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The experimental study of fly ash recirculation combustion characteristics on a circulating fluidized bed combustor

机译:粉煤灰循环流化床燃烧器燃烧特性的实验研究

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Fly ash recirculation combustion (FARC) technology is an effective way to improve the combustion performance due to the improvement of carbon burnout as well as the utilization of calcium oxide. In order to study the effect of FARC on operation and emission characteristics of CFB boilers, a series of experiments were carried out on a lab-scale CFB combustor by using two types of fly ash (desulfurization and non-desulfurization fly ashes). Results show that with FARC, the temperature distribution in the furnace becomes uniform. The difference between the two different types of fly ash is mainly reflected in the emissions of SO2 and NO_x. Desulfurization fly ash would increase the NO_x emission while decrease the SO2 emission, and the optimum desulfurization temperature is 880 °C. On the contrary, non-desulfurization fly ash would increase SO2 emission while decrease NO_x emission. FARC could effectively improve the combustion performance, as the recirculation rate increases from 0 to 0.3, the combustion efficiency increases by 2% for both two fly ashes and the CO emission decreases, but the particulate matter emission increases. For desulfurization fly ash, Ca/S molar ratio should be appropriately reduced for inhibiting the NO_x emission when limestone was used for in situ desulfurization.
机译:粉煤灰循环燃烧(FARC)技术由于改善了碳燃烧和氧化钙的利用,是提高燃烧性能的有效途径。为了研究FARC对CFB锅炉运行和排放特性的影响,使用两种类型的粉煤灰(脱硫和非脱硫粉煤灰)在实验室规模的CFB燃烧器上进行了一系列实验。结果表明,使用FARC,炉中的温度分布变得均匀。两种不同类型的粉煤灰之间的差异主要体现在SO2和NO_x的排放中。脱硫粉煤灰会增加NO_x排放,同时降低SO2排放,最佳脱硫温度为880°C。相反,非脱硫粉煤灰将增加SO2排放,同时减少NO_x排放。 FARC可以有效地改善燃烧性能,当再循环率从0增加到0.3时,两个飞灰的燃烧效率均提高2%,CO排放量减少,但颗粒物排放量增加。对于脱硫粉煤灰,当石灰石用于原位脱硫时,应适当降低Ca / S摩尔比以抑制NO_x排放。

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