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Experiment and mechanism investigation on advanced reburning for NOx reduction: influence of CO and temperature

机译:先进再燃还原NOx的实验及机理研究:CO和温度的影响

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摘要

Pulverized coal reburning, ammonia injection and advanced reburning in a pilot scale drop tube furnace were investigated. Premix of petroleum gas, air and NH3 were burned in a porous gas burner to generate the needed flue gas. Four kinds of pulverized coal were fed as reburning fuel at constant rate of 1g/min. The coal reburning process parameters including 15%~25% reburn heat input, temperature range from 1100 °C to 1400 °C and also the carbon in fly ash, coal fineness, reburn zone stoichiometric ratio, etc. were investigated. On the condition of 25% reburn heat input, maximum of 47% NO reduction with Yanzhou coal was obtained by pure coal reburning. Optimal temperature for reburning is about 1300 °C and fuel-rich stoichiometric ratio is essential; coal fineness can slightly enhance the reburning ability. The temperature window for ammonia injection is about 700 °C~1100 °C. CO can improve the NH3 ability at lower temperature. During advanced reburning, 72.9% NO reduction was measured. To achieve more than 70% NO reduction, Selective Non-catalytic NOx Reduction (SNCR) should need NH3/NO stoichiometric ratio larger than 5, while advanced reburning only uses common dose of ammonia as in conventional SNCR technology. Mechanism study shows the oxidization of CO can improve the decomposition of H2O, which will rich the radical pools igniting the whole reactions at lower temperatures.
机译:研究了中型滴管炉中的煤粉再燃,氨气注入和先进再燃。石油,空气和NH3的预混物在多孔气体燃烧器中燃烧,以产生所需的烟道气。四种粉煤作为再燃燃料以1g / min的恒定速度进料。研究了燃煤再燃工艺参数,包括再燃热输入的15%〜25%,温度范围1100°C至1400°C以及粉煤灰中的碳,煤细度,再燃区化学计量比等。在输入25%的再燃热量的条件下,通过纯煤再燃烧获得的zhou州煤最大NO还原量为47%。再燃的最佳温度约为1300°C,富燃料化学计量比至关重要。煤细度可以略微提高再燃能力。注入氨的温度范围约为700°C〜1100°C。 CO可以提高低温下的NH3能力。在高级再燃期间,测得NO减少72.9%。为了实现超过70%的NO还原,选择性非催化NOx还原(SNCR)应该需要大于5的NH3 / NO化学计量比,而高级重燃仅使用常规SNCR技术中的普通剂量的氨。机理研究表明,CO的氧化可改善H2O的分解,这将丰富自由基池,从而在较低温度下点燃整个反应。

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