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首页> 外文期刊>Journal of the air & waste management association >Size-Differentiated Chemical Characteristics of Asian Paleo Dust: Records from Aeolian Deposition on Chinese Loess Plateau
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Size-Differentiated Chemical Characteristics of Asian Paleo Dust: Records from Aeolian Deposition on Chinese Loess Plateau

机译:亚洲古尘的尺寸差异化学特征:黄土高原风积的记录

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摘要

The Chinese Loess Plateau (CLP) receives and potentially contributes to Asian dust storms that affect particulate matter (PM) concentrations, visibility, and climate. Loess on the CLP has experienced little weathering effect and is regarded as an ideal record to represent geochemical characteristics of Asian paleo dust. Samples were taken from 2-, 9-, and 15-m depths (representing deposition periods from ~12,000 to ~200,000 yr ago) in the Xi Feng loess profile on the CLP. The samples were resuspended and then sampled through total suspended particulates (TSP), PM_(10), PM_(2.5), and PM_1 (PM with aerodynamic diameters < ~30, 10, 2.5, and 1 μm, respectively) inlets onto filters for mass, elemental, ionic, and carbon analyses using a Desert Research Institute resuspension chamber. The elements Si, Ca, Al, Fe, K, Mg, water-soluble Ca (Ca~(2+), organic carbon, and carbonate carbon are the major constituents (>1%) in loess among the four PM fractions (i.e., TSP, PM_(10), PM_(2.5), and PM,). Much of Ca is water soluble and corresponds with measures of carbonate, indicating that most of the calcium is in the form of calcium carbonate rather than other calcium minerals. Most of the K is insoluble, indicating that loess can be separated from biomass burning contributions when K~+ is measured. The loess has elemental abundances similar to those of the upper continental crust (UCC) for Mg, Fe, Ti, Mn, V, Cr, and Ni, but substantially different ratios for other elements such as Ca, Co, Cu, As, and Pb. These suggest that the use of UCC as a reference to represent pure or paleo Asian dust needs to be further evaluated. The aerosol samples from the source regions have similar ratios to loess for crustal elements, but substantially different ratios for species from anthropogenic sources (e.g., K, P, V, Cr, Cu, Zn, Ni, and Pb), indicating that the aerosol samples from the geological-source-dominated environment are not a "pure" soil product as compared with loess.
机译:中国黄土高原(CLP)可能会影响亚洲的沙尘暴,并可能对影响颗粒物(PM)的浓度,能见度和气候产生影响。 CLP上的黄土几乎没有风化作用,被认为是代表亚洲古尘地球化学特征的理想记录。在CLP的西峰黄土剖面中,分别从2、9和15 m深度(代表从约12,000到约200,000年前的沉积期)中取样。将样品重新悬浮,然后通过总悬浮颗粒(TSP),PM_(10),PM_(2.5)和PM_1(分别具有空气动力学直径<〜30、10、2.5和1μm的PM)进样到过滤器上以进行过滤使用沙漠研究所悬浮室进行质量,元素,离子和碳的质量分析。黄土中四个PM组分中的元素Si,Ca,Al,Fe,K,Mg,水溶性Ca(Ca〜(2+),有机碳和碳酸盐碳)是黄土中的主要成分(> 1%)。 ,TSP,PM_(10),PM_(2.5)和PM)),其中大部分的钙是水溶性的,并且与碳酸盐的含量相对应,表明大部分钙以碳酸钙的形式存在,而不是其他钙矿物质。大部分的钾是不溶的,这表明当测量K〜+时,黄土可以从生物质燃烧的贡献中分离出来,其镁,铁,钛,锰,钒的元素丰度与上陆壳的丰度相似。 ,Cr和Ni,但其他元素(例如Ca,Co,Cu,As和Pb)的比率却大不相同,这表明需要进一步评估使用UCC作为代表纯净或古亚洲粉尘的参考。来自源区的气溶胶样品与黄土的比例与地壳元素的比例相似,但与人为物种的比例却相差很大氮源(例如K,P,V,Cr,Cu,Zn,Ni和Pb),表明与黄土相比,来自地质源为主环境的气溶胶样品不是“纯”土壤产品。

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  • 来源
    《Journal of the air & waste management association 》 |2011年第2期| p.180-189| 共10页
  • 作者单位

    Institute of Earth Environment, Chinese Academy of Sciences, Xi'an, 710075,People's Republic of China;

    State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an, People's Republic of China and Division of Atmospheric Sciences, Desert Research Institute, Reno, NV;

    State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an, People's Republic of China;

    State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an, People's Republic of China and Division of Atmospheric Sciences, Desert Research Institute, Reno, NV;

    State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment, Chinese Academy of Sciences, Xi'an, People's Republic of China;

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