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Geochemistry at the Earth’s Surface - Movement of Chemical Elements (Paperback, Softcover reprint of the original 1st ed.... Geochemistry at the Earth’s Surface - Movement of Chemical Elements (Paperback, Softcover reprint of the original 1st ed. 2014)
Andreas Bauer, Bruce D. Velde
R3,930 Discovery Miles 39 300 Ships in 10 - 15 working days

Geochemistry at the surface of the earth is dominated by two somewhat antagonistic forces: chemical reactions which attempt to attain a steady state (equilibrium) and geological movement of materials in time and space which changes the parameters that control chemical equilibrium. Another aspect that is extremely important to earth surface geochemistry is the effect of plants on the chemical and physical stability of materials (soils). Plant systems in fact work against the normal chemical changes (loss of silica, potassium, etc.) and the normal physical changes (stabilizing fine grained materials (clays) in the surface zones to avoid erosion). Biological effects are clearly seen in redox effects in the various parts of the earth surface movement cycle; soil formation, stream transport, sedimentation. This book attempts to outline these different parameters and their interactions as they affect earth surface geochemistry in order to give a better understanding of movement and accumulation of elements at the surface of the earth.

Illite - Origins, Evolution and Metamorphism (Paperback, Softcover reprint of the original 1st ed. 2004): Alain Meunier, Bruce... Illite - Origins, Evolution and Metamorphism (Paperback, Softcover reprint of the original 1st ed. 2004)
Alain Meunier, Bruce D. Velde
R4,489 Discovery Miles 44 890 Ships in 10 - 15 working days

This monograph examines the mineralogy of illite, the most common clay mineral, as a unifying theme for understanding problems of the surface environment and environmental change. The volume begins with a careful analysis of the structure and transformation of illite. Using illite as the frame, the authors describe problems in soil chemistry, clay stability and clay kinetics in sedimentary rocks.

Illite - Origins, Evolution and Metamorphism (Hardcover, 2004 ed.): Alain Meunier, Bruce D. Velde Illite - Origins, Evolution and Metamorphism (Hardcover, 2004 ed.)
Alain Meunier, Bruce D. Velde
R4,673 Discovery Miles 46 730 Ships in 10 - 15 working days

This monograph examines the mineralogy of illite, the most common clay mineral, as a unifying theme for understanding problems of the surface environment and environmental change. The volume begins with a careful analysis of the structure and transformation of illite. Using illite as the frame, the authors describe problems in soil chemistry, clay stability and clay kinetics in sedimentary rocks.

Geochemistry at the Earth's Surface - Movement of Chemical Elements (Hardcover, 2014 ed.): Andreas Bauer, Bruce D. Velde Geochemistry at the Earth's Surface - Movement of Chemical Elements (Hardcover, 2014 ed.)
Andreas Bauer, Bruce D. Velde
R3,002 Discovery Miles 30 020 Ships in 10 - 15 working days

Geochemistry at the surface of the earth is dominated by two somewhat antagonistic forces: chemical reactions which attempt to attain a steady state (equilibrium) and geological movement of materials in time and space which changes the parameters that control chemical equilibrium. Another aspect that is extremely important to earth surface geochemistry is the effect of plants on the chemical and physical stability of materials (soils). Plant systems in fact work against the normal chemical changes (loss of silica, potassium, etc.) and the normal physical changes (stabilizing fine grained materials (clays) in the surface zones to avoid erosion). Biological effects are clearly seen in redox effects in the various parts of the earth surface movement cycle; soil formation, stream transport, sedimentation. This book attempts to outline these different parameters and their interactions as they affect earth surface geochemsitry in order to give a better understanding of movement and accumulation of elements at the surface of the earth.

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