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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >The influence of mineralogy on weathering rates and processes in an acid-sensitive granitic catchment
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The influence of mineralogy on weathering rates and processes in an acid-sensitive granitic catchment

机译:矿物学对酸敏感性花岗岩流域的风化速率和过程的影响

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摘要

Weathering in an upland catchment on granitic parent material has been studied by chemical and mineralogical analyses of soils. Long-term weathering rates for base cations, calculated from chemical analyses of the mineral horizons from soil profiles using Zr as an internal, immobile, index element, are among the smallest recorded for Scottish soils (1.7-3.1 meg m(-2) a(-1)), indicating that these soils are susceptible to acid deposition. Sodium is the base cation lost to the greatest extent from the soils, due to weathering of plagioclase feldspar, mainly in the coarse size-fractions. Calcium is lost not only from plagioclase feldspar, but also from hornblende, grains of which show dissolution etch pits and denticulate surface features when examined by scanning electron microscopy. Weathering of hornblende, present in basic inclusions in the granite, is a significant weathering process in these soils. A range of values for Sr-87/Sr-86 ratios in stream-waters confirms the spatial variability of the material supplying Ca to the streams. The current weathering rate, calculated from input-output budgets to be 28.9 meg m(-2) a(-1), is much greater than the long-term weathering rate, but small compared to other catchments on similar parent material. (C) 2001 Elsevier Science Ltd. All rights reserved. [References: 20]
机译:通过对土壤的化学和矿物学分析,研究了花岗岩母体材料在高地集水区的风化作用。碱性阳离子的长期风化速率是根据记录在土壤中的矿物层的化学分析结果而得出的,使用Zr作为内部固定的指标元素,这是苏格兰土壤中记录的最小风化速率(1.7-3.1 meg m(-2)a (-1)),表明这些土壤易于酸沉降。由于斜长石长石的风化,钠是从土壤中损失最大的基础阳离子,主要是在粗大的粒度级分中。钙不仅从斜长石长石中丢失,而且还从角闪石中丢失,当通过扫描电子显微镜检查时,角闪石的颗粒显示出溶蚀蚀坑并使表面特征细化。花岗岩中基本包裹体中存在的角闪石风化是这些土壤中的重要风化过程。溪流水中Sr-87 / Sr-86比值的范围确定了向溪流供应Ca的材料的空间变异性。根据投入产出预算计算,当前的风化率为28.9 meg m(-2)a(-1),远高于长期风化率,但与类似母体上的其他集水区相比却很小。 (C)2001 Elsevier ScienceLtd。保留所有权利。 [参考:20]

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