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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Quantifying chemical weathering rates along a precipitation gradient on Basse-Terre Island, French Guadeloupe: New insight from U-series isotopes in weathering rinds
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Quantifying chemical weathering rates along a precipitation gradient on Basse-Terre Island, French Guadeloupe: New insight from U-series isotopes in weathering rinds

机译:定量法属瓜德罗普岛Basse-Terre岛沿降水梯度的化学风化速率:风化果皮中U系列同位素的新发现

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Inside soil and saprolite, rock fragments can form weathering clasts (alteration rinds surrounding an unweathered core) and these weathering rinds provide an excellent field system for investigating the initiation of weathering and long term weathering rates. Recently, uranium-series (U-series) disequilibria have shown great potential for determining rind formation rates and quantifying factors controlling weathering advance rates in weathering rinds. To further investigate whether the U-series isotope technique can document differences in long term weathering rates as a function of precipitation, we conducted a new weathering rind study on tropical volcanic Basse-Terre Island in the Lesser Antilles Archipelago. In this study, for the first time we characterized weathering reactions and quantified weathering advance rates in multiple weathering rinds across a steep precipitation gradient. Electron microprobe (EMP) point measurements, bulk major element contents, and U-series isotope compositions were determined in two weathering clasts from the Deshaies watershed with mean annual precipitation (MAP) = 1800 mm and temperature (MAT) = 23 degrees C. On these clasts, five corerind transects were measured for locations with different curvature (high, medium, and low) of the rind-core boundary. Results reveal that during rind formation the fraction of elemental loss decreases in the order: Ca approximate to Na > K approximate to Mg > Si approximate to Al > Zr approximate to Ti approximate to Fe. Such observations are consistent with the sequence of reactions after the initiation of weathering: specifically, glass matrix and primary minerals (plagioclase, pyroxene) weather to produce Fe oxyhydroxides, gibbsite and minor kaolinite.
机译:在土壤和腐泥土内部,岩石碎片会形成风化碎屑(未风化岩心周围的蚀变皮),这些风化皮为研究风化的开始和长期风化率提供了一个极好的田间系统。最近,铀系列(U系列)失衡显示了确定果皮形成速率和量化控制风化果皮中风化推进速率的因素的巨大潜力。为了进一步研究U系列同位素技术是否可以记录长期风化速率随降水变化的差异,我们对小安的列斯群岛的热带火山巴斯岛(Basse-Terre Island)进行了新的风化研究。在这项研究中,我们首次表征了在陡峭的降水梯度下多个风化皮中的风化反应和量化的风化提前率。在Deshaies流域的两个风化带中确定了电子微探针(EMP)点测量,主要主体元素含量和U系列同位素组成,年平均降水量(MAP)= 1800 mm,温度(MAT)= 23摄氏度。在这些岩屑中,测量了五个果皮样带,以测定果皮-核心边界具有不同曲率(高,中和低)的位置。结果表明,在外皮形成过程中,元素损失的比例依次降低:Ca近似于Na> K近似于Mg> Si近似于Al> Zr近似于Ti近似于Fe。这些观察结果与风化开始后的反应顺序是一致的:特别是玻璃基质和主要矿物质(斜长石,辉石)经风化生成羟基氧化铁,菱镁矿和次要高岭石。

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