RETROFITING NATURAL-GAS FIRED BOILER FOR HYDROGEN COMBUSTION: OPERATIONAL PERFORMANCE AND NOX EMISSIONS

M. Nemitallah, M. Aliyu, Mohammed Hamdy, Mohamed A. Habib
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Abstract

The effects of hydrogen fraction (HF: volumetric fraction of H2 in the fuel mixture of CH4+H2) from 0 to 100% - by vol, on thermal and environmental performance of a 207-MW industrial water tube boiler are investigated numerically at fixed excess air factor, λ=1.15. This study aims to determine the hardware modifications required for boilers to be retrofitted for pure hydrogen operation and investigates how NOx emissions are affected by hydrogen enrichment. The results showed insignificant increases in maximum combustion temperature with increasing the HF, through the distributions of temperature profiles are distinct. In reference to the basic methane combustion, H2 flames resulted in positive temperature rise in the vicinity of the burner. Increasing the HF from 0% to 2% resulted in higher average thermal NOx emissions at the boiler exit section from 37 up to 1284 ppm, then it decreased to 1136 ppm at HF=30%, and later it leveled up to 1474 ppm at HF=100%. The spots for higher differences in NO formation compared to the reference case are shifted downstream at higher HFs. The effect of hydrogen enrichment on CO2 and H2O as radiation sources, as well as the volumetric absorption radiation of the furnace wall and the heat flux at furnace surfaces, have all been presented in relation to the effect of hydrogen addition on boiler performance.
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改装天然气锅炉以燃烧氢气:运行性能和氮氧化物排放
在固定过剩空气系数 λ=1.15 的条件下,通过数值方法研究了氢组分(HF:CH4+H2 燃料混合物中 H2 的体积分数)从 0 到 100%(按体积计算)对 207-MW 工业水管锅炉热性能和环境性能的影响。这项研究旨在确定锅炉改装为纯氢运行所需的硬件改造,并研究氮氧化物排放如何受到氢气富集的影响。结果表明,随着氢氟酸的增加,最大燃烧温度的增加并不明显,但温度曲线的分布却截然不同。与基本的甲烷燃烧相比,氢火焰会导致燃烧器附近的温度上升。氢氟酸从 0% 增加到 2% 会导致锅炉出口部分的平均热氮氧化物排放量从 37 ppm 增加到 1284 ppm,然后在氢氟酸=30% 时减少到 1136 ppm,随后在氢氟酸=100% 时达到 1474 ppm。与参考情况相比,氮氧化物形成差异较大的点在氢氟酸较高时向下游移动。氢气富集对作为辐射源的 CO2 和 H2O 的影响,以及炉壁的体积吸收辐射和炉面热通量,都与氢气添加对锅炉性能的影响有关。
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