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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >A one-parameter model for describing the residence time distribution of closed continuous flow systems characterized by nonlinear reaction kinetics: Rod and ball mills
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A one-parameter model for describing the residence time distribution of closed continuous flow systems characterized by nonlinear reaction kinetics: Rod and ball mills

机译:用于描述以非线性反应动力学为特征的封闭连续流系统的停留时间分布的单参数模型:棒磨机和球磨机

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摘要

For evaluation of the performance of a continuous flow reactor, a description of the residence time distribution (RTD) of the reactants is required in the form of a suitable mathematical expression. For closed reactors, the analytic expression obtained from the well known axial dispersion model is too complicated for practical use. Thewo-parameter empirical model that involves one large and two small perfectly mixed sub-reactors along with a small plug flow sub-reactor provides an accurate description of RTD in the form of a relatively much simpler mathematical expression. However, due to the lack of specification of the sequence in which the sub-reactors are arranged, this model cannot be used for modeling of systems characterized by nonlinear reaction kinetics. Therefore, in this paper we propose a new one-parameter empirical model that meets both the requirements. The model involves partitioning the process unit into a number of unequal-volume perfect mixers arranged in a definite order. The first perfect mixer at the feed end is the largest, and the volumes of the successive smaller perfect mixers form a geometric progression, the inverse of the common ratio being the sole parameter of the model. Several sets of available experimental RTD data on two closed reactors, rod mills and ball mills, were analyzed using the proposed model. In most cases the model was found to fit the experimental data on a par with the dispersion and two-parameter models. Moreover, the proposed order of arrangement of different perfect mixers could be validated by demonstrating that the simulated trend of variation in the particle size distribution along the mill matches closely with that observed in practice. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了评估连续流反应器的性能,需要以合适的数学表达式的形式描述反应物的停留时间分布(RTD)。对于密闭反应堆,从众所周知的轴向弥散模型获得的解析表达式对于实际应用而言太复杂了。包含一个大和两个小的完全混合的子反应器以及一个小的活塞流子反应器的两参数经验模型以相对简单得多的数学表达式的形式提供了RTD的准确描述。但是,由于缺乏子反应器排列顺序的规范,该模型不能用于以非线性反应动力学为特征的系统的建模。因此,在本文中,我们提出了一个同时满足这两个要求的新的单参数经验模型。该模型涉及将处理单元划分为以一定顺序排列的多个不等体积的理想混合器。进料端的第一个完美混合器最大,连续的较小完美混合器的体积形成几何级数,公共比率的倒数是模型的唯一参数。使用建议的模型分析了两个封闭反应器(棒磨机和球磨机)上的几组可用的实验RTD数据。在大多数情况下,发现模型可以将实验数据与色散模型和两参数模型相提并论。此外,可以通过证明沿着轧机的粒度分布变化的模拟趋势与实际观察到的趋势紧密匹配,来验证所建议的不同完美混合器的排列顺序。 (C)2015 Elsevier B.V.保留所有权利。

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