首页> 外文会议>European symposium on computer aided process engineering;ESCAPE 21 >Controlling Particle Size in a Novel Spinning Disc Continuous Stir Tank and Settler Reactor for the Continuous Synthesis of Titania
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Controlling Particle Size in a Novel Spinning Disc Continuous Stir Tank and Settler Reactor for the Continuous Synthesis of Titania

机译:用于连续合成二氧化钛的新型纺丝盘连续搅拌槽和沉降反应器中的粒径控制

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In this study, we present a Novel Spinning Disc Continuous Stir Tank and Settler Reactor which has the ability to produce nanoparticles with specified morphology, particle size and distribution. This control is achieved by combining a Rotating Disc and a Continuous Stir Tank Reactor. The reactor control has been modelled using a simplified model (Ronald's equation), parameters of which (such as Young's modulus) were calculated using molecular modelling. The model was then used to study the effect of TiCI4/H2O molar ratio, TiCI4 concentration, spinning disc and CSTR impeller rotation speeds.We have in this work defined a Viscosity Power Correction Factor (VPCF) which correlates the characteristic shear and Young's moduli, for each polymorph, with actual operating conditions to achieve parameterised key indicators to obtain the critical breaking stress for desired critical particle radii; and hence obtained an adequate control for particle size and distribution when coupled with the degree of super-saturation.
机译:在这项研究中,我们提出了一种新型的转盘连续搅拌罐和沉降器反应器,该反应器具有生产具有指定形态,粒径和分布的纳米颗粒的能力。该控制是通过将转盘和连续搅拌釜反应器相结合来实现的。反应堆控制已使用简化模型(罗纳德方程)建模,其参数(例如杨氏模量)是使用分子建模计算的。然后使用该模型研究TiCl4 / H2O摩尔比,TiCl4浓度,纺丝盘和CSTR叶轮转速的影响。在这项工作中,我们定义了一个粘度功率修正因子(VPCF),该因子与特征剪切力和杨氏模量相关,对于每种多晶型物,要在实际操作条件下达到参数化的关键指标,以获得所需临界粒子半径的临界断裂应力;因此,当与过饱和度结合使用时,可以获得对粒度和分布的充分控制。

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