Abstract A model to compensate he 2:1 layer having excess negative charge owing to the reduction of Fe 3+ to Fe 2+ by sodium dithionite buffered with citrate-bicarbonate in nontronite, beidellite, and mont-morillonite is proposed. This model is based on reassessing published experimental data for Fe-containing smectites and on a recently published structural model for reduced Garfield nontronite. In the reduced state, Fe 2+ cations remain six-fold coordinated, and increases of negative charge in the 2:1 layer are compensated by the sorption of Na + and H + from solution. Some of the incorporated protons react with structural OH groups to cause dehydroxylation. Also, some protons bond with undersaturated oxygen atoms of the octahedral sheet....
128 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.A major constituent of the Ea...
Structural Fe in clay minerals is an important redox-active species in many pristine and contaminate...
The ability of bacteria to reduce smectite structural Fe and the effect microbial reduction has on c...
International audienceA model was developed to describe how the 2:1 layer excess negative charge ind...
Iron is one of the most common redox species in soils and sedimentary rocks. Amongst iron-bearing ph...
Interaction between metal Fe and a variety of natural and synthetic smectite samples with contrastin...
Abstraet--Hydrazine and dithionite, both of which are strong reducing agents, react differently with...
Abstract--The effects of reduction and reoxidation of octahedral Fe 3+ on the exchange of structural...
173 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Smectites are widespread as a...
Clay minerals impart important chemical properties to soils, in part, by virtue of changes in the re...
Abstract--Reduction f structural Fe in Na-exchanged dioctahedral smectites decreases swellability in...
128 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.A major constituent of the Ea...
Structural Fe in clay minerals is an important redox-active species in many pristine and contaminate...
The ability of bacteria to reduce smectite structural Fe and the effect microbial reduction has on c...
International audienceA model was developed to describe how the 2:1 layer excess negative charge ind...
Iron is one of the most common redox species in soils and sedimentary rocks. Amongst iron-bearing ph...
Interaction between metal Fe and a variety of natural and synthetic smectite samples with contrastin...
Abstraet--Hydrazine and dithionite, both of which are strong reducing agents, react differently with...
Abstract--The effects of reduction and reoxidation of octahedral Fe 3+ on the exchange of structural...
173 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2007.Smectites are widespread as a...
Clay minerals impart important chemical properties to soils, in part, by virtue of changes in the re...
Abstract--Reduction f structural Fe in Na-exchanged dioctahedral smectites decreases swellability in...
128 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1987.A major constituent of the Ea...
Structural Fe in clay minerals is an important redox-active species in many pristine and contaminate...
The ability of bacteria to reduce smectite structural Fe and the effect microbial reduction has on c...