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Formation and Control of Nitrogen Oxide in the Heating System of a Coke Oven

机译:焦炉加热系统中氮氧化物的形成和控制

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Formation of nitrogen oxides was investigated in the heating system of a coke oven during the combustion of enriched blast furnace gas (BFG). Due to the high temperatures in the heating system in situ measures cannot be taken. With the help of computational fluid dynamics (CFD) the combustion process can be investigated in order to predict the formation reaction of NO. For this problem a nonadiabatic simulation model composed of different models and submodels that described turbulence of flow, radiation, flame characteristics, species transport, and the formation of NO was used to calculate the thermal and prompt NO emission in a pseudo steady state. The simulation tool was applied to predetermined operating points of the coke plant. The goal of this study was to investigate the influence of a staged combustion of BFG that was enriched with natural gas, converter gas, and alternatively coke oven gas on NO emission. The NO emissions of the single-stage BFG combustion increased with rising air excess up to an O2 offgas content of 3%. After having passed this maximum the NO emissions decreased. Although the double-stage NO emissions show a slight increase with rising air excess, the CFD analysis demonstrated that a double-stage combustion of BFG produces lower NO emissions than a single-stage combustion.
机译:在富含高炉燃气(BFG)的燃烧过程中,在焦炉的加热系统中研究了氮氧化物的形成。由于加热系统中的高温,不能采取原位措施。借助计算流体动力学(CFD)可以研究燃烧过程以预测NO的形成反应。对于该问题,由描述流动,辐射,火焰特性,物种传输的湍流和形成NO的不同模型和子模型组成的非抗仿真模型用于计算热量并提示在伪稳态中的发射。将仿真工具应用于焦炭植物的预定操作点。本研究的目标是探讨BFG的分阶段燃烧的影响,所述BFG富含天然气,转换器气体,还没有发射的焦炉气体。单阶段BFG燃烧的无排放量随升高的空气过量升高至0℃的O2离用含量为3%。通过此最大值后,无排放量减少。虽然双级没有排放表现出升高的空气过量略有增加,但CFD分析表明,BFG的双级燃烧产生低于单级燃烧的排放量。

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