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Pre-industrial and recent (1970–2010) atmospheric deposition of sulfate and mercury in snow on southern Baffin Island, Arctic Canada
Christian Zdanowicz;  Eva Kruemmel;  David Lean;  Alexandre Poulain;  Christophe Kinnard;  Emmanuel Yumvihoze;   JiuBin Chen;  Holger Hintelmann
2015
Source PublicationScience of The Total Environment
Volume509–510Pages:104-114
Abstract

Sulfate (SO42 −) and mercury (Hg) are airborne pollutants transported to the Arctic where they can affect properties of the atmosphere and the health of marine or terrestrial ecosystems. Detecting trends in Arctic Hg pollution is challenging because of the short period of direct observations, particularly of actual deposition. Here, we present an updated proxy record of atmospheric SO42 − and a new 40-year record of total Hg (THg) and monomethyl Hg (MeHg) deposition developed from a firn core (P2010) drilled from Penny Ice Cap, Baffin Island, Canada. The updated P2010 record shows stable mean SO42 − levels over the past 40 years, which is inconsistent with observations of declining atmospheric SO42 − or snow acidity in the Arctic during the same period. A sharp THg enhancement in the P2010 core ca 1991 is tentatively attributed to the fallout from the eruption of the Icelandic volcano Hekla. Although MeHg accumulation on Penny Ice Cap had remained constant since 1970, THg accumulation increased after the 1980s. This increase is not easily explained by changes in snow accumulation, marine aerosol inputs or air mass trajectories; however, a causal link may exist with the declining sea-ice cover conditions in the Baffin Bay sector. The ratio of THg accumulation between pre-industrial times (reconstructed from archived ice cores) and the modern industrial era is estimated at between 4- and 16-fold, which is consistent with estimates from Arctic lake sediment cores. The new P2010 THg record is the first of its kind developed from the Baffin Island region of the eastern Canadian Arctic and one of very few such records presently available in the Arctic. As such, it may help to bridge the knowledge gap linking direct observation of gaseous Hg in the Arctic atmosphere and actual net deposition and accumulation in various terrestrial media.

KeywordArctic mercury snowice glaciers climate Change air Pollution
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/9587
Collection环境地球化学国家重点实验室
Affiliation1.Department of Earth Sciences, Uppsala University, Villavägen 16, Uppsala 75646, Sweden
2.Inuit Circumpolar Council of Canada, 75 Albert St., Suite 1001, Ottawa, ON K1P 5V5, Canada
3.Lean Environmental, P.O. Box 309, Apsley, ON K0L 1A0, Canada
4.Department of Biology, University of Ottawa, 30 Marie Curie, Ottawa, ON K1N 6N5, Canada
5.Département des Sciences de l'Environnement, Université du Québec à Trois-Rivières, 3478, Léon-Provancher, Trois-Rivières, QC G9A 5H7, Canada
6.State Key Laboratory of Environmental Geochemistry, Chinese Academy of Sciences, 46 Guanshi Road, Guiyang 550002, China
7.Department of Chemistry, Trent University, 1600 West Bank Drive, Peterborough K9J 7B8, Canada
Recommended Citation
GB/T 7714
Christian Zdanowicz;Eva Kruemmel;David Lean;Alexandre Poulain;Christophe Kinnard;Emmanuel Yumvihoze; JiuBin Chen;Holger Hintelmann. Pre-industrial and recent (1970–2010) atmospheric deposition of sulfate and mercury in snow on southern Baffin Island, Arctic Canada[J]. Science of The Total Environment,2015,509–510:104-114.
APA Christian Zdanowicz;Eva Kruemmel;David Lean;Alexandre Poulain;Christophe Kinnard;Emmanuel Yumvihoze; JiuBin Chen;Holger Hintelmann.(2015).Pre-industrial and recent (1970–2010) atmospheric deposition of sulfate and mercury in snow on southern Baffin Island, Arctic Canada.Science of The Total Environment,509–510,104-114.
MLA Christian Zdanowicz;Eva Kruemmel;David Lean;Alexandre Poulain;Christophe Kinnard;Emmanuel Yumvihoze; JiuBin Chen;Holger Hintelmann."Pre-industrial and recent (1970–2010) atmospheric deposition of sulfate and mercury in snow on southern Baffin Island, Arctic Canada".Science of The Total Environment 509–510(2015):104-114.
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