首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >From source to sink: Preserving the cosmogenic 10Be-derived denudation rate signal of the Bolivian Andes in sediment of the Beni and Mamore foreland basins
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From source to sink: Preserving the cosmogenic 10Be-derived denudation rate signal of the Bolivian Andes in sediment of the Beni and Mamore foreland basins

机译:从源头到汇点:保留贝尼和马莫尔前陆盆地沉积物中玻利维亚安第斯山脉的宇宙成因的10Be剥蚀率信号

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摘要

The denudation rate signal of the Bolivian Andes as measured by cosmogenic 10Be in sediment is preserved in the floodplain of adjacent foreland basins even though these basins store the sediment for thousands of years. This conclusion is drawn from comparing published Andean source area denudation rates with new cosmogenic 10Be data as measured in the floodplains of the large Beni and Mamore basins. For the entire Beni basin including the sediment-producing Andes and the vast flooded plains of the foreland, the cosmogenic nuclide-derived denudation rate is 0.45±0.06 mm/yr, while that of the Mamore basin is 0.55±0.19 mm/yr. By comparison, the respective Andean source areas erode at averaged rates of 0.37±0.06 mm/yr (upper Beni), and at 0.56±0.09 mm/yr (upper Mamore). We notice a decrease in variability of denudation rate with increasing spatial scale as small-scale processes are averaged out. Sediment mixing within the floodplain damps scatter of nuclide-derived denudation rates picked up in the source area. On the temporal scale, a remarkable agreement between cosmogenic nuclide-derived rates averaging over a few kiloyears with those from fission track dating averaging over millions of years seems to suggest that cosmogenic nuclide-derived denudation rates capture the long-term erosional characteristics of the mountain belt. The sum of these observations suggests that any sample collected along a river traversing a floodplain will yield the denudation rate of the source area. This finding opens the unique possibility of constraining cosmogenic nuclide-derived paleo-sediment budgets for these large basins as the long-term, spatially-averaged denudation rate signal of the sediment-producing area is preserved in sedimentary archives.
机译:用沉积物中的宇宙成因10Be测得的玻利维亚安第斯山脉的剥蚀速率信号保留在相邻前陆盆地的洪泛区中,即使这些盆地储存了数千年的沉积物。该结论是通过将已发布的安第斯源地剥蚀率与新的宇宙成因10Be数据进行比较得出的,该数据是在大贝尼和马莫尔盆地的洪泛区中测得的。对于整个贝尼盆地,包括产生沉积物的安第斯山脉和前陆广阔的淹没平原,源自宇宙的核素剥蚀速率为0.45±0.06 mm / yr,而马莫尔盆地的剥蚀速率为0.55±0.19 mm / yr。相比之下,各个安第斯山脉的源区平均侵蚀速率为0.37±0.06 mm / yr(贝尼上部)和0.56±0.09 mm / yr(Mamore上部)。我们注意到,随着小规模过程的平均化,剥蚀率的可变性随着空间规模的增加而减小。洪泛区内的泥沙混合抑制了源区吸收的核素剥蚀速率的分散。在时间尺度上,宇宙成因核素的平均速率与裂变径迹测年平均数百万年之间的显着一致性似乎表明,宇宙成因核素的剥蚀速率反映了该山的长期侵蚀特征。带。这些观察结果的总和表明,沿河流穿过洪泛区收集的任何样本都将产生源区的剥蚀率。这一发现为这些大型盆地开辟了限制宇宙成因核素衍生的古沉积物预算的独特可能性,因为沉积物产区的长期空间平均剥蚀率信号被保存在沉积档案中。

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