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首页> 外文期刊>Geochemical Journal >Lead speciation studies on coarse and fine aerosol particles by bulk and micro X-ray absorption fine structure spectroscopy
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Lead speciation studies on coarse and fine aerosol particles by bulk and micro X-ray absorption fine structure spectroscopy

机译:通过批量和微X射线吸收细结构光谱法对粗糙和细气溶胶颗粒进行铅和细气溶胶颗粒的铅

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Lead species in size-fractionated aerosol particles collected at Higashi-Hiroshima, Japan, were determined by bulk and micro-X-ray absorption fine structure (mu-XAFS) spectroscopy and microbeam X-ray fluorescence (mu-XRF) analysis with thermodynamics calculation. The dominant Pb species in fine aerosol particles were PbSO4, PbC2O4 and Pb(NO3)(2). The species mixed internally. The Pb species in fine aerosol particles estimated by thermodynamics calculations were consistent with those estimated by XAFS spectroscopy. Results suggest that Pb species in fine aerosol particles were formed by an in-cloud process related to aquatic chemistry. In addition to the in-cloud process, heterogeneous reaction of Pb with NOx, SO2 and oxalic acid is also an important reaction pathway for dominant Pb species in fine aerosol particles. Lead species in coarse aerosol particles were 2PbCO(3)center dot Pb(OH)(2), Pb(NO3)(2) and PbC2O4. Basic Pb carbonate, a main component of white road paint, the most dominant Pb species. The chemical reaction between 2PbCO(3)center dot Pb(OH)(2) and HNO3 in the atmosphere forms Pb(NO3)(2). In addition to these dominant species, mu-XAFS detected minor species overlooked by bulk-XAFS. Thus, the combination of mu-XRF, mu-XAFS, bulk-XAFS and thermodynamics calculation is a powerful strategy for reliable and accurate Pb speciation and source apportionment.
机译:通过批量和微X射线吸收细结构(MU-XAFS)光谱和微观X射线荧光(MU-XRF)分析,测定在日本东岛 - 广岛岛的大小分馏气溶胶颗粒中的铅种。用热力学计算测定。精细气溶胶颗粒中的显性PB物种是PBSO4,PBC2O4和Pb(NO 3)(2)。内部混合的物种。通过热动力学计算估计的细气溶胶颗粒中的PB物种与XAFS光谱估计的那些一致。结果表明,通过与水生化学相关的云过程形成精细气溶胶颗粒中的PB物种。除了束云过程之外,PB与NOx,SO2和草酸的异质反应也是一种重要的PB种类在细气溶胶颗粒中的重要反应途径。粗气溶胶颗粒中的铅种是2pbco(3)中心点Pb(OH)(2),Pb(NO 3)(2)和PBC2O4。基本PB碳酸盐,白路涂料的主要成分,最占优势的PB物种。在大气中2pbco(3)中心点Pb(OH)(2)和HNO 3之间的化学反应形成Pb(NO 3)(2)。除了这些主导物种外,MU-XAFS还检测到由Bulk-XAFS忽略的次要物种。因此,MU-XRF,MU-XAF,Bulk-XAF和热力学计算的组合是可靠和准确的PB品种和源分配的强大策略。

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