基于分解速率常数的DBD反应器可行工作点预测

E. Skariah, S. T K
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引用次数: 1

摘要

近年来,为了解决空气污染问题,世界各地都在实施严格的排放法规。重要的是,除了传统的污染控制方法外,还必须采用适当的技术解决办法。非热等离子体反应器被证明是有效的处理几种污染物,如果适当调整。本文模拟了介质阻挡放电反应器的一维数值模型和数学模型。将这些模型的解进行耦合,得到了特定氮氧化物排放条件下反应器的最佳运行条件。分析了沉积功率和分解速率常数的重要性。由此推断,仔细调整DBD反应器的运行参数可以提高DBD反应器的效率。
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Prediction of Feasible Operating Point for a DBD Reactor Based on Decomposition Rate Constant
Strict emission regulations are being implemented worldwide to tackle the issues of air pollution these years. It is important that suitable technological solutions have to be introduced in addition to the conventional pollution control methods. Non thermal plasma reactors were proved to be effective in tackling several pollutants, if properly tuned. One dimensional numerical model and mathematical model of a dielectric barrier discharge reactor is simulated in this work. The solutions of these models are coupled to obtain the best operating conditions of the reactor under specific emission conditions of oxides of nitrogen. The importance of power deposited and decomposition rate constant is analyzed. It is inferred that careful tuning of operating parameters can improve the efficiency of DBD reactor.
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