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源自青藏高原的十一条河流:Sr通量、同位素组成及对海水87Sr/86Sr变化的贡献
<正>近年来,对DSDP(深海钻探计划)钻芯的研究表明,过去40 Ma以来海水Sr同位素比值呈稳定增长的趋势。海水的Sr同位素预算主要由河流输入、热液以及深海沉积物的成岩作用所控制,而通过河流输入到现代海洋的溶解Sr通量...
吴卫华徐士进杨杰东
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Sr fluxes and isotopic compositions of the eleven rivers originating from the Qinghai-Tibet Plateau and their contributions to ^(87)Sr/^(86)Sr evolution of seawater被引量:1
2009年
To evaluate influence of chemical weathering of the Qinghai-Tibet Plateau (QTP) on seawater 87Sr/86Sr variation, river water and sediment samples were collected, and their Sr concentrations and isotopic compositions analyzed, from the seven large rivers that originated from the QTP. By combining these with the data of the Ganges, Brahmaputra, Indus and Irrawaddy originated in the southern QTP, the total Sr flux of the eleven rivers reaches 3.47×109 mol·a-1, which accounts for 10.2% of the total Sr flux transported by the global rivers. The weighted mean 87Sr/86Sr is 0.71694, higher than the average value of the global rivers. The 87Srex (87Sr flux in excess of the seawater 87Sr/86Sr ratio) of the Chinese seven rivers is 1.55×106 mol·a-1, only accounting for about 6% of the value of the eleven rivers originated from QTP, and the Ganges-Brahmaputra system accounts for 86%. We assume that the QTP rivers have no strontium contributions to the oceans before ~40 Ma and the Sr fluxes of the global rivers, except the QTP eleven rivers, are constant, then a maximum linear increase in Sr fluxes of the QTP rivers from zero to the modern value in response to tectonic uplift can explain ~69% increase of seawater 87Sr/86Sr over the past ~40 Ma and the remainder of 31% is perhaps provided from other factors.
WU WeiHua1, YANG JieDong2, XU ShiJin1, LI GaoJun1, YIN HongWei1 & TAO XianCong2 1 School of Earth Sciences and Engineering, Nanjing University, Nanjing 210093, China 2 Center of Modern Analysis Nanjing University, Nanjing 210093, China
关键词:SRISOTOPE
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