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Characterization of Urban Particulate Matter by Diffusive Gradients in Thin Film Technique

机译:薄膜技术中扩散梯度表征城市颗粒物

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A diffusive gradient in thin films (DGT) technique was employed in characterization of the particulate matter related to the urban area suffering from heavy traffic. Kinetics of mobilization metals fluxes from the metal-contaminated particulate matter was investigated. To monitor responses of the particulate matter sample, DGT probes of various thickness of diffusion layer were deployed in aqueous model suspensions of the particulate matter for different time periods. Particulate matter samples and exposed DGT resin gels were decomposed in a mixture of nitric and hydrochloric acid in a microwave pressurized PTFE-lined system. Total content of some traffic-related elements (Cd, Co, Cu, Mo, Ni, Pb, Pd, Pt, Rh, Sb, and V) was determined by inductively coupled plasma mass spectrometry. DGT measurements revealed that two metals pools associated with particles could be recognized, which can be characterized as high soluble fraction and almost insoluble fraction. DGT-measured metal fluxes from the labile pool showed significant difference in mobilization and resupply fluxes of individual selected elements, which might reflect the origin of selected metals and their speciation in particulate matter. The DGT technique can be applied as a useful tool for characterization of metals mobilization from the particulate matter.
机译:薄膜中的扩散梯度(DGT)技术用于表征与交通繁忙的市区有关的颗粒物。研究了从金属污染的颗粒物中迁移出的金属通量的动力学。为了监测颗粒物样品的响应,将不同厚度的扩散层的DGT探针部署在颗粒物的水性模型悬浮液中不同的时间。在微波加压的PTFE衬里系统中,微粒样品和裸露的DGT树脂凝胶在硝酸和盐酸的混合物中分解。通过电感耦合等离子体质谱法测定了一些与交通有关的元素(镉,钴,铜,钼,镍,铅,钯,铂,铑,锑和钒)的总含量。 DGT测量表明,可以识别出与颗粒相关的两个金属池,可以将其表征为高可溶级分和几乎不溶级分。 DGT测量的来自不稳定池的金属通量显示出各个选定元素的动员和再供应通量有显着差异,这可能反映了选定金属的来源及其在颗粒物中的形态。 DGT技术可以用作表征从颗粒物质中迁移出的金属的有用工具。

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