受物理侵蚀和降水相互作用控制的湿热带火山弧风化率

IF 8.3 Q1 GEOSCIENCES, MULTIDISCIPLINARY AGU Advances Pub Date : 2024-03-07 DOI:10.1029/2023AV001066
Angus K. Moore, Kimberly Méndez Méndez, K. Stephen Hughes, Darryl E. Granger
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引用次数: 0

摘要

火山弧是化学风化热点,可能会通过硅酸盐风化对全球二氧化碳消耗造成不成比例的影响。要准确模拟火山弧地貌对地球长期碳循环的影响,就必须了解气候和物理侵蚀是如何控制火山弧地貌的风化通量的。我们通过研究波多黎各火山流域的溪流溶质、沉积物地球化学以及从磁铁矿中的宇宙成因 36Cl 推断出的长期物理侵蚀通量的协变关系来评估这些控制。利用幂律关系对这些数据进行的分析表明,潮湿热带地区弧岩风化过程中的二氧化碳消耗量受物理侵蚀和风化带原生矿物质供应的限制比受温度或通过临界区的新鲜化学反应水通量的限制更大。不过,长期物理侵蚀通量与比排水量之间也存在正相关关系。这表明,弧环境中的新鲜矿物供应可能最终取决于降水率,这可能会在主要受限于供应的风化条件下维持弧岩风化通量与气候之间的耦合。
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Volcanic Arc Weathering Rates in the Humid Tropics Controlled by the Interplay Between Physical Erosion and Precipitation

Volcanic arcs are chemical weathering hotspots that may contribute disproportionately to global CO2 consumption through silicate weathering. Accurately modeling the impact of volcanic-arc landscapes on the Earth's long-term carbon cycle requires understanding how climate and physical erosion control weathering fluxes from arc landscapes. We evaluate these controls by examining the covariation of stream solutes, sediment geochemistry, and long-term physical erosion fluxes inferred from cosmogenic 36Cl in magnetite in volcanic watersheds in Puerto Rico that span a ca. 15-fold gradient in specific discharge. Analysis of this data using power-law relationships demonstrates that CO2 consumption from arc-rock weathering in the humid tropics is more strongly limited by physical erosion and the supply of primary minerals to the weathering zone than by temperature or the flux of fresh, chemically reactive waters through the critical zone. However, a positive correlation between long-term physical erosion fluxes and specific discharge is also observed. This indicates that fresh mineral supply in arc environments may ultimately depend on precipitation rates, which may maintain a coupling between arc-rock weathering fluxes and climate under principally supply limited weathering conditions.

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