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Fine Particulate Formation During Switchgrass/Coal Cofiring

机译:柳枝//煤共烧过程中细小颗粒形成

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Experiments to examine the effects of biomass/coal cofiring on fine particle formation were performed in the Sandia Multi-Fuel Combustor using fuels of pure coal, three combinations of switchgrass and coal, and pure switchgrass. For this work, fine particles with aerodynamic diameter between 10 nm and 1 μm were examined. A constant solid-fuel thermal input of 8 kW was maintained. The combustion products were cooled from 1200 to 420℃ during passage through the 4.2 m long reactor to simulate the temperatures experienced in the convection pass of a boiler. Fine particle number densities, mass concentrations, and total integrated number and mass concentrations at the reactor exit were determined using a scanning mobility particle sizer. The fine particle number concentrations for cofiring were much higher than those achieved with dedicated coal combustion. However, the total integrated mass concentration of particles remained essentially constant for all levels of cofiring from 0% coal to 100% coal. The constant mass concentration is significant because pending environmental regulations are likely to be based on particle mass rather than particle size.
机译:在桑迪亚多燃料燃烧器中,使用纯煤,柳枝and和煤的三种组合以​​及纯柳枝fuel的燃料,进行了研究生物质/煤共烧对细颗粒形成的影响的实验。对于这项工作,检查了空气动力学直径在10 nm至1μm之间的细颗粒。保持恒定的8 kW固体燃料热输入。在通过4.2 m长的反应堆期间,燃烧产物从1200℃冷却到420℃,以模拟锅炉对流过程中经历的温度。使用扫描迁移率粒度仪确定反应器出口处的细颗粒数密度,质量浓度以及总积分数和质量浓度。共烧的细颗粒数浓度比专用煤燃烧所达到的浓度高得多。然而,对于从0%煤到100%煤的所有共烧水平,颗粒的总总质量浓度基本上保持恒定。恒定的质量浓度非常重要,因为未决的环境法规可能基于颗粒质量而不是颗粒大小。

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