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Thermodynamics of Modern Low-Emission (Low-NOX) Processes in the Combustion of Hydrocarbon Fuels

机译:烃燃料燃烧中现代低排放(低NOX)工艺的热力学

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This paper focuses on the results achieved through the addition of previously unaccounted for processes to existing calculation procedures relevant to combustion units as a whole and low-emission boiler furnaces in particular. It concerns the processes accompanying the use of NOx reduction facilities. Numerical simulations have been performed with respect to the chemical reactions of natural gas and/or methane–air mixtures in the recirculation of flue gases (combustion products). It is concluded that measures taken to reduce NOx emissions cause soot formation due to the fact that they involve the conversion of natural gas with steam, carbon dioxide or a combination of the two. The dependence of the thermodynamic equilibrium soot concentration on both the controlling temperature and concentration process conditions have been determined, based on the results of numerical simulations.
机译:本文重点介绍通过添加以前未负责的过程实现的结果,该方法与燃烧单元相关的现有计算程序特别是作为整个和低发射锅炉炉。它涉及使用NOx还原设施的过程。已经在烟道气再循环中的天然气和/或甲烷 - 空气混合物的化学反应进行了数值模拟(燃烧产物)。得出结论,减少NOX排放的措施导致烟灰形成,因为它们涉及用蒸汽,二氧化碳或两者的组合转换天然气。基于数值模拟的结果,已经确定了热力学平衡烟灰浓度对控制温度和浓缩过程条件的依赖性。

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