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首页> 外文期刊>Atmospheric Measurement Techniques >Modification, calibration, and performance of the Ultra-High Sensitivity Aerosol Spectrometer for particle size distribution and volatility measurements during the Atmospheric Tomography Mission (ATom) airborne campaign
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Modification, calibration, and performance of the Ultra-High Sensitivity Aerosol Spectrometer for particle size distribution and volatility measurements during the Atmospheric Tomography Mission (ATom) airborne campaign

机译:超高灵敏度气溶胶光谱仪进行修改,校准和性能,用于粒度分布和大气断层扫描任务期间的挥发性测量(原子)空中运动

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Atmospheric aerosol is a key component of the chemistry and climate of the Earth's atmosphere. Accurate measurement of the concentration of atmospheric particles as a function of their size is fundamental to investigations of particle microphysics, optical characteristics, and chemical processes. We describe the modification, calibration, and performance of two commercially available, Ultra-High Sensitivity Aerosol Spectrometers (UHSASs) as used on the NASA DC-8 aircraft during the Atmospheric Tomography Mission (ATom). To avoid sample flow issues related to pressure variations during aircraft altitude changes, we installed a laminar flow meter on each instrument to measure sample flow directly at the inlet as well as flow controllers to maintain constant volumetric sheath flows. In addition, we added a compact thermodenuder operating at 300?°C to the inlet line of one of the instruments. With these modifications, the instruments are capable of making accurate (ranging from 7?% for iD/isubp/sub?&?0.07?μm to 1?% for iD/isubp/sub?&?0.13?μm), precise (&?±1.2?%), and continuous (1?Hz) measurements of size-resolved particle number concentration over the diameter range of 0.063–1.0?μm at ambient pressures of &?1000 to 225?hPa, while simultaneously providing information on particle volatility.brbrWe assessed the effect of uncertainty in the refractive index (in/i) of ambient particles that are sized by the UHSAS assuming the refractive index of ammonium sulfate (in/i?=??1.52). For calibration particles with in/i between 1.44 and 1.58, the UHSAS diameter varies by +4/?10?% relative to ammonium sulfate. This diameter uncertainty associated with the range of refractive indices (i.e., particle composition) translates to aerosol surface area and volume uncertainties of +8.4/?17.8 and +12.4/?27.5?%, respectively. In addition to sizing uncertainty, low counting statistics can lead to uncertainties of &?20?% for aerosol surface area and &?30?% for volume with 10?s time resolution. The UHSAS reduction in counting efficiency was corrected for concentrations &?1000?cmsup?3/sup.brbrExamples of thermodenuded and non-thermodenuded aerosol number and volume size distributions as well as propagated uncertainties are shown for several cases encountered during the ATom project. Uncertainties in particle number concentration were limited by counting statistics, especially in the tropical upper troposphere where accumulation-mode concentrations were sometimes &?20?cmsup?3/sup (counting rates ?~??5?Hz) at standard temperature and pressure.
机译:大气气溶胶是地球大气层的化学和气候的关键组成部分。精确测量大气颗粒浓度的函数,其尺寸是颗粒微物质,光学特性和化学过程的基础。我们描述了在大气断层扫描任务(原子)的NASA DC-8飞机上使用的两个可商购的超高敏感气溶胶光谱仪(UHSASS)的改进,校准和性能。为避免与飞机高度变化期间与压力变化相关的样品流动问题,我们在每个仪器上安装了层流量计,以便在入口处直接测量样品流,以及流量控制器以保持恒定的体积鞘流。此外,我们添加了一个紧凑的热调制器,在300°C下运行到其中一条仪器的入口线。通过这些修改,仪器能够精确(为 D p Δx≤0.07Ω·0. 0.0.07Ωμm至1μm至1Ω% p ?&Δ0.13Ωμm),精确(&±1.2μm),和连续(1·hz)测量直径的尺寸分辨粒子数浓度范围为0.063-1.0?μm在环境压力下&Δ1000至225?HPA,同时提供有关颗粒挥发性的信息。 我们评估了不确定性在折射率中的影响( n < / i>)由UHSAS尺寸的环境颗粒,假设硫酸铵的折射率( n = =Δ=Δε1.52)。对于1.44和1.58之间的校准颗粒,uHSAS直径相对于硫酸铵而变化+ 4 /α10≤%。该直径与折射率范围(即颗粒组合物)相关的不确定性转化为气溶胶表面积和+ 8.4 /□17.8和+ 12.4 /α%的体积不确定性。除了施胶不确定度之外,低计数统计可以导致气溶胶表面积的& 20?%的不确定性,并且具有10μs的时间分辨率的体积的30μl。浓度&gt校正计数效率的UHSAS降低;?1000?cm ?3 。 热调整和非热抑制气溶胶数和体积尺寸分布的示例以及传播的不确定性显示在Atom项目期间遇到的几个案例。粒子数浓度的不确定性受到统计数据的限制,特别是在热带上层对流层中,其中累积模式浓度有时是& 20?cm ?3 (计数率?〜?? 5?hz)在标准温度和压力下。

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