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Optimized method for black carbon analysis in ice and snow using the Single Particle Soot Photometer

机译:用单粒子烟尘率冰雪分析的优化方法

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In this study we attempt to optimize the method for measuring black carbon (BC) in snow and ice using a Single Particle Soot Photometer (SP2). Beside the previously applied ultrasonic (CETAC) and Collison-type nebulizers we introduce a jet (Apex Q) nebulizer to aerosolize the aqueous sample for SP2 analysis. Both CETAC and Apex Q require small sample volumes (a few milliliters) which makes them suitable for ice core analysis. The Apex Q shows the least size-dependent nebulizing efficiency in the BC particle diameter range of 100–1000 nm. The CETAC has the advantage that air and liquid flows can be monitored continuously. All nebulizer-types require a calibration with BC standards for the determination of the BC mass concentration in unknown aqueous samples. We found Aquadag to be a suitable material for preparing calibration standards. Further, we studied the influence of different treatments for fresh discrete snow and ice samples as well as the effect of storage. The results show that samples are best kept frozen until analysis. Once melted, they should be sonicated for 25 min, immediately analyzed while being stirred and not be refrozen.
机译:在这项研究中,我们试图使用单个粒子烟尘仪(SP2)来优化用于在雪和冰中测量黑碳(BC)的方法。除了先前施加的超声波(CETAC)和Collicon型雾化器旁边,我们介绍了喷射(Apex Q)雾化器以雾化水性样品进行SP2分析。 Cetac和Apex Q都需要小样本量(几毫升),使其适用于冰核分析。顶点Q显示了BC粒径范围为100-1000nm的最小尺寸依赖性雾化效率。 CETAC具有可连续监测空气和液体流动的优点。所有雾化器类型都需要用BC标准进行校准,用于测定未知水性样品中的BC质量浓度。我们发现Aquadag是一种适用于制备校准标准的合适材料。此外,我们研究了不同治疗对新鲜离散的雪和冰上样品的影响以及储存的影响。结果表明,样品最好保持冷冻,直至分析。融化后,它们应该超声处理25分钟,立即分析同时搅拌而不是重新分析。

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