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Physical and chemical weathering rates and CO2 consumption in a tropical lateritic environment: the upper Niger basin

机译:热带红土环境中的理化风化速率和二氧化碳消耗量:尼日尔盆地上游

摘要

The chemical composition of Niger river water measured bimonthly at Bamako Mali. during the period 1990–1992udprovides an estimate of present weathering rates in the upper Niger basin. The dominant weathering process is kaolinite formation ‘monosiallitization’.. However, seasonal variations promote gibbsite formation in the rainy season September. and smectite development in the dry season May. The results show that lateritic profiles continue to develop even during very dry episodes. The rate of profile development, calculated as the difference between the chemical weathering rate at the base of the soil profile and mechanical erosion rate at the soil surface, is about 1.3 to 3.7 mrMyr. A comparison between 43udriver basins of the world shows that, for similar runoff, the CO2 flux consumed by silicate weathering is about two times lower in lateritic areas than in nonlateritic zones.
机译:尼日尔河水的化学成分每两个月在巴马科马里测量一次。在1990年至1992年期间,提供了对尼日尔上流域目前的风化率的估计。主要的风化过程是高岭石的“单硅化作用”。然而,季节性变化促进了9月雨季三水铝铁矿的形成。五月干旱季节蒙脱石的发展。结果表明,即使在非常干燥的时期,红土剖面仍会继续发展。根据土壤剖面底部的化学风化速率与土壤表面的机械侵蚀速率之间的差异计算得出的剖面发育速率约为1.3至3.7 mrMyr。世界上43个干流盆地之间的比较表明,对于类似的径流,红土区风化作用下硅酸盐风化所消耗的CO2通量比非红土区低约2倍。

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  • 年度 1998
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