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NO_x Pollution Analysis for a Sulfur Recovery Unit Thermal Reactor

机译:硫回收单元热反应器的NO_X污染分析

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A sulfur recovery unit (SRU) thermal reactor is the most important equipment in a sulfur plant. It is negatively affected by high temperature operations. In this paper, NOx emissions from the SRU thermal reactors are simulated. Both the prototype thermal reactor and its modifications, including changing fuel mass fraction, changing inlet air quantity, changing inlet oxygen mole fraction, and changing burner geometry, are analyzed to investigate their influences on NOx emissions. In respect of the fuel mass fraction, the simulation results show that the highest NO emission occurs at a zone 1 fuel mass fraction of 0.375, around which the reactor maximum temperature and the zone 1 average temperature reach maximum values. Concerning the inlet air quantity, the highest NO emission occurs when the inlet air quantity is 2.4 times the designed inlet air quantity. This is very close to the inlet air quantity at which the maximum average temperature occurs. Regarding the inlet oxygen mole fraction, the NO emission increases as the inlet oxygen mole fraction increases. With regard to the burner geometry, the NO emission increases as the clearance of the burner acid gas tip increases. In addition, the NO emission increases as the swirling strength increases.
机译:硫回收单元(SRU)热反应器是硫厂中最重要的设备。它受高温操作的负面影响。本文采用SRU热反应器的NOx排放被模拟。分析了原型热反应器及其修改,包括改变燃料质量分数,改变入口空气量,改变入口氧摩尔分数和改变燃烧器几何形状,以研究它们对NOx排放的影响。关于燃料质量分数,模拟结果表明,在0.375的区域1燃料质量分数中出现最高的发射,其围绕其最大温度和区域1的平均温度达到最大值。关于入口空气量,当入口空气量为设计入口空气量的2.4倍时,不会发生最高的发射。这非常靠近最大平均温度的入口空气量。关于入口氧摩尔级分,随着入口氧摩尔分数的增加而增加。关于燃烧器几何形状,随着燃烧器酸性气体尖端的间隙增加,没有发射增加。此外,随着旋转强度的增加,没有发射增加。

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