首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Isotopic and geochemical evidence of palaeoclimate changes in Salton Basin, California, during the past 20 kyr: 2. Sr-87/Sr-86 ratio in lake tufa as an indicator of connection between Colorado River and Salton Basin
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Isotopic and geochemical evidence of palaeoclimate changes in Salton Basin, California, during the past 20 kyr: 2. Sr-87/Sr-86 ratio in lake tufa as an indicator of connection between Colorado River and Salton Basin

机译:过去20年来加利福尼亚州萨尔顿盆地古气候变化的同位素和地球化学证据:2.石灰岩中的Sr-87 / Sr-86比值作为科罗拉多河与萨尔顿盆地之间联系的指标

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As a part of the Colorado River drainage system, Southern California's Salton Basin has two major tributaries: Colorado River and Whitewater River. Interpretations on palaeoclimatic records from the basin strongly depend on the Colorado River inflow to the basin. In this study, we have used the Sr-87/Sr-86 ratio in lacustrine deposits to identify the time and duration of the Colorado River input. Our measurements of Sr-87/Sr-86 ratios made on water samples collected from Salton Basin indicate that the Sr-87/Sr-16 ratio (0.710169) of the Colorado River input is identical to that of Salton Sea (0.710105), implying little change in the lake water ratio since 1905 when Salton Sea formed and began receiving water mostly from Colorado River; and the 87Sr/86Sr ratio of Colorado River is much lower than that of Whitewater River (0.715960). These results enable us to trace past changes in the Colorado River input using Sr-87/Sr-86 in lake carbonates. Using a two-end-member mixing model, we discuss the major factors that control the 87Sr/86Sr variation of Lake Cahuilla, which was an ancient lake in the Salton Basin between 400 and 20,500 yr BP. Thirty measurements of Sr-87/Sr-86 were made on AMS-C-14-dated tufa carbonates in two slabs from Lake Cahuilla. The results show relatively constant Sr-87/Sr-86 ratios throughout the past 20 kyr, ranging from 0.709944 to 0.710140. The average of these Sr-87/Sr-86 ratios, 0.710060 0.000049 (n=30), is very close to that of the Colorado River input. Our results indicate that (1) the Colorado River input was the dominant water source for Lake Cahuilla at least during 800-20,500 yr BP when the tufa grew in the basin, and (2) the provenance of run-off to the Colorado River did not change significantly during 800-20,500 yr BR Hence, the palaeoclimatic proxies retrieved from the Lake Cahuilla tufas in the Salton Basin can decipher the discharge and flood history of the Colorado River under the influence of climate variability in the Colorado River drainage basin. (c) 2007 Elsevier B.V. All rights reserved.
机译:作为科罗拉多河排水系统的一部分,南加利福尼亚州的索尔顿盆地有两个主要支流:科罗拉多河和怀特沃特河。对流域古气候记录的解释很大程度上取决于流向该流域的科罗拉多河。在这项研究中,我们利用湖泊沉积物中的Sr-87 / Sr-86比值来确定科罗拉多河输入的时间和持续时间。我们对从萨尔顿盆地收集的水样进行的Sr-87 / Sr-86比值的测量表明,科罗拉多河输入的Sr-87 / Sr-16比(0.710169)与萨尔顿海(0.710105)相同,这意味着自1905年萨尔顿海形成并开始主要从科罗拉多河接收水以来,湖水比率几乎没有变化。科罗拉多河的87Sr / 86Sr比远低于怀特沃特河(0.715960)。这些结果使我们能够利用碳酸盐湖中Sr-87 / Sr-86追踪科罗拉多河输入的过去变化。使用两端混合模型,我们讨论了控制Cahuilla湖87Sr / 86Sr变化的主要因素,该湖是Salton盆地中BP在400至20500年之间的古老湖泊。在来自Cahuilla湖的两块板中,在AMS-C-14日期的石灰石碳酸盐上进行了30次Sr-87 / Sr-86测量。结果表明,在过去20年中,Sr-87 / Sr-86的比率相对恒定,范围为0.709944至0.710140。这些Sr-87 / Sr-86比率的平均值为0.710060 0.000049(n = 30),非常接近科罗拉多河的投入量。我们的结果表明:(1)至少在800-20,500 BP期间,当凝灰岩在盆地中生长时,科罗拉多河的输入水是卡维拉湖的主要水源;(2)科罗拉多河的径流源确实存在在800-20,500年BR期间变化不大,因此,从Salton盆地的Cahuilla tufas湖取回的古气候代理可以在科罗拉多河流域气候变化的影响下,解读科罗拉多河的流量和洪水历史。 (c)2007 Elsevier B.V.保留所有权利。

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