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Experimental study on low NOx emission using blast furnace gas reburning and industrial application in stoker boiler

机译:高炉煤气再燃低NOx排放的实验研究及工业应用

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In order to get some useful information on reforming one stoker boiler with the capacity of 75t/h by using gas reburning technology, the effect of some key factors such as stoichiometric coefficient, residence time, reburning temperature and reburning gas - coal heat ratio on NOx emission characteristics was studied in a one-dimensional experimental system. The results showed that the longer residence time of flue gas in reburning zone of furnace will get lower NOx emission, there exists an optimum residence time of flue gas in reburning zone, the optimum residence time is around 0.8s. There also exists an optimum stoichiometric ratio of air in reburning zone of furnace, the value of that is around 1.0. The removing rate of NOx increases with both increasing feeding rate of reburning gas and increasing reburning temperature. The gas reburning technology has been successfully used during reforming an stoker boiler with the capacity of 75t/h, the NOx removing efficiency was over than 50%.
机译:为了获得一些利用燃气再燃技术改造一台容量为75t / h的烟囱锅炉的有用信息,化学计量比,停留时间,再燃温度和再燃气-煤热比等关键因素对NOx的影响在一维实验系统中研究了发射特性。结果表明,烟气在炉膛再燃区停留时间越长,NOx排放量越低,存在一个最佳的烟气在再燃区停留时间,最优停留时间在0.8s左右。在炉的再燃区中还存在最佳的化学计量比的空气,该空气的化学计量比的值约为1.0。 NOx的去除率随着再燃烧气体的进料速度的增加和再燃烧温度的增加而增加。煤气重燃技术已经成功应用于重整炉容量为75t / h的烟囱式锅炉的改造中,其NOx去除效率超过50%。

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