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首页> 外文期刊>Chemical Engineering Science >A semi-empirical method to quantify the impact of mass transfer on lab-scale SCR deNOx catalyst activity testing
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A semi-empirical method to quantify the impact of mass transfer on lab-scale SCR deNOx catalyst activity testing

机译:一种定量大规模转移对实验室标度SCR DENOX催化剂活性试验的影响的半经验方法

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Industrial denitrification catalyst monoliths are regularly tested in controlled lab-scale conditions to quantify their activity. As mass transfer phenomena occurring inside the channels of the monoliths have an important impact on the global denitrification kinetics, activity measurements must be conducted in well-known conditions in terms of sample geometry and gaseous flow regimes, among others. The lack of accurate mass transfer correlations for the complex flows at stake however prevents any accurate generalisation of the test results. In this paper, we propose a semi-empirical method for the quantification of contribution of mass transfer to the global denitrification kinetics for any given test bench. It is based on the experimental adjustment of mass transfer correlations presenting a suitable form. Mass transfer can therefore be decoupled from the intrinsic kinetics and large ranges of conditions can be covered by conducting a limited number of measurements. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在受控的实验室规模条件下定期测试工业脱氮催化剂整料,以量化它们的活性。随着在整体的通道内发生的传质现象对全局脱氮动力学产生了重要影响,必须在样品几何形状和气体流动制度方面在众所周知的条件下进行活动测量。然而,股权的复杂流量缺乏准确的传质相关性阻止了测试结果的任何准确的概括。在本文中,我们提出了一种半经验方法,用于定量大规模转移对全球脱氮动力学的贡献,以了解任何给定的测试台。它基于呈现合适形式的传质相关性的实验调整。因此,可以通过在有限数量的测量中来覆盖来自内在动力学的传质转移,并且可以通过进行有限数量的测量来覆盖大范围。 (c)2020 elestvier有限公司保留所有权利。

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