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Trace Element Depostiton on Mount Everest

机译:珠穆朗玛峰上的微量元素破坏

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The objective of this study of the North Ridge of Everest was to examine trace eiement concentrations and altitudinal trends in soil and snow. IVlount Everest was selected because its remote location and extreme elevation isolates it from localized pollution sources. Soil samples were collected on the Rongbuk glacier of IVlount Everest (Qomolangma) from 5334 to 6553 m, and fresh surface snow samples (0-10 cm) were collected along the climbing route of the northeast ridge from 6858 m to 7752 m. The samples were analyzed for Pb, Zn, Cd, Ni, Cr, Co, Cu, As, Mn, Hg, and V using inductively coupled plasma spectroscopy. Results show that As and Cd are both above USEPA drinking water guidelines in all snow samples, and arsenic is above the USEPA soil screening guidelines in all soil samples. There was a clear trend in element variation in the soil samples, with the highest concentrations found at 5944 m. There was no clear trend detected in the snow samples, possibly due to vertical mixing of surface snow. Anthropogenic sources are suspected to have contributed to the elevated concentrations of both cadmium and arsenic.
机译:珠穆朗玛峰北脊的这项研究的目的是检查土壤和雪中痕量元素的浓度和垂直趋势。选择IVlount Everest是因为其偏远的地理位置和极端的海拔使其与局部污染源隔离。在5334至6553 m的IVlount珠穆朗玛峰(珠峰)的Rongbuk冰川上收集了土壤样品,并在6858 m至7752 m的东北山脊的攀登路线上收集了新鲜的地面积雪(0-10 cm)。使用电感耦合等离子体光谱法分析样品中的Pb,Zn,Cd,Ni,Cr,Co,Cu,As,Mn,Hg和V。结果表明,所有雪样品中的As和Cd均高于USEPA饮用水准则,所有土壤样品中的砷均高于USEPA土壤筛选准则。土壤样品中元素的变化趋势明显,最高浓度为5944 m。在积雪样本中未发现明显趋势,可能是由于表雪的垂直混合造成的。怀疑人为来源导致镉和砷浓度升高。

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