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A novel approach to calibrating a photoacoustic absorption spectrometer using polydisperse absorbing aerosol

机译:使用多分散吸收气溶胶校准光声吸收光谱仪的一种新方法

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A new technique for calibrating photoacoustic aerosol absorption spectrometers with multiple laser passes in the acoustic cavity (multi-pass PAS) has been developed utilizing polydisperse and highly absorbing aerosol. This is the first calibration technique for multi-pass PAS instruments that utilizes particles instead of reactive gases and does not require knowledge of the exact size or refractive index of the absorbing aerosol. In this new method, highly absorbing materials are aerosolized into a polydisperse distribution and measured simultaneously with a multi-pass PAS and a cavity-attenuated phase shift particulate matter single-scattering albedo (CAPS PMSSA, Aerodyne Inc.) instrument. The CAPS PMSSA measures the bulk absorption coefficient through the subtraction of the scattering coefficient from the extinction coefficient. While this approach can have significant errors in ambient aerosol, the accuracy and precision of the CAPS PMSSA are high when the measured aerosol has a low single-scattering albedo (SSA) and particles are less than 300 nm in size, in which case truncation errors are small. To confirm the precision and accuracy of the new calibration approach, a range of aerosol concentrations were sent to the multi-pass PAS and CAPS PMSSA instruments using three different absorbing substances: Aquadag, Regal Black, and Nigrosin. Six repetitions with each of the three substances produced stable calibrations, with the standard deviation of the calibration slopes being less than 2 % at 660 nm and less than 5 % at 405 nm for a given calibration substance. Calibrations were also consistent across the different calibration substances (standard deviation of 2 % at 660 nm and 10 % at 405 nm) except for Nigrosin at 405 nm. The accuracy of the calibration approach is dependent on the SSA of the calibration substance but is roughly 6 % for the calibration substances used here, which all have an SSA near 0.4 at 405 nm. This calibration technique is easily deployed in the field as it involves no toxic or reactive gases and it does not require generation of a monodisperse aerosol. Advantages to this particle-based calibration technique versus techniques based on ozone or nitrogen dioxide absorption include no reactive losses or impact from carrier gases and the broad absorption characteristics of the particles, which eliminate potentially significant errors in calibration that come with small errors in the peak wavelength of the laser light when utilizing gas-phase standards.
机译:利用多分散和高吸收气溶胶,开发了一种校准具有多个激光器的光声气雾吸收光谱仪的新技术已经开发出多分散和高吸收气溶胶。这是用于多通物PAS仪器的第一校准技术,其利用粒子代替反应气体,并且不需要了解吸收气溶胶的精确尺寸或折射率。在这种新方法中,高吸收材料具有雾化成多分散分布,并与多通物PAS和腔缓和相移颗粒物单散射反玻璃(CAPS PMSSA,Aerodyne Inc.)仪器进行测量。帽PMSSA通过从消光系数的散射系数的减法来测量散装吸收系数。虽然这种方法在环境气溶胶中具有显着的误差,但是当测量的气溶胶具有低单散射的Albedo(SSA)和尺寸小于300nm时,帽PMSSA的准确性和精度高,在这种情况下,粒子均为截断误差很小。为了确认新的校准方法的精度和准确性,使用三种不同的吸收物质将一系列气溶胶浓度与多通物PAS和CAPS PMSSA仪器发送到:Aquadag,Regal Black和Nigrosin。六次重复与三种物质中的每一个产生稳定的校准,校准斜率的标准偏差在660nm处小于2%,对于给定的校准物质,在405nm处小于5%。除了在405nm处的硝素外,校准也在不同的校准物质(标准偏差为2%,在405nm时为405nm的10%)。校准方法的准确性取决于校准物质的SSA,但在此处使用的校准物质的大小为6%,所有这些都具有405nm的SSA近0.4。这种校准技术在现场中容易展开,因为它涉及任何有毒或反应气体,并且它不需要产生单分散气溶胶。基于臭氧或氮素吸收的基于颗粒的校准技术的优点包括没有反应性损失或来自载气的撞击和颗粒的宽吸收特性,这消除了峰值中具有小错误的校准中的潜在显着的误差利用气相标准时激光的波长。

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