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Tectonic and climatic controls on silicate weathering

机译:硅酸盐风化的构造和气候控制

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Understanding the controls on chemical weathering, especially of silicate minerals, remains a major challenge, despite its importance in controlling the evolution of the Earth's surface. In particular, it has proved hard to distinguish the temperature sensitivity of silicate weathering rates from other factors. Here we present a new compilation of chemical and physical erosion rates in small catchments and show that silicate weathering rates are not governed by any single parameter but require consideration in multiple dimensions. The overall variation in silicate weathering rates with physical erosion rates, rainfall, and temperature can be quantitatively described by a parameterization based on considering their limiting relationships. At lower erosion rates mineral supply limits weathering. At higher erosion rates there is abundant material but kinetic and therefore climatic factors limit weathering. A predictive model describing the field data based on transport and weathering (kinetically) limited scenarios yields theoretically sensible values for fitted parameters. In the transport-limited case, the supply of silicate cations from weathering is directly proportional to the supply of material by erosion, consistent with complete leaching of cations from fresh regolith. In the kinetically limited case, weathering scales directly with runoff, as the square root of erosion rate, and with an activation energy of 74 +/- 29 kJ/mol, consistent with expected values in the Earth's surface settings. (c) 2005 Elsevier B.V. All rights reserved.
机译:尽管了解化学风化,特别是硅酸盐矿物化学风化的控制方法,尽管了解其对控制地球表面演变的重要性,但仍然是一项重大挑战。特别是,已证明很难将硅酸盐风化速率的温度敏感性与其他因素区分开。在这里,我们提出了一个小流域的化学和物理侵蚀速率的新汇编,并显示了硅酸盐的风化速率不受任何单一参数的控制,而是需要在多个维度上加以考虑。硅酸盐风化速率随物理侵蚀速率,降雨和温度的总体变化可以通过考虑其限制关系通过参数化来定量描述。在较低的侵蚀速率下,矿物供应限制了风化。在较高的侵蚀速率下,物质丰富,但动力学因素和气候因素限制了风化。基于运输和风化(动力学)有限的情景描述野外数据的预测模型可得出拟合参数的理论上合理的值。在运输受限的情况下,风化产生的硅酸盐阳离子的供应量与侵蚀产生的材料供应量成正比,这与新鲜碎石中阳离子的完全浸出相一致。在动力学有限的情况下,风化与径流直接成比例,作为侵蚀速率的平方根,其活化能为74 +/- 29 kJ / mol,与地球表面环境的预期值一致。 (c)2005 Elsevier B.V.保留所有权利。

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