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A CFD-based evaluation of selective non-catalytic reduction of nitric oxide in iron ore grate-kiln plants

机译:基于CFD的铁矿石炉窑中选择性非催化还原一氧化氮的评估

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The overall goal of this study is to explore the function of selective non-catalytic reduction of nitric oxide (NO) in iron ore grate-kiln plants. Computational fluid dynamics is used to model the flow and the injection of urea and cyanuric acid reagents. Temperature, residence time and inlet NO content are varied, and the effects on the reduction of NO are studied. The simulations show that the use of urea results in a higher reduction of NO within the temperature window investigated as compared to cyanuric acid; however, urea cannot be used for NO reduction over the entire range of applicable temperatures. Cyanuric acid is usable within the entire temperature range for high NO content (i.e., 300 ppm) in the flue gas, but it is not effective for low NO concentration (i.e., 150 ppm). Moreover, the simulations indicate that temperature has a larger influence on the NO reduction than the residence time.
机译:这项研究的总体目标是探索铁矿石炉窑工厂中选择性非催化还原一氧化氮(NO)的功能。计算流体动力学用于模拟尿素和氰尿酸试剂的流动和注入。改变温度,停留时间和入口NO含量,并研究其对NO还原的影响。模拟结果表明,与氰尿酸相比,使用尿素可在所研究的温度范围内降低NO的含量。但是,尿素不能用于整个适用温度范围内的NO还原。氰尿酸可在整个温度范围内用于烟道气中的高NO含量(即300 ppm),但对低NO浓度(即150 ppm)无效。此外,模拟表明,温度对NO还原的影响大于停留时间。

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