Seasonal and spatial distribution of trace metals in alpine soils of Eastern Tibetan Plateau, China

被引:0
作者
Yan-hong Wu
Jian-hong Liang
Hai-jian Bing
Ji-peng Wang
Jun Zhou
Hong-yang Sun
机构
[1] Chinese Academy of Sciences,Key Laboratory of Mountain Surface Processes and Ecological Regulation, Institute of Mountain Hazards and Environment
[2] University of Chinese Academy of Sciences,Key Laboratory of Karst Ecosystem and Treatment of Rocky Desertification, Institute of Karst Geology
[3] Chinese Academy of Geological Sciences,undefined
来源
Journal of Mountain Science | 2017年 / 14卷
关键词
Atmospheric deposition; Vegetation effects; Trace metals; Alpine soils; Eastern Tibetan Plateau;
D O I
暂无
中图分类号
学科分类号
摘要
The distribution of trace metals in remote alpine region is an effective way to understand the impacts of regional human activity and vegetation on the alpine ecosystem. In this study, the concentrations of cadmium (Cd), copper (Cu), lead (Pb), and zinc (Zn) in the soils of Gongga Mountain, Eastern Tibetan Plateau, were investigated to reveal their seasonal and spatial distribution and enrichment state, and to decipher the effects of atmospheric deposition and vegetation on their distributions among five vegetation zones. The results showed that the concentrations of Cd, Pb, and Zn were higher in the O horizon than in other horizons despite the seasonal changes, whereas Cu was enriched in the C horizon. The enrichment states of the metals studied in the soils decreased in the order of Cd > Pb > Zn > Cu. Cd and Pb were mainly sourced from atmospheric deposition; Zn was from both atmospheric deposition and parent materials, whereas Cu was mainly from parent materials. Seasonally, the trace metals were generally higher in May and December but lower in September, implying the impact of vegetation on the distribution of trace metals under the plant uptake and the litter decomposition. Spatially, the higher enrichment of Cu, Pb, and Zn in the soils existed in the mixed broadleaf-coniferous forests and coniferous forests (approximately 3000 m above sea level). The results suggested that atmospheric deposition and biological processes are main factors controlling the seasonal and spatial distribution of trace metals in the soils of the remote alpine ecosystem.
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页码:1591 / 1603
页数:12
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[1]  
Alyazichi YM(2015)Spatial distribution of sediment particles and trace element pollution within Gunnamatta Bay, Port Hacking, NSW, Australia Regional Studies in Marine Science 2 124-131
[2]  
Jones BG(2008)The effect of bacteria and fungi on chemical weathering and chemical denudation fluxes in pine growth experiments Biogeochemistry 88 153-167
[3]  
McLean E(2001)Sources, distribution and variability of airborne trace metals in La Plata City area, Argentina Environmental Pollution 111 149-158
[4]  
Balogh-Brunstad Z(2011)Historical trends of heavy metal contamination and their sources in lacustrine sediment from Xijiu Lake, Taihu Lake Catchment, China Journal of Environmental Sciences 23 1671-1678
[5]  
Keller CK(2013)Assessment of heavy metal enrichment and its human impact in lacustrine sediments from four lakes in the mid-low reaches of the Yangtze River, China Journal of Environmental Sciences 25 1300-1309
[6]  
Gill RA(2014)Atmospheric deposition of lead in remote high mountain of eastern Tibetan Plateau, China Atmospheric Environment 99 425-435
[7]  
Bilos C(2016)Historical trends of anthropogenic metals in Eastern Tibetan Plateau as reconstructed from alpine lake sediments over the last century Chemosphere 148 211-219
[8]  
Colombo JC(2016)Stoichiometric variation of carbon, nitrogen, and phosphorus in soils and its implication for nutrient limitation in alpine ecosystem of Eastern Tibetan Plateau Journal of Soils and Sediments 16 405-416
[9]  
Skorupk CN(2016)Vegetation and Cold Trapping Modulating Elevation-dependent Distribution of Trace Metals in Soils of a High Mountain in Eastern Tibetan Plateau Scientific Reports 6 24081-317
[10]  
Bing HJ(2009)An assessment of metal pollution in surface sediments of Seyhan dam by using enrichment factor, geoaccumulation index and statistical analyses Environmental Monitoring and Assessment 152 309-1187