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Numerical simulation of growing Cu particles in a Kenics static mixer reactor in which Cu2+ is reduced by carbohydrates

机译:在Kenics静态混合器反应器中生长Cu粒子的数值模拟,其中碳水化合物会减少Cu2 +

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Numerical simulations of the mixing of copper ions (Cu(II)) and growing particles have been performed in the range of Re 10-1000 in a vertical (down-flow) Kenics static mixer reactor. The growth of the particles is based on the local Cu(II) concentration and determines the reduction rate of the Cu(II) concentration, which is solved with a finite volume code. The particles are tracked using a code that solves the BBO equation and the flow is solved using a Lattice Boltzmann code.It was found that the Kenics static mixer enhances the mixing of Cu(II). However, at low Reynolds numbers (Re < 500) the particles are not well mixed, which has a negative influence on the particle size distribution (PSD). Furthermore, in a pipe (without a mixer) the PSD is more narrow than in a Kenics static mixer reactor, but the Cu(II) concentration is not well mixed in a pipe, which slows down the reduction process. Results indicate that a high Reynolds number is necessary to mix both the particles and Cu(II) concentration in the Kenics static mixer. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在立式(向下流)Kenics静态混合反应器中,在Re 10-1000范围内进行了铜离子(Cu(II))和生长颗粒混合的数值模拟。粒子的生长基于局部Cu(II)的浓度,并确定Cu(II)浓度的降低率,可以通过有限的体积代码来求解。使用求解BBO方程的代码跟踪粒子,并使用Lattice Boltzmann代码求解流动,发现Kenics静态混合器可增强Cu(II)的混合。但是,在低雷诺数(Re <500)下,颗粒混合不充分,这对粒度分布(PSD)产生负面影响。此外,在管子(没有混合器)中,PSD比在Kenics静态混合器反应器中更窄,但是在管子中Cu(II)的浓度没有很好地混合,这减慢了还原过程。结果表明,在Kenics静态混合器中混合颗粒和Cu(II)浓度需要很高的雷诺数。 (C)2004 Elsevier Ltd.保留所有权利。

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