173 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Smectites are widespread as a major constituent of soils and sediments and include a substantial amount of structural Fe. The reduction of structural Fe(III) invokes partial dehydroxylation, protonation, and site translocation of Fe(II) to alter the crystal structure. The structural changes, therefore, influence their surface properties such as layer charge, cation-exchange capacity (CEC), and cation fixation and selectivity. The objective of this study was to investigate the effects of the oxidation state of structural Fe on cation fixation and selectivity and smectite structure. Experimental results revealed that reductive K fixation in smectite suspension occurs under...
Structural Fe in clay minerals is an important, albeit poorly characterized, redox-active phase foun...
International audienceA model was developed to describe how the 2:1 layer excess negative charge ind...
Abstract--The oxidation state of structural iron greatly influences the physical-chemical properties...
173 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Smectites are widespread as a...
Changes in oxidation states of structural Fe in smectites altered the physicochemical properties of ...
The aim of this study was to compare the redox properties of oxides and smectite structural Fe (Fes)...
Iron is one of the most common redox species in soils and sedimentary rocks. Amongst iron-bearing ph...
Microbes can reduce the structural iron (Fe(III)str) in clay minerals thus providing a potentially i...
The ability of bacteria to reduce smectite structural Fe and the effect microbial reduction has on c...
Interaction between metal Fe and a variety of natural and synthetic smectite samples with contrastin...
Structural Fe in clay minerals is an important redox-active species in many pristine and contaminate...
ABSTRACT: Virtually all 2:1 clay minerals contain some Fe in their crystal structure, which may unde...
The reduction of structural Fe in smectite is mediated either abiotically, by reaction with dithioni...
Abstract--Reduction f structural Fe in Na-exchanged dioctahedral smectites decreases swellability in...
© 2009 IUPACDOI: 10.1351/PAC-CON-08-11-16The reduction of structural Fe in smectite may be mediated ...
Structural Fe in clay minerals is an important, albeit poorly characterized, redox-active phase foun...
International audienceA model was developed to describe how the 2:1 layer excess negative charge ind...
Abstract--The oxidation state of structural iron greatly influences the physical-chemical properties...
173 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Smectites are widespread as a...
Changes in oxidation states of structural Fe in smectites altered the physicochemical properties of ...
The aim of this study was to compare the redox properties of oxides and smectite structural Fe (Fes)...
Iron is one of the most common redox species in soils and sedimentary rocks. Amongst iron-bearing ph...
Microbes can reduce the structural iron (Fe(III)str) in clay minerals thus providing a potentially i...
The ability of bacteria to reduce smectite structural Fe and the effect microbial reduction has on c...
Interaction between metal Fe and a variety of natural and synthetic smectite samples with contrastin...
Structural Fe in clay minerals is an important redox-active species in many pristine and contaminate...
ABSTRACT: Virtually all 2:1 clay minerals contain some Fe in their crystal structure, which may unde...
The reduction of structural Fe in smectite is mediated either abiotically, by reaction with dithioni...
Abstract--Reduction f structural Fe in Na-exchanged dioctahedral smectites decreases swellability in...
© 2009 IUPACDOI: 10.1351/PAC-CON-08-11-16The reduction of structural Fe in smectite may be mediated ...
Structural Fe in clay minerals is an important, albeit poorly characterized, redox-active phase foun...
International audienceA model was developed to describe how the 2:1 layer excess negative charge ind...
Abstract--The oxidation state of structural iron greatly influences the physical-chemical properties...