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首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Geochemistry of Trace and Rare Earth Elements in Red Soils from the Dongting Lake Area and Its Environmental Significance
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Geochemistry of Trace and Rare Earth Elements in Red Soils from the Dongting Lake Area and Its Environmental Significance

机译:洞庭湖区红壤中微量元素和稀土元素的地球化学及其环境意义。

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摘要

Trace element (TE) and rare earth element (REE) contents in red soils from the Dongting Lake area of China were determined to understanding the provenance and weathering characteristics of the red soils. The results showed similar REE distribution patterns among red soils from the Dongting Lake area, Xiashu loess from Zhenjiang, loess and Pliocene red soil from the Loess Plateau. These patterns implied a similar provenance from dust-storms, except for red soil R5 which formed by bedrock weathering and had significant light REE (LREE) enrichment and heavy REE (HREE) depletion due to longer weathering periods and higher intensity of weathering. Trace element, especially the Rb/Sr and Li/Ba ratios, and REE, especially the LREE/HREE ratio and delta Eu could trace weathering intensity. Higher Rb/Sr, Li/Ba, and LREE/HREE ratios and negative Eu anomalies were present in the red soils from the Dongting Lake area. The weathering intensity was in the decreasing order of R5 in the Dongting Lake area > red soils from the Dongting Lake area (including reticulate red soil, weak reticulate red soil, and homogeneous red soil formed by dust storms) > Xiashu loess from Zhenjiang > loess-paleosol and Pliocene red soil from the Loess Plateau. Variations in the te and REE contents of soil could be effectively used to study the provenance and the weathering intensity.
机译:测定洞庭湖地区红壤中微量元素(TE)和稀土元素(REE)的含量,以了解其来源和风化特征。结果表明,洞庭湖区红壤,镇江下蜀黄土,黄土高原黄土和上新世红壤之间的稀土元素分布规律相似。除了由基岩风化形成的红壤R5且由于较长的风化时间和较高的风化强度而具有明显的轻稀土(LREE)富集和重稀土(HREE)耗竭外,这些模式暗示了与沙尘暴相似的出处。微量元素,特别是Rb / Sr和Li / Ba比,以及REE,尤其是LREE / HREE比和δEu可以追踪风化强度。洞庭湖地区的红壤中较高的Rb / Sr,Li / Ba和LREE / HREE比率以及负Eu异常。洞庭湖区的风化强度按R5的降序排列>洞庭湖区的红壤(包括网状红土,弱网状红土和沙尘暴形成的均质红土)>镇江下夏黄土>黄土黄土高原地区的古土壤和上新世红色土壤。土壤te和REE含量的变化可以有效地用于研究物源和风化强度。

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