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Experimental study on effects of operating conditions and fuel quality on thermal efficiency and emission performance of a 300-MW boiler unit firing Thai lignite

机译:运行条件和燃料质量对300兆瓦泰国褐煤锅炉机组热效率和排放性能影响的实验研究

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This paper presents the results of an experimental study on a 300-MW boiler unit fired with Thai lignite.Effects of operating conditions (excess air ratio and unit load) and fuel quality on the boiler heat losses and thermal efficiency as well as on the gaseous (CO2,CO,NO_x and SO2) and particulate matter (PM) emissions from the boiler unit are discussed.The boiler thermal efficiency was weakly affected by the excess air ratio,unit load and fuel lower heating value,varying from 90.3 to 92.3% for wide ranges of the above variables.In all the tests,the NO_x,SO2 and PM emissions were below the national emission standards for these pollutants.Quite low level of the SO2 emission was secured by the high-efficiency flue gas desulphurization system.The CO emissions of rather small values were detected only at extremely low excess air ratios.The emission rate and specific emission (i.e.per MWh of electricity produced) for NO_x,SO2 and CO were quantified using experimental emission concentrations of the pollutants.Meanwhile,the emission characteristics for CO2 were determined with the use of fuel-C and fuel consumption by the boiler.In addition,the emission rate and specific emission for PM were estimated by taking into account the actual fuel-ash content and fuel consumption by the boiler,as well as the effects of SO2 adsorption by fly ash in the boiler gas ducts and overall ash-collecting efficiency of the electrostatic precipitators and flue gas desulphurization system.Elevated CO2 and NO_x emissions from the 300-MW boiler units firing Thai lignite are of great concern.
机译:本文介绍了使用泰国褐煤燃烧的300兆瓦锅炉机组的实验研究结果,运行条件​​(过量空气比和机组负荷)和燃料质量对锅炉热损失,热效率以及气态的影响讨论了锅炉单元的CO2,CO,NO_x和SO2和颗粒物(PM)排放。过量空气比,单位负荷和燃料较低的热值对锅炉的热效率影响很小,从90.3%到92.3%不等在所有测试中,NO_x,SO2和PM排放均低于这些污染物的国家排放标准。高效的烟气脱硫系统确保了SO2排放水平很低。仅在极低的过量空气比率下才检测到相当小的CO排放量。使用实验排放浓度对NO_x,SO2和CO的排放速率和比排放量(即产生的MWh)进行定量同时,通过使用燃料-C和锅炉的燃料消耗量确定了CO2的排放特性。此外,还考虑了实际燃料灰分来估算PM的排放率和比排放。锅炉的碳氢化合物含量和燃料消耗,以及锅炉烟气管道中粉煤灰对SO2的吸附以及静电除尘器和烟气脱硫系统的总体集灰效率。300MW的CO2和NO_x排放量增加烧制泰国褐煤的锅炉机组备受关注。

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