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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Element contents in mountain birch leaves, bark and wood under different anthropogenic and geogenic conditions
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Element contents in mountain birch leaves, bark and wood under different anthropogenic and geogenic conditions

机译:不同人为和地质条件下山桦叶,树皮和木材中的元素含量

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摘要

Forty samples each of leaves, bark and wood of mountain birch (Betula pubescens EHRH.) were collected along a 120 km long south–north transect running through Norway’s largest city, Oslo. Concentrations of 26 chemical elements (Ag, As, Au, B, Ba, Ca, Cd, Co, Cr, Cu, Fe, Hg, K, La, Mg, Mn, Mo, Na, Ni, P, Pb, S, Sb, Sr, Ti and Zn) as well as loss on ignition for the three sample materials are reported. By far the highest concentrations of most elements appear in the leaves. Prominent exceptions are Au and Pb, both of which are enriched in wood, indicating the importance of root-uptake, and As which is enriched in bark. Bedrock lithology, ore occurrences, soil pH and urban contamination all have a visible influence on the element concentrations in mountain birch leaves, bark and wood. It is often impossible to differentiate between all the factors that can influence element concentrations in the three sample materials. Mountain birch bark shows the strongest anthropogenic impact of the city of Oslo for dust-related elements (Fe, La, Ti) and Sb. Even in mountain birch bark the influence of the city on element concentrations is no longer discernible from the background variation at a distance of less than 20 km from Oslo centre. Compared to terrestrial moss, mountain birch appears to be of little value as a biomonitor for urban contamination.
机译:沿着贯穿挪威最大城市奥斯陆的120公里长的南北断面收集了40个样品,分别是山桦的叶子,树皮和木材。 26种化学元素(Ag,As,Au,B,Ba,Ca,Cd,Co,Cr,Cu,Fe,Hg,K,La,Mg,Mn,Mo,Na,Ni,P,Pb,S,报告了三种样品材料的Sb,Sr,Ti和Zn以及灼烧损失。到目前为止,大多数元素的最高浓度出现在叶片中。明显的例外是Au和Pb,它们都富含木材,表明了根吸收的重要性; As富含树皮。基岩岩性,矿石的发生,土壤的pH值和城市污染对山桦叶,树皮和木材中的元素浓度都有明显的影响。通常不可能区分会影响三种样品材料中元素浓度的所有因素。白桦树皮显示出奥斯陆市对与尘埃有关的元素(铁,镧,钛)和锑的人为影响最大。甚至在山桦树皮中,从距奥斯陆市中心不到20公里的背景变化也无法分辨出城市对元素浓度的影响。与地上的苔藓相比,桦木作为监测城市污染的生物显示器似乎价值不大。

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