S
Scott F. Lamoureux
Researcher at Queen's University
Publications - 151
Citations - 5911
Scott F. Lamoureux is an academic researcher from Queen's University. The author has contributed to research in topics: Arctic & Permafrost. The author has an hindex of 39, co-authored 148 publications receiving 5232 citations. Previous affiliations of Scott F. Lamoureux include Institute of Arctic and Alpine Research & University of Alberta.
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Journal ArticleDOI
Arctic Environmental Change of the Last Four Centuries
Jonathan T. Overpeck,Konrad A Hughen,D. Hardy,Raymond S. Bradley,R. Case,M. A. Douglas,Bruce P. Finney,K. Gajewski,Gordon C. Jacoby,Anne E. Jennings,Scott F. Lamoureux,A. Lasca,Glen M. MacDonald,J.J. Moore,Michael Retelle,S. Smith,Alexander P. Wolfe,G. Zielinski +17 more
TL;DR: A compilation of paleoclimate records from lake sediments, trees, glaciers, and marine sediments provides a view of circum-Arctic environmental variability over the last 400 years.
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Characteristics of sedimentary varve chronologies – A review
Antti E.K. Ojala,Antti E.K. Ojala,Pierre Francus,Bernd Zolitschka,Mark R. Besonen,Scott F. Lamoureux +5 more
TL;DR: In this article, the authors constructed a varve data base (VDB) to study the worldwide distribution of varved sediment records and the fidelity of their varve chronologies.
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Spatial trends and historical deposition of mercury in eastern and northern Canada inferred from lake sediment cores.
Derek C. G. Muir,Xiaowa Wang,Fan Yang,N. Nguyen,Togwell A. Jackson,Marlene Evans,Marianne S. V. Douglas,G. Köck,Scott F. Lamoureux,Reinhard Pienitz,John P. Smol,Warwick F. Vincent,A. Dastoor +12 more
TL;DR: The results are consistent with a scenario of slow atmospheric oxidation of mercury, and slow deposition of reactive mercury emissions, declining with increasing latitude away from emission sources in the midlatitudes, and support the view that there are significant anthropogenic Hg inputs in the Arctic.
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Embedding unfrozen lake sediments for thin section preparation
TL;DR: In this article, a method for subsampling and embedding unfrozen sediments is described, which requires commonly available equipment and can be implemented efficiently and cost-effectively.
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Estimation of grain size variability with micro X-ray fluorescence in laminated lacustrine sediments, Cape Bounty, Canadian High Arctic
TL;DR: In this article, fine laminated sediment cores from two Arctic lakes were investigated using the Itrax™ Core Scanner that provides micro X-ray fluorescence (μ-XRF) measurements with a spatial resolution of 100 μm.