Magmatic Contributions to Hydrothermal Systems and the Behavior of Volatiles in Magma

Magmatic Contributions to Hydrothermal Systems and the Behavior of Volatiles in Magma PDF Author: Chishitsu Chōsajo (Japan)
Publisher:
ISBN:
Category : Geochemistry
Languages : en
Pages : 250

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Magmatic Contributions to Hydrothermal Systems and the Behavior of Volatiles in Magma

Magmatic Contributions to Hydrothermal Systems and the Behavior of Volatiles in Magma PDF Author: Chishitsu Chōsajo (Japan)
Publisher:
ISBN:
Category : Geochemistry
Languages : en
Pages : 250

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Book Description


Volatiles in Magmas

Volatiles in Magmas PDF Author: Michael R. Carroll
Publisher: Walter de Gruyter GmbH & Co KG
ISBN: 1501509675
Category : Science
Languages : en
Pages : 536

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Book Description
Volume 30 of Reviews in Mineralogy introduces in understanding the behavior of magmatic volatiles and their influence on a wide variety of geological phenomena; in doing this it also becomes apparent that there remain many questions outstanding. The range of topics we have tried to cover is broad, going from atomisticscale aspects of volatile solubility mechanisms and attendant effects on melt physical properties, to the chemistry of volcanic gases and the concentrations of volatiles in magmas, to the global geochemical cycles of volatiles. The reader should quickly see that much progress has been made since Bowen voiced his concerns about Maxwell demons, but like much scientific progress, answers to old questions have prompted even greater numbers of new questions. The Voltiles in Magmas course was organized and transpired at the Napa Valley Sheraton Hotel in California, December 2-4, 1994, just prior to the Fall Meetings of the American Geophysical Union in San Francisco.

The Role of Volatiles in the Genesis, Evolution and Eruption of Arc Magmas

The Role of Volatiles in the Genesis, Evolution and Eruption of Arc Magmas PDF Author: G.F. Zellmer
Publisher: Geological Society of London
ISBN: 1862396892
Category : Science
Languages : en
Pages : 294

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Book Description
The subduction zone volatile cycle is key to understanding the petrogenesis, transport, storage and eruption of arc magmas. Volatiles control the flux of slab components into the mantle wedge, are responsible for melt generation through lowering the solidi of mantle materials and influence the crystallizing phase assemblages in the overriding crust. Further, the rates and extents of degassing during magma storage and decompression affect magma rheology, ultimately control eruption style and have consequences for the environmental impact of explosive arc volcanism. This book highlights recent progress in constraining the role of volatiles in magmatic processes. Individual book sections are devoted to tracing volatiles from the subducting slab to the overriding crust, their role in subvolcanic processes and eruption triggering, as well as magmatic-hydrothermal systems and volcanic degassing. For the first time, all aspects of the overarching theme of volatile cycling are covered in detail within a single volume.

Exploring and Modeling the Magma-Hydrothermal Regime

Exploring and Modeling the Magma-Hydrothermal Regime PDF Author: John Eichelberger
Publisher:
ISBN: 9783039366361
Category :
Languages : en
Pages : 262

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Book Description
This Special Issue comprises 12 papers from authors in 10 countries with new insights on the close coupling between magma as an energy and fluid source with hydrothermal systems for the primary control of magmatic behavior. Data and interpretation are provided on the rise of magma through a hydrothermal system, the relative timing of magmatic and hydrothermal events, the temporal evolution of supercritical aqueous fluids associated with ore formation, the magmatic and meteoric contributions of water to the systems, the big picture for the highly active Krafla Caldera, Iceland, as well as the implications of results from drilling at Krafla concerning the magma-hydrothermal boundary. Some of the more provocative concepts are that magma can intrude a hydrothermal system silently, that coplanar and coeval seismic events signal "magma fracking" beneath active volcanoes, that intrusive accumulations may far outlast volcanism, that arid climate favors formation of large magma chambers, and that even relatively dry rhyolite magma can rapidly convect and so lack a crystallizing mush roof. A shared theme is that hydrothermal and magmatic reservoirs need to be treated as a single system.

Hydrothermal Processes at Seafloor Spreading Centers

Hydrothermal Processes at Seafloor Spreading Centers PDF Author: Peter A. Rona
Publisher: Springer Science & Business Media
ISBN: 1489904026
Category : Technology & Engineering
Languages : en
Pages : 802

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Book Description
During the past ten years, evidence has developed to indicate that seawater convects through oceanic crust driven by heat derived from creation of lithosphere at the Earth-encircling oceanic ridge-rift system of seafloor spreading centers. This has stimulated multiple lines of research with profound implications for the earth and life sciences. The lines of research comprise the role of hydrothermal convection at seafloor spreading centers in the Earth's thermal regime by cooling of newly formed litho sphere (oceanic crust and upper mantle); in global geochemical cycles and mass balances of certain elements by chemical exchange between circulating seawater and basaltic rocks of oceanic crust; in the concentration of metallic mineral deposits by ore-forming processes; and in adaptation of biological communities based on a previously unrecognized form of chemosynthesis. The first work shop devoted to interdisciplinary consideration of this field was organized by a committee consisting of the co-editors of this volume under the auspices of a NATO Advanced Research Institute (ARI) held 5-8 April 1982 at the Department of Earth Sciences of Cambridge University in England. This volume is a product of that workshop. The papers were written by members of a pioneering research community of marine geologists, geophysicists, geochemists and biologists whose work is at the stage of initial description and interpretation of hydrothermal and associated phenomena at seafloor spreading centers.

Geochemistry of Hydrothermal Ore Deposits

Geochemistry of Hydrothermal Ore Deposits PDF Author: Hubert Lloyd Barnes
Publisher: John Wiley & Sons
ISBN: 9780471571445
Category : Nature
Languages : en
Pages : 1002

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Book Description
This thoroughly revised and expanded new edition incorporates the most recent research findings on the subject, such as the discovery of dramatic undersea hydrothermal vents. It describes the key process in the generation of ore deposits and emphasizes solid theoretical understanding.

Magmas, Fluids, and Ore Deposits

Magmas, Fluids, and Ore Deposits PDF Author: John Francis Hugh Thompson
Publisher: Nepean, Ont. : Mineralogical Association of Canada
ISBN:
Category : Hydrothermal alteration
Languages : en
Pages : 544

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Book Description


Tracking the Evolution of Magmatic Volatiles from the Mantle to the Atmosphere Using Integrative Geochemical and Geophysical Methods

Tracking the Evolution of Magmatic Volatiles from the Mantle to the Atmosphere Using Integrative Geochemical and Geophysical Methods PDF Author: Nathalie Vigouroux-Caillibot
Publisher:
ISBN:
Category : Igneous rocks
Languages : en
Pages : 508

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Book Description
This thesis characterizes the transfer of magmatic volatiles through the mantle and the crust to the atmosphere through the integration of melt inclusion data for pre-eruptive volatile contents with surface measurements of volcanic degassing (recorded in micro-gravity changes and volcanic fumarole and plume gas compositions) at two contrasting volcanoes: Sierra Negra, Galápagos Islands and Kawah Ijen, Indonesia. In particular, it explores the process of fluid transfer in the mantle, the partitioning of volatile elements during mantle melting and degassing of the magma through the crust, and the effect of near-surface (e.g., interactions with groundwater and hydrothermal fluids), and surface processes (e.g., cooling and mixing with air) on the gas species. The effects of differences in initial volatile content and internal volcano structure on the types of eruptions and emissions recorded at each volcano are also discussed. The comparison of Sierra Negra and Kawah Ijen volcanoes reveals that differences in style of volcanic activity are primarily a function of magmatic plumbing system as opposed to differences in initial volatile content. In both cases, permeability of the crust and degassing style have exerted a dominant control over the recent style of activity (last century). Recent eruptions at Sierra Negra are not necessarily associated with magma recharge into shallow reservoirs but can be caused by subtle changes in the pressure regime of a magma chamber, a process which is closely associated with degassing and system permeability. Large explosive eruptions at Kawah Ijen are currently impeded by the open system (permeable) flow of magma and gas through the plumbing system. Hydrothermal systems play an important role in controlling the permeability of a system and the composition of the gases measured at the surface. The comparison of theoretically modeled gas compositions with actual measured compositions is an effective approach to studying the influence of hydrothermal systems at open vent volcanoes.

Volcanic Degassing

Volcanic Degassing PDF Author: Clive Oppenheimer
Publisher: Geological Society of London
ISBN: 9781862391369
Category : Nature
Languages : en
Pages : 438

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Chemical, Physical and Temporal Evolution of Magmatic Systems

Chemical, Physical and Temporal Evolution of Magmatic Systems PDF Author: L. Caricchi
Publisher: Geological Society of London
ISBN: 1862397325
Category : Science
Languages : en
Pages : 227

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Book Description
Our understanding of the physical and chemical processes that regulate the evolution of magmatic systems has improved tremendously since the foundations were laid down 100 years ago by Bowen. The concept of crustal magma chambers has progressively evolved from molten-rock vats to thermally, chemically and physically heterogeneous reservoirs that are kept active by the periodic injection of magma. This new model, while more complex, provides a better framework to interpret volcanic activity and decipher the information contained in intrusive and extrusive rocks. Igneous and metamorphic petrology, geochemistry, geochronology, and numerical modelling, all contributed towards this new picture of crustal magmatic systems. This book provides an overview of the wide range of approaches that can nowadays be used to understand the chemical, physical and temporal evolution of magmatic and volcanic systems.