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Experimental study of the combustion of natural gas and high-hydrogen content syngases in a radiant porous media burner

机译:辐射多孔介质燃烧器中天然气和高氢含量合成气燃烧的实验研究

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The primary objective of this work is to study the blending of natural gas in equimolar proportions with three high hydrogen content syngases in a radiant porous media burner. We examined the effects of the composition of the syngases, the fuel-to-air ratio and the thermal input on the flame stability, the radiation efficiency and the pollutant emissions (CO and NOx). In this study, we emulated the syngases with H-2-CO mixtures, in which the H-2 to CO ratio was varied between 1.5 and 3. Additionally, pure natural gas was also used as a base fuel for comparison. The thermal inputs evaluated in this study correspond to two values (300 and 500 kW/m2) found in practical applications. The results indicate that the thermal input and the fuel-to-air ratio significantly influenced the temperature profile in the radiant porous media burner, the radiation efficiency, and the pollutant emissions. On the other hand, contrary to what was observed in other studies for lower hydrogen concentrations, we found that substituting natural gas with high hydrogen content syngases (up to 50%) affected the flame stability limits. Significant differences were also observed for the radiation efficiencies and pollutant emissions. (C) 2017 Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:这项工作的主要目的是研究辐射多孔介质燃烧器中等摩尔比例的天然气与三种高氢含量合成气的混合。我们检查了合成气的组成,燃料空气比和热输入对火焰稳定性,辐射效率和污染物排放(CO和NOx)的影响。在这项研究中,我们模拟了具有H-2-CO混合物的合成气,其中H-2与CO的比率在1.5到3之间变化。此外,纯天然气也用作基础燃料进行比较。在这项研究中评估的热输入对应于实际应用中发现的两个值(300和500 kW / m2)。结果表明,热输入和燃料空气比显着影响辐射多孔介质燃烧器的温度曲线,辐射效率和污染物排放。另一方面,与其他研究中观察到的较低氢浓度相反,我们发现用高氢含量合成气(最高50%)替代天然气会影响火焰稳定性极限。在辐射效率和污染物排放方面也观察到了显着差异。 (C)2017由Elsevier Ltd代表Hydrogen Energy Publications LLC发布。

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