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Primary air ratio affects coal utilization mode and NOx emission in lignite pulverized boiler

机译:一次空气比影响褐煤粉锅炉的煤炭利用方式和氮氧化物排放

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Through a previously validated numerical model, seven combustion scenarios were simulated to study the effects of primary air ratio (PAR) on coal utilization mode and NOx formation characteristics of a wall-fired lignite boiler. Distribution profiles of combustion temperature, concentration of gas components, mole fractions of NO and volatile N-intermediates were discussed. Results show that the effects of PAR on coal utilization mode, i.e. char-O-2 oxidation and char-H2O gasification process, differ in two separate ranges. When PAR is slightly increased from 0.35 to 0.41, char-O-2 oxidation deteriorates in the lower furnace region while char-H2O gasification is enhanced. However, when PAR is largely increased from 0.44 to 0.53, char-O-2 oxidation behavior gets re-improved but char-H2O gasification becomes weaker. Besides, NOx emission at the furnace exit rises monotonously with PAR increasing. Variation of coal utilization mode is attributed to the changes of mixing process between coal particles and secondary air, while the increase of NOx emission is ascribed to the increased initial oxygen around coal particles. The results thoroughly reveal the influence of air distribution between primary and secondary air on coal utilization process and NOx-related characteristics, which can be used as theoretical guidance for the practical operation of lignite-fired boilers. (C) 2019 Elsevier Ltd. All rights reserved.
机译:通过先前验证的数值模型,模拟了七个燃烧场景,以研究一次空气比(PAR)对壁挂式褐煤锅炉的煤炭利用模式和NOx形成特性的影响。讨论了燃烧温度,气体成分浓度,NO和挥发性N中间产物的摩尔分数的分布曲线。结果表明,PAR对煤利用模式即char-O-2氧化和char-H2O气化过程的影响在两个不同的范围内有所不同。当PAR从0.35略微增加到0.41时,在下部炉膛区域char-O-2氧化变差,而char-H2O气化得到增强。但是,当PAR从0.44大幅度提高到0.53时,char-O-2的氧化行为得到重新改善,但char-H2O的气化作用变弱。此外,随着PAR的增加,炉膛出口的NOx排放单调增加。煤炭利用方式的变化归因于煤颗粒与二次空气混合过程的变化,而NOx排放的增加则归因于煤颗粒周围初始氧的增加。结果彻底揭示了一次空气和二次空气之间的空气分配对煤炭利用过程和NOx相关特性的影响,可为褐煤锅炉的实际运行提供理论指导。 (C)2019 Elsevier Ltd.保留所有权利。

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