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A number of gas-liquid processes require high intensity agitation systems to provide uniform blending and dispersion of reactants in order to achieve desired end products. Processes such as hydrogenation, fermentation, and minerals processing have used conventional down pumping or radial agitation systems with some success. In 1996, LIGHTNIN introduced the concept of Up-Pumping to the industrial marketplace as an improved mixing technology for these applications. For processes requiring gas-liquid mass transfer, such as those listed above, conventional mixing technology requires the use of gas introduction devices (sparges) below impellers. These devices can be a maintenance concern due to plugging and erosion in the presence of solids. Up-Pumping impeller systems are able to draw in a significant amount of gas from the headspace, much more so than conventional vortexing impellers designed for headspace gas incorporation. This paper will demonstrate the effectiveness of Up-Pumping impeller systems that have the potential to eliminate need for sparge devices entirely. It demonstrates the ability of Up-
机译:许多气液过程需要高强度搅拌系统,以提供反应物的均匀混合和分散,以实现所需的最终产品。诸如氢化,发酵和矿物质处理的方法使用了常规的泵送或径向搅拌系统。 1996年,LightNin推出了将工业市场的概念推出,作为这些应用的改进混合技术。对于需要燃气液体传质的方法,例如上面列出的那些,常规的混合技术需要在叶轮下使用气体引入装置(Sparges)。由于固体存在下的堵塞和侵蚀,这些装置可以是维护问题。泵送叶轮系统能够从顶部空间汲取大量的气体,比传统的涡旋叶轮专为页面气体掺入而绘制。本文将展示上泵送叶轮系统的有效性,这些叶轮系统完全消除了防喷器装置的需求。它展示了上升的能力

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