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Light Source Effects on Aerosol Photoacoustic Spectroscopy Measurements

机译:光源对气溶胶光声光谱测量的影响

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摘要

Photoacoustic spectroscopy measurements of flame-generated soot aerosol coated with small amounts of water yielded absorption enhancements that were dependent on the laser used: quasi-continuous wave (Q-CW, ≈ 650 ps pulse duration and 78 MHz repetition rate) versus continuous wave (CW). Water coating thickness was controlled by exposing the aerosol to a set relative humidity (RH). At ≈ 85 % RH, the mass of the soot particles increased by an amount comparable to a monolayer of water being deposited and enhanced the measured absorption by 36 % and 15 % for the Q-CW and CW lasers, respectively. Extinction measurements were also performed using a cavity ring-down spectrometer (extinction equals the sum of absorption and scattering) with a CW laser and negligible enhancement was observed at all RH. These findings demonstrate that source choice can impact measurements of aerosols with volatile coatings and that the absorption enhancements at high RH previously measured by Radney and Zangmeister (2015) [] are the result of laser source used (Q-CW) and not from an increase in the particle absorption cross section.
机译:火焰产生的烟so气溶胶涂有少量水的光声光谱测量结果表明,吸收增强取决于所使用的激光:准连续​​波(Q-CW,≈650 ps脉冲持续时间和78 MHz重复频率)与连续波( CW)。通过将气溶胶暴露于设定的相对湿度(RH)来控制水涂层的厚度。在≈85%RH的条件下,烟尘颗粒的质量增加了与沉积的单层水相当的量,并且Q-CW和CW激光器的测得吸收分别增加了36%和15%。还使用腔环衰荡光谱仪(消光等于吸收和散射的总和)和连续波激光进行消光测量,在所有RH处观察到的增强都可以忽略不计。这些发现表明,光源的选择会影响具有挥发性涂层的气溶胶的测量,Radney和Zangmeister(2015)先前测量的在高RH下的吸收增强是使用激光光源(Q-CW)的结果,而不是增加的在颗粒吸收截面中。

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