Binding and chemical fractionation of heavy metals in typical peat matter (original) (raw)

Influence of pH on copper, lead and cadmium binding by an ombrotrophic peat

Sarah Fiol

European Journal of Soil Science, 2009

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Heavy metal behaviour in peat – A mineralogical perspective

B. Smieja-król

Science of The Total Environment, 2010

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Accumulation of heavy metals in the Oostriku peat bog, Estonia: Determination of binding processes by means of sequential leaching

Ivars Neretnieks

Environmental Pollution, 2007

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Copper binding by peat fulvic and humic acids extracted from two horizons of an ombrotrophic peat bog

Sarah Fiol

Chemosphere, 2006

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Cadmium, lead, and copper binding to humic acid and fulvic acid extracted from an ombrotrophic peat bog

Ricardo Lopez

Geoderma, 2006

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Absorption of heavy metals from waste streams by peat

Yuh-shan Ho

1995

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Fe, Al, Mn, and S chemistry of Sphagnum peat in four peatlands with different metal and sulfur input

Kelman Wieder

Water, Air, and Soil Pollution, 1986

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Distribution of As, Cr, Ni, Rb, Ti and Zr between peat and its humic fraction along an undisturbed ombrotrophic bog profile (NW Switzerland)

Claudio Cocozza

Applied Geochemistry, 2008

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Temperature and Microbial Activity Effects on Trace Element Leaching from Metalliferous Peats

shabnam qureshi

Journal of Environmental Quality, 2003

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Cation binding by acid-washed peat, interpreted with Humic Ion-Binding Model VI-FD

Stephen G. Lofts

European Journal of Soil Science, 2004

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Poorly humified peat as an adsorbent for metals in wastewater

Allan Holmgren

Water Research, 2002

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Potentially toxic metals in ombrotrophic peat along a 400 km English–Scottish transect

Stephen G. Lofts

Environmental Pollution, 2005

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Migration characteristics of metal contaminants through a peat soil

AZMI BIN ARIS TNCPI

2009

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Role Of Detritus On Trace Metals In Wetland-Terrestrial Systems: A Review

PA Azeez

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Copper and zinc adsorption onto poorly humified Sphagnum and Carex peat

Ingrid Öborn

Water Research, 2002

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The Character of Humification and Accumulation of Chemical Elements in Raised-Bog Peat Depending on Its Composition and Formation

Inese Silamiķele

2010

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The Mathematical Modeling of Ca And Fe Distribution In Peat Layers

Aigars Gedroics

Environment. Technology. Resources. Proceedings of the International Scientific and Practical Conference, 2015

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Predicting the release of metals from ombrotrophic peat due to drought-induced acidification

Edward Tipping

Environmental Pollution, 2003

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Accumulation of metallic elements into the superficial peat layer of mires and wet mineral soils of Estonian forest land / Akumulacja metali w powierzchniowej warstwie gleb torfowych i wilgotnych glebach mineralnych ekosystemów leśnych Estonii

Raimo Kõlli

Ochrona Srodowiska i Zasobów Naturalnych, 2015

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Metal Ion Adsorption by Peat and Solvent-Extracted Peat

James Leahy

Adsorption Science & Technology, 2004

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Chemical properties of surface peat on forest land in Estonia

Raimo Kõlli

Mires and Peat, 2010

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Variability in As, Ca, Cr, K, Mn, Sr, and Ti concentrations among humic acids isolated from peat using NaOH, Na4P2O7 and NaOH+Na4P2O7 solutions

Pedro Soler

Journal of Hazardous Materials, 2009

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Heavy Metal and Arsenic Profiles in Ombrogenous Peat Cores from Four Differently Loaded Areas in Finland

Nicole Rausch, Liisa Ukonmaanaho, Tiina M Nieminen

Water, Air, & Soil Pollution, 2000

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Trace Metal Fluxes in a Sphagnum Peatland – Humic Lake System as a Consequence of Drainage

Marek Kruk

Water, Air, and Soil Pollution, 2005

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Porewater Evidence of Metal (Cu, Ni, Co, Zn, Cd) Mobilization in an Acidic, Ombrotrophic Bog Impacted by a Smelter, Harjavalta, Finland and Comparison with Reference Sites

Michael Krachler

Environmental Science & Technology, 2005

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Accumulation of heavy metals in Oostriku peat bog, Estonia: -site description, conceptual modelling and geochemical modelling of the source of the metals

Kristina Sorovetnik, I. Neretnieks

Environmental Geology, 2004

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Study of the Sorption of Divalent Metal Ions on to Peat

Gordon McKay

Adsorption Science & Technology, 2000

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