Dry deposition of gaseous elemental mercury to plants and soils using mercury stable isotopes in a controlled environment (original) (raw)

Mercury Uptake by Trees: An Observational Experiment

David Grigal

1999

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The role of ground vegetation in the uptake of mercury and methylmercury in a forest ecosystem

David Schwesig

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Climate Sensitivity of Gaseous Elemental Mercury Dry Deposition to Plants: Impacts of Temperature, Light Intensity, and Plant Species

Martin Shafer

Environmental Science & Technology, 2011

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Accumulation of atmospheric mercury in forest foliage

Dale Johnson

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Investigation of Uptake and Retention of Atmospheric Hg(II) by Boreal Forest Plants Using Stable Hg Isotopes

Igor Lehnherr

Environmental Science & Technology, 2009

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Assessing the Influence of Different Atmospheric and Soil Mercury Concentrations on Foliar Mercury Concentrations in a Controlled Environment

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Water, Air, and Soil Pollution, 2007

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Exchange of mercury between atmosphere and vegetation under contaminated conditions

Martin Lodenius

Science of The Total Environment, 2003

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Physiological and climate controls on foliar mercury uptake by European tree species

Carmen Iacoban

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Evaluating atmospheric mercury (Hg) uptake by vegetation in a chemistry-transport model

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Investigation of Mercury Exchange between Forest Canopy Vegetation and the Atmosphere Using a New Dynamic Chamber

holger hintelmann

Environmental Science & Technology, 2006

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Dry and wet deposition of mercury near a chlor-alkali plant

Martin Lodenius

Science of The Total Environment, 1998

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Estimating distribution and retention of mercury in three different soils contaminated by emissions from chlor-alkali plants: part I

Harald Biester

Science of The Total Environment, 2002

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Mercury accumulation in soils and plants in the Almadén mining district, Spain: one of the most contaminated sites on Earth

Pablo Higueras

Environmental Geochemistry and Health, 2006

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Mercury accumulation in leaves of different plant types – the significance of tissue age and specific leaf area

Michelle Nerentorp

2021

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Foliar exchange of mercury vapor: Evidence for a compensation point

K.-h. Kim

Water, Air, & Soil Pollution, 1995

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Effects of vegetation type on mercury concentrations and pools in two adjacent coniferous and deciduous forests

Robert Edmonds

Journal of Plant Nutrition and Soil Science, 2012

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Binding and mobility of mercury in soils contaminated by emissions from chlor-alkali plants

Harald Biester

Science of The Total Environment, 2002

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Binding, distribution, and plant uptake of mercury in a soil from Oak Ridge, Tennessee, USA

Charles A Waggoner, John Plodinec

Science of The Total Environment, 2006

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Xylem Sap As a Pathway for Total Mercury and Methylmercury Transport From Soils to Tree Canopy In the Boreal Forest

Kevin Bishop

Biogeochemistry, 1998

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Factors influencing mercury uptake by leaves of stone pine (Pinus pinea L.) in Almadén (Central Spain)

Sofía Rojas

Environmental Science and Pollution Research, 2017

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Mercury dynamics of a northern hardwood canopy

Charles Driscoll

Atmospheric Environment, 2008

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Vegetation uptake of mercury and impacts on global cycling

Ashu Dastoor

Nature Reviews Earth & Environment, 2021

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Induced plant uptake and transport of mercury in the presence of sulphur-containing ligands and humic acid

Robert B Stewart, M. Ghomshei

New Phytologist, 2005

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Mercury mobility and effects in the salt-marsh plant Halimione portulacoides: Uptake, transport, and toxicity and tolerance mechanisms

Rute Cesário

2019

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Phytofiltration of mercury-contaminated water: Volatilisation and plant-accumulation aspects

Robert B Stewart

Environmental and Experimental Botany, 2008

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Methylmercury and Total Mercury in Plant Litter Decomposing in Upland Forests and Flooded Landscapes

Britt Hall

Environmental Science & Technology, 2004

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Assessment of Direct Mercury Analyzer ® to Quantify Mercury in Soils and Leaf Samples

Jose Meléndez

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Supplementary material to "Physiological and climate controls on foliar mercury uptake by European tree species

Carmen Iacoban

2021

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