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首页> 外文期刊>Aerosol Science and Technology: The Journal of the American Association for Aerosol Research >Small-Ion and Nano-Aerosol Production During Candle Burning: Size Distribution and Concentration Profile with Time
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Small-Ion and Nano-Aerosol Production During Candle Burning: Size Distribution and Concentration Profile with Time

机译:蜡烛燃烧过程中产生的小离子和纳米气溶胶:尺寸分布和浓度随时间的分布

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摘要

The characteristics of small-ions and aerosols in the diameter range 0.4 nm to 1.1 mu m, produced during burning of paraffin wax tea-light candles, were investigated using a custom-built aspiration condenser ion mobility spectrometer (ACIMS) and a sequential mobility particle sizer and counter (SMPS+C) system. Peaks in the number concentration were observed at diameters 10-30 nm and 100-300 nm, consistent with "normal" and "sooting" burn modes. In addition, a smaller mode in the size range 2.5-9 nm was observed, interpreted as a soot-precursor species. When a fan was placed behind the burning candle a "modified small-ion" signal was seen at sizes 1.1-2.0 nm. This was not observed without the fan present or when a lamp chimney was used. During burning, aerosol concentration was elevated and small-ion counts were low. However after extinction of the flame, this trend was reversed and the number of small-ions increased to levels higher than those observed prior to burning, remaining so for several hours.
机译:使用定制的吸气冷凝器离子迁移谱仪(ACIMS)和顺序迁移粒子研究了石蜡蜡茶蜡燃烧过程中产生的直径在0.4 nm至1.1μm范围内的小离子和气溶胶的特性大小调整器和计数器(SMPS + C)系统。在直径10-30 nm和100-300 nm处观察到数字浓度的峰值,这与“正常”燃烧模式和“吸热”燃烧模式一致。另外,观察到在2.5-9nm的尺寸范围内的较小模式,被解释为烟灰前体物质。当将风扇放在燃烧的蜡烛后面时,在大小为1.1-2.0 nm处会看到“修饰的小离子”信号。如果没有风扇或使用了烟囱,则无法观察到这种情况。在燃烧过程中,气溶胶浓度升高,小离子数降低。但是,在火焰熄灭之后,这种趋势发生了逆转,小离子的数量增加到比燃烧前观察到的更高的水平,并保持了几个小时。

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