Sedimentary cycles of trace elements in Salawusu River Valley since 150 ka BP |
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Authors: | YAO Chun-xia LI Bao-sheng JIN He-ling David Dian Zhang YAN Man-cun ZHU Yi-zhi LI Hou-xin ZHANGYu-hong Luo Kai-li |
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Affiliation: | 1. Dept. of Geography, South China Normal University, Guangzhou 510631, China|2. State Key Laboratory of Loess and Quarternary Geology, Institute of Earth Environment, CAS, Xi’an 710061, China|3. Cold and Arid Regions Environmental and Engineering Research Institute, CAS, Lanzhou 730000, China|4. Dept. of Geography and Geology, Hong Kong University|5. Dept. of Hydraulic Engineering, Tsinghua University, Beijing 100084, China |
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Abstract: | ![]() The paper makes some analyses on 11 trace elements in the Milanggouwan stratigraphical section in the Salawusu River valley, which is regarded as a prototype geology-palaeoclimate record since 150 ka BP. The results show that the content and variation of trace elements has experienced remarkably regular changes in the pace with coarse and fine sedimentary cycles of palaeo-aeolian sands to its overlying fluvio-lacustrine facies or/and palaeosols. The trace elements with chemical properties of relatively active (V, Sr, Cu, Ni, As) and relatively stable (P, Pb, Rb, Mn, Nb, Zr) are a manifestation of the corresponding 27 changeable cycles between peak and valley values, appearing a multi-fluctuational process line of relative gathering and migration since then. The low numerical value distribution of these two types of trace elements in the aeolian sand facies represents erosion and accumulation under wind force during the cold-dry climate. Whereas their enrichments in both fluvio-lacustrine facies and palaeosols are related to the valley’s special low-lying physiognomic position between the Ordos Plateau and the Loess Plateau under the warm and humid climate conditions. The above relatively migrated and gathered change of the trace elements is the result of 27 climatic cycles of cold-dry and warm-humid, which is probably caused by repeated alternations of winter monsoon and summer monsoon in the Mu Us Sandy Land influenced by the climate vicissitudes in northern hemisphere during glacial and interglacial periods since 150 ka BP. |
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Keywords: | Salawusu River valley Milanggouwan section cycle trace elements 150 ka BP palaeoclimate |
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