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Mathematical analysis of reduction of copper oxide pellets by hydrogen using the shrinking core model

机译:收缩核模型对氢气还原氧化铜颗粒的数学分析

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Reduction of copper oxide by hydrogen at high temperatures to metallic copper is one of the ways of removing hydrogen gas or its isotopes from its mixture with an inert gas like helium which is the coolant for plasma facing first wall of tritium breeding blanket modules in fusion reactor systems. The kinetics of the reaction of hydrogen with copper oxide was obtained from literature and it was used to model the reduction of a single particle of copper oxide using the well-known shrinking core model along with the pseudo-steady state hypothesis. No controlling regime was assumed a priori and the various interfacial gas concentrations were calculated by an iterative procedure based on the pseudo steady state hypothesis as function of the core radius at any time and for given operating conditions. The time required for complete reaction of the pellet was then calculated by numerical integration. A spherical geometry was considered in this work for the purpose of illustrating the technique, but the method is applicable to any kinetic model and any geometry of the pellets after simple modifications to the governing equations. (C) 2015 Elsevier B.V. All rights reserved.
机译:在高温下由氢气将氧化铜还原为金属铜是从氢气和惰性气体(如氦气)的混合物中除去氢气或其同位素的一种方法,氦气是面向聚变反应堆tri涂层毯组件第一壁的等离子体冷却剂系统。氢与氧化铜反应的动力学是从文献中获得的,并使用众所周知的收缩核模型和拟稳态假设,将其用于还原单个氧化铜颗粒。没有先验的控制机制,在给定的工作条件下,基于伪稳态假设作为堆芯半径的函数,可以通过迭代程序计算各种界面气体浓度。然后,通过数值积分来计算使粒料完全反应所需的时间。为了说明该技术,在这项工作中考虑了球形几何形状,但是在对控制方程式进行简单修改之后,该方法适用于任何动力学模型和粒料的任何几何形状。 (C)2015 Elsevier B.V.保留所有权利。

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