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Chemical composition of ambient aerosol, ice residues and cloud droplet residues in mixed-phase clouds: single particle analysis during the Cloud and Aerosol Characterization Experiment (CLACE 6)

机译:混合相云中的环境气溶胶,冰残余物和云液滴残基的化学成分:云和气溶胶表征实验期间的单颗粒分析(Clace 6)

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Two different single particle mass spectrometers were operated in parallel at the Swiss High Alpine Research Station Jungfraujoch (JFJ, 3580 m a.s.l.) during the Cloud and Aerosol Characterization Experiment (CLACE 6) in February and March 2007. During mixed phase cloud events ice crystals from 5–20 μm were separated from larger ice aggregates, non-activated, interstitial aerosol particles and supercooled droplets using an Ice-Counterflow Virtual Impactor (Ice-CVI). During one cloud period supercooled droplets were additionally sampled and analyzed by changing the Ice-CVI setup. The small ice particles and droplets were evaporated by injection into dry air inside the Ice-CVI. The resulting ice and droplet residues (IR and DR) were analyzed for size and composition by the two single particle mass spectrometers: a custom-built Single Particle Laser-Ablation Time-of-Flight Mass Spectrometer (SPLAT) and a commercial Aerosol Time-of-Flight Mass Spectrometer (ATOFMS, TSI Model 3800). During CLACE 6 the SPLAT instrument characterized 355 individual IR that produced a mass spectrum for at least one polarity and the ATOFMS measured 152 IR. The mass spectra were binned in classes, based on the combination of dominating substances, such as mineral dust, sulfate, potassium and elemental carbon or organic material. The derived chemical information from the ice residues is compared to the JFJ ambient aerosol that was sampled while the measurement station was out of clouds (several thousand particles analyzed by SPLAT and ATOFMS) and to the composition of the residues of supercooled cloud droplets (SPLAT: 162 cloud droplet residues analyzed, ATOFMS: 1094). The measurements showed that mineral dust was strongly enhanced in the ice particle residues. Close to all of the SPLAT spectra from ice residues did contain signatures from mineral compounds, albeit connected with varying amounts of soluble compounds. Similarly, close to all of the ATOFMS IR spectra show a mineral or metallic component. Pure sulfate and nitrate containing particles were depleted in the ice residues. Sulfate and nitrate was found to dominate the droplet residues (~90% of the particles). The results from the two different single particle mass spectrometers were generally in agreement. Differences in the results originate from several causes, such as the different wavelength of the desorption and ionisation lasers and different size-dependent particle detection efficiencies.
机译:两种不同的单粒子质谱仪是在平行于瑞士高山研究站少女峰(JFJ,3580米ASL)的云和气溶胶特性实验(CLACE 6)二月和2007年3月在从混合相云事件冰晶期间操作为5〜20μm,从较大的冰的聚集体,非活化的,间质的气溶胶粒子和过冷水滴使用冰 - 逆流虚拟冲击(冰CVI)分离。在一个云期间过冷液滴附加取样,并通过改变所述冰CVI设置进行分析。小冰颗粒和液滴通过注射蒸发到冰CVI内部干燥空气。将得到的冰和液滴残基(IR和DR)进行分析的由两个单个粒子质谱仪尺寸和组成:一个定制的单粒子激光消融时间 - 飞行质谱仪(SPLAT)和市售的气溶胶时间 - 的飞行质谱仪(ATOFMS,TSI型号3800)。 CLACE 6在SPLAT仪器,其特征在于产生用于至少一个极性的质谱355个别IR和ATOFMS测量152 IR。所述质谱中的类分级的基础上,主导的物质,如矿尘,硫酸根,钾和元素碳或有机材料的组合。从冰残基的衍生化学信息是相对于JFJ环境气溶胶而测量站是云的是取样(几千粒子分析由SPLAT和ATOFMS)和过冷云滴(SPLAT的残基的组合物: 162个云滴残基进行分析,ATOFMS:1094)。测量结果表明矿尘在冰粒子残留强烈增强。靠近所有从冰残SPLAT光谱的确从无机化合物包含签名,尽管有不同的水溶性化合物的量相连接。同样,靠近所有ATOFMS IR的光谱显示矿物或金属组分。纯硫酸和含硝酸盐颗粒在冰残基被耗尽。硫酸盐和硝酸盐发现主宰液滴残基(〜90%的颗粒)。从两个不同的单粒子质谱仪的结果通常是一致的。在结果的差异从几个原因,如不同波长的解吸和电离激光器和不同尺寸相关粒子探测效率的起源。

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