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Experimental evaluation of particle number emissions from wood combustion in a closed fireplace

机译:封闭式壁炉中木材燃烧产生的颗粒物排放的实验评估

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Particulate matter emissions from a commercially available closed fireplace were determined in terms of particle number and the size distribution, employing a dilution sampling scheme capable of providing near-real-world emission situation. The time profile of the emissions was also traced together with the main gaseous species providing insight onto the particle formation mechanisms in relation with the varying combustion conditions in the batch-wise system. An average emission factor of 1.4 × 10~(15) # kg ~1 (7.1 × 10~(13) # MJ ~1) was found for total number of particles. Nanoparticles (geometric mean diameter GMD = 28 nm) account for the 32% of the emissions, whereas larger particles (GMD = 127 nm) constitute the 68%. Number emissions were in strict relationship with the combustion conditions in the fireplace. The ignition phase is responsible for the 46% of the nanoparticle burden of the whole burning cycle. Larger particles are thought to be primary soot particles emitted during the flaming combustion phase and coated by condensing semivolatile organic species in the diluted and cooled flue gas.
机译:使用能够提供近乎真实排放情况的稀释采样方案,根据颗粒数和尺寸分布确定了商用封闭式壁炉的颗粒物排放量。还追踪了排放物的时间曲线以及主要气态物质,从而了解了与分批系统中不同燃烧条件有关的颗粒形成机理。颗粒总数的平均排放因子为1.4×10〜(15)#kg〜1(7.1×10〜(13)#MJ〜1)。纳米颗粒(几何平均直径GMD = 28 nm)占排放的32%,而较大颗粒(GMD = 127 nm)占68%。数字排放与壁炉中的燃烧条件密切相关。点火阶段负责整个燃烧循环中46%的纳米颗粒负荷。较大的颗粒被认为是在燃烧燃烧阶段排放的初级烟灰颗粒,并通过在稀释和冷却的烟道气中冷凝半挥发性有机物而被覆盖。

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