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首页> 外文期刊>Journal of quaternary science: JQS >Effects of the peat acid digestion protocol on geochemically and morphologically diverse tephra deposits
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Effects of the peat acid digestion protocol on geochemically and morphologically diverse tephra deposits

机译:泥炭消化方案对地球化学和形态多样性的Tephra沉积物的影响

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摘要

Tephra shards for electron probe microanalysis are most efficiently extracted from peat using acid digestion, which removes organic material that hinders density separation methods. However, strong acids are known to alter glass chemical compositions, and several studies have examined how acid digestion affects rhyolitic volcanic glass. The focus on rhyolitic tephra in these studies leaves considerable uncertainty, as the dissolution rates of natural glasses (including tephra) are determined by the chemical composition and surface area/volume ratio, both of which vary in tephra deposits. Here, we use duplicate samples of basaltic, trachydacitic and rhyolitic tephra to examine physical and geochemical alteration following acid digestion. Scanning electron microscope imagery reveals no discernible degradation of glass surfaces, and electron probe microanalysis results from duplicate samples are statistically indistinguishable. These findings suggest the acid digestion protocol for organic peats does not significantly alter glass geochemistry regardless of shard morphologies or geochemical compositions.
机译:用于电子探针微基分析的Tepharra碎片通过酸性消化从泥炭中获得最有效地提取,其除去阻碍密度分离方法的有机材料。然而,已知强酸改变玻璃化学组成,并且若干研究已经检查了酸消化的影响如何影响卟啉火山玻璃。这些研究中的血管内Tephra上的重点留下了相当大的不确定性,因为天然眼镜(包括Tephra)的溶出速率由化学成分和表面积/体积比确定,两者在Tephra沉积物中变化。在此,我们使用玄武岩,颅骨细胞和卟啉状Tephars的重复样品来检查酸消解后的物理和地球化学改变。扫描电子显微镜图像显示玻璃表面没有可辨别的降解,电子探针微分析来自重复样品的统计上难以区分。这些发现表明有机泥炭的酸性消化方案不会显着改变玻璃地球化学,无论碎片形态还是地球化学组合物。

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