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Trace metal analysis in arctic aerosols by an inductively coupled plasma-time of flight-mass spectrometer combined with an inductively heated vaporizer

机译:通过电感耦合等离子体飞行时间质谱仪结合感应加热蒸发器在北极气溶胶中进行痕量金属分析

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摘要

Two newly developed instruments were combined to analyze the trace metal content in size separated arctic aerosols during the measurement campaign ASTAR 2004 (Arctic Study of Tropospheric Aerosols, Clouds and Radiation 2004) at Spitsbergen in MayJune 2004. The aim of this extensive aerosol measurement campaign was to obtain a database for model-calculations of arctic aerosol, which play an important role in the global climate change. The ASTAR project was centered on two aircraft measurement campaigns, scheduled from 2004 to 2005, addressing both aerosol and cloud measurements, combined with ground-based and satellite observations. In the present paper one example for the analysis of ground-based aerosol particles is described. The sampling of aerosol particles was performed in a well-known manner by impaction of the particles on cleaned graphite targets. By means of a cascade impactor eight size classes between 0.35 and 16.6 μm aerodynamic diameters were separated. To analyze the metal content in the aerosol particles the targets were rapidly heated up to 2700 °C in an inductively heated vaporizer system (IHVS). An argon flow transports the vaporized sample material into the inductively coupled plasma (ICP) used as ionization source for the time of flight-mass spectrometer (TOF-MS). The simultaneous extraction of the ions from the plasma, as realized in the TOF instrument, allows to obtain the full mass spectrum of the sample during the vaporization pulse without any limitation in the number of elements detected. With optimized experimental parameters the element content in arctic aerosol particles was determined in a mass range between 7Li and 209Bi. Comparing the size distribution of the elemental content of the aerosol particles, two different meteorological situations were verified. For calibration acidified reference solutions were placed on the cleaned target inside the IHVS. The limits of detection (LOD) for the element mass on the target range between 2 and 200 pg for the elements studied, except Na, Mg, and Cr, which are influenced by high background.
机译:2004年5月在Spitsbergen举行的ASTAR 2004(对流层气溶胶,云和辐射的北极研究)2004年活动期间,将两台新开发的仪器组合起来,用于分析按尺寸分离的北极气溶胶中的痕量金属含量。这项广泛的气溶胶测量活动的目的是获得用于北极气溶胶模型计算的数据库,该数据库在全球气候变化中起着重要作用。 ASTAR项目的重点是计划于2004年至2005年进行的两次飞机测量运动,涉及气溶胶和云测量以及地面和卫星观测。在本文中,描述了一个用于分析地面气溶胶颗粒的示例。通过将颗粒撞击在清洁的石墨靶上以众所周知的方式进行气溶胶颗粒的采样。借助于级联冲击器,将空气动力学直径介于0.35和16.6μm之间的八个尺寸等级分开。为了分析气溶胶颗粒中的金属含量,将目标物在感应加热蒸发器系统(IHVS)中迅速加热至2700°C。氩气流将汽化的样品材料传输到用作飞行时间质谱仪(TOF-MS)的电离源的感应耦合等离子体(ICP)中。如在TOF仪器中实现的,从等离子体中同时提取离子,可以在汽化脉冲期间获得样品的完整质谱,而对所检测元素的数量没有任何限制。通过优化的实验参数,确定了7Li和209Bi之间的质量范围内的北极气溶胶颗粒中的元素含量。比较气溶胶颗粒中元素含量的大小分布,验证了两种不同的气象情况。为了进行校准,将酸化的参比溶液放在IHVS内的清洁目标上。对于所研究元素的元素质量,目标质量的检出限(LOD)在2 pg至200 pg之间,但Na,Mg和Cr受高背景影响。

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