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A Framework For Predicting Global Silicate Weathering And Co_2 Drawdown Rates Over Geologic Time-scales

机译:预测地质时间尺度上全球硅酸盐风化和CO_2下降速率的框架

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Global silicate weathering drives long-time-scale fluctuations in atmospheric CO_2. While tectonics, climate, and rock-type influence silicate weathering, it is unclear how these factors combine to drive global rates. Here, we explore whether local erosion rates, GCM-derived dust fluxes, temperature, and water balance can capture global variation in silicate weathering. Our spatially explicit approach predicts 1.9-4.6 × 10~(13) mols of Si weathered globally per year, within a factor of 4-10 of estimates of global silicate fluxes derived from riverine measurements. Similarly, our watershed-based estimates are within a factor of 4-18 (mean of 5.3) of the silica fluxes measured in the world's ten largest rivers. Eighty percent of total global silicate weathering product traveling as dissolved load occurs within a narrow range (0.01-0.5 mm/year) of erosion rates. Assuming each mol of Mg or Ca reacts with 1 mol of CO_2, 1.5-3.3 × 10~8 tons/year of CO_2 is consumed by silicate weathering, consistent with previously published estimates. Approximately 50% of this drawdown occurs in the world's active mountain belts, emphasizing the importance of tectonic regulation of global climate over geologic timescales.
机译:全球硅酸盐风化带动了大气CO_2的长期尺度波动。虽然构造,气候和岩石类型会影响硅酸盐的风化作用,但目前尚不清楚这些因素如何共同推动全球速度。在这里,我们探讨了局部侵蚀速率,GCM产生的粉尘通量,温度和水平衡是否可以捕获硅酸盐风化的整体变化。我们的空间显式方法预测,全球每年风化的硅为1.9-4.6×10〜(13)摩尔,这是根据河流测量得出的全球硅酸盐通量估算值的4-10倍。同样,我们基于分水岭的估算值与世界十大河流中的二氧化硅通量之比为4-18(平均值为5.3)。当溶解负荷发生时,全球硅酸盐风化产物总量的百分之八十在腐蚀速率的狭窄范围内(0.01-0.5毫米/年)发生。假设每摩尔Mg或Ca与1摩尔CO_2反应,则硅酸盐风化将消耗1.5-3.3×10〜8吨/年的CO_2,这与先前发表的估计一致。这一下降的大约50%发生在世界上活跃的山区,强调了在地质时间尺度上对全球气候进行构造调节的重要性。

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