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Geomorphologic controls on the age of particulate organic carbon from small mountainous and upland rivers

机译:山区和山地小河中颗粒状有机碳年龄的地貌控制

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[1] To assess the role that erosion processes play in governing the character of particulate organic carbon (POC) discharged from small mountainous and upland rivers, a suite of watersheds from Oregon, California, and New Zealand was investigated. The rivers share similar geology, tectonic setting, and climate, but have sediment yields that range over 3 orders of magnitude. The C-14 age of the POC loads is highly correlated with sediment yield. Carbon isotope mass balances reveal that the rivers carry bimodal mixtures of modern-plant-and ancient-rock-derived OC. At lower yields, modern plant OC dominates the material delivered to the river by sheetwash and shallow landsliding. With increasing yield, a progressively larger part of the POC is contributed directly from bedrock erosion via deep gully incision. Our results support the inference that active margin watersheds are important sources of aged POC to the ocean.
机译:[1]为了评估侵蚀过程在控制山区和山地小河排放的颗粒有机碳(POC)的特性中的作用,对俄勒冈,加利福尼亚和新西兰的一系列集水区进行了研究。河流具有相似的地质,构造环境和气候,但沉积物产量范围超过3个数量级。 POC载荷的C-14年龄与沉积物产量高度相关。碳同位素质量平衡表明,河流携带的是现代植物和古岩石衍生的OC的双峰混合物。以较低的单产,现代工厂的有机碳占主导地位,主要是通过冲刷和浅层滑坡输送到河流的物质。随着产量的增加,POC的逐渐增加部分是通过深沟切割直接侵蚀了基岩。我们的结果支持这样的推论,即活跃的边缘分水岭是海洋中古老的POC的重要来源。

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