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Analytical chemistry / Oxide minerals / Oxides / Birnessite / Ferromanganese nodules / Sorption isotherm / Adsorption / Ion exchange / Todorokite / Chemistry / Physical chemistry / Surface chemistry


PII: S0016[removed]
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Document Date: 2012-06-25 06:59:35


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City

Ikast / Aberdeenshire / Lyngby / /

Company

Kohler / Fe Co / KBr / Ligand / Elsevier Science Ltd / Denmark 2 Hydrochemical / /

Country

United States / Netherlands / Scotland / Denmark / /

Currency

USD / /

/

Facility

Technical University of Denmark / /

IndustryTerm

metal adsorption / sorption site / 1D transport algorithm / background solution / Transition metal cations / printing / structural metal ions / charged site / diprotic site / resident column solution / charged sorption site / transition metal ions / mass action law / alkali metal ion exchange / chemical bond / chemical equilibrium constants / chloride solutions / surface site / variable chemical conditions / gas pockets / active sorption site / resident solution / column solutions / natural systems / metal ions / multi-oxygen adsorption site / chemical analysis / chemical studies / /

Organization

Technical University of Denmark / Federal Government / Department of Geology and Geotechnical Engineering / Oxford Univ. / Geotechnical Engineering and Groundwater Research Centre / Oregon State Univ. / Cornell Univ. / /

Person

Davis / Kent / Valeriusstraat / Henrik Skov / M. F. Hochella / Jr. / Clay Min / A. F. White / Van Riemsdijk / Hiemstra Riemsdijk / /

Position

Waite T. D. / Jahn-Teller / surface complexation model for birnessite / Miner / CaO / Consultant / Curtis G. P. / /

ProvinceOrState

Oregon / /

Technology

ion exchange / X-ray / sorption / 1D transport algorithm / spectroscopy / ATM / /

URL

http /

SocialTag