首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Combustion characteristics and NO formation of a retrofitted low-volatile coal-fired 330 MW utility boiler under various loads with deep-air-staging
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Combustion characteristics and NO formation of a retrofitted low-volatile coal-fired 330 MW utility boiler under various loads with deep-air-staging

机译:深空分级改造后低负荷燃煤330 MW电站锅炉的燃烧特性及NO的形成

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Investigations on the retrofitted low-volatile coal-fired 330 MW boiler were performed. Gas temperatures and concentrations, furnace temperatures, boiler efficiencies were measured under various loads. Under deep-air-staging, gas temperatures and their increasing rate are relatively high under various loads, ensuring that low-volatile coal is ignited in time. A decrease in boiler load decreases gas temperatures and their increasing rate, and results in a more distant ignition position. The O-2 consumption rate decreases and variation amplitude of its consumption rate is not apparent. The concentrations of CO and NO generated decrease. Under higher loads, the NO formation first increase and then smoothly decline. Under decreasing load, the furnace temperature decreases slightly in the primary combustion region, and there is a larger decrease in the upper portion of the furnace. With decreasing load, NOx emissions decrease from 871.5 to 743.7 mg/m(3) (6% 02). Compared with results before the retrofit, both exhaust gas temperature and unburned carbon decrease. After the retrofit, boiler efficiencies higher than 91% are achieved under various loads. Meanwhile, the mean NOx emissions decrease from 1271.6, 979.2, 988.0 to 822.4, 796.9, 743.7 mg/m(3) (6% O-2) under boiler load of 300, 230, and 150 MW, respectively. Numerical calculation results agree well with measured results. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对改装后的低挥发性燃煤330 MW锅炉进行了研究。在各种负载下测量了气体温度和浓度,炉温,锅炉效率。在深空条件下,在各种负载下,气体温度及其上升速度都相对较高,从而确保及时点燃低挥发性煤。锅炉负荷的减少会降低气体温度及其增加速率,并导致更远的点火位置。 O-2消耗率降低并且其消耗率的变化幅度不明显。产生的CO和NO的浓度降低。在较高的负荷下,NO的形成先增加然后平稳下降。在减小的负荷下,炉膛温度在一次燃烧区域中略微降低,并且炉膛上部的降幅更大。随着负荷的降低,NOx排放量从871.5降至743.7 mg / m(3)(6%02)。与改造前的结果相比,废气温度和未燃烧碳均降低。改造后,在各种负载下锅炉效率均达到91%以上。同时,在300、230和150 MW锅炉负荷下,平均NOx排放量分别从1271.6、979.2、988.0降至822.4、796.9、743.7 mg / m(3)(6%O-2)。数值计算结果与实测结果吻合良好。 (C)2016 Elsevier Ltd.保留所有权利。

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