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Shulph Ink

Magma Redox Geochemistry

Magma Redox Geochemistry

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The redox state is a master variable in the Earth's forming processes, and understanding redox exchanges in magmas is essential for reconstructing the history and compositional make-up of the planet, exploring its mineral resources, and monitoring and forecasting volcanic activity.

Format: Hardback
Length: 432 pages
Publication date: 28 October 2021
Publisher: John Wiley & Sons Inc


The redox state plays a crucial role in the formation and evolution of the Earth, particularly in the behavior and composition of magma, which serves as a major transport agent at depth. Understanding these redox exchanges in magmas is essential for reconstructing the history of our planet, exploring its mineral resources, and monitoring and forecasting volcanic activity.

Magma Redox Geochemistry provides a comprehensive exploration of the various aspects of redox reactions within magmatic systems. It presents experimental results, theoretical approaches, and innovative techniques used to study these reactions. The book highlights key topics such as the redox state and oxygen fugacity, the redox processes from Earth's accretion to global geodynamics, the redox evolution from magma sources to volcanic emissions, and the characterization of elements and their isotopes in magma.

The American Geophysical Union (AGU) is a leading organization dedicated to advancing discovery in Earth and space science for the benefit of humanity. Its publications, including Magma Redox Geochemistry, serve as valuable resources for researchers, students, and professionals in the field. These publications disseminate scientific knowledge and provide insights into the latest developments and advancements in Earth and space science.

In conclusion, the redox state and its interactions with magma are fundamental aspects of Earth's formation and evolution. Magma Redox Geochemistry provides a comprehensive understanding of these processes, highlighting the importance of studying redox reactions in magmas for reconstructing our planet's history, exploring its mineral resources, and monitoring and forecasting volcanic activity. The AGU's publications, including this book, play a crucial role in advancing scientific knowledge and providing resources for researchers, students, and professionals in the field.

Weight: 1422g
Dimension: 284 x 220 x 28 (mm)
ISBN-13: 9781119473251

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