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Many Neogene hydrothermal ore deposits have been formed on and near the Japanese islands from the middle Miocene to the present day and today many subaerial and submarine active geothermal systems are active. This book summarizes the geochemical and tectonic features, and the evolution of various types of ore deposits and current island arc and backarc hydrothermal systems in Japan starting with the Mesozoic.
Hydrothermal deposits --- Geochemistry. --- Chemical composition of the earth --- Chemical geology --- Geological chemistry --- Geology, Chemical --- Chemistry --- Earth sciences --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits
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Geochemistry --- Hydrogeology --- Hydrothermal deposits --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits --- Geohydrology --- Geology --- Hydrology --- Groundwater --- Chemical composition of the earth --- Chemical geology --- Geological chemistry --- Geology, Chemical --- Chemistry --- Earth sciences
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553.2 --- Hydrothermal deposits --- -Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore formation. Mineral formation --- -Ore formation. Mineral formation --- 553.2 Ore formation. Mineral formation --- -553.2 Ore formation. Mineral formation --- Deposits, Hydrothermal --- Ore deposits --- Congresses --- Congresses.
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Uranium ores --- Hydrothermal deposits --- Uranium --- Gîtes hydrothermaux --- Minerais --- 549.279 --- 559.98 --- Uranium minerals --- Ores --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits --- Gîtes hydrothermaux --- GEOLOGIE APPLIQUEE --- GITOLOGIE GENERALE --- GISEMENTS HYDROTHERMAUX NON MAGMATIQUES --- URANIUM --- MATIERES UTILES --- ELEMENTS CHIMIQUES --- GEOGRAPHIE INDUSTRIELLE ET MINIERE --- SYSTEMATIQUE DES RESSOURCES NATURELLES --- MAGMATISME ACIDE --- INTRUSIF --- FILONS HYDROTHERMAUX
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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.
Hydrothermal deposits --- Geochemistry --- Gîtes hydrothermaux --- Géochimie --- 550.4 --- Chemical composition of the earth --- Chemical geology --- Geological chemistry --- Geology, Chemical --- Chemistry --- Earth sciences --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits --- Geochemistry. --- Hydrothermal deposits. --- 550.4 Geochemistry --- Gîtes hydrothermaux --- Géochimie --- Gisements hydrothermaux. --- Géochimie. --- Géochimie.
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Rocks. Minerals --- Hydrosphere --- Geochemistry --- Chemical equilibrium. --- Hydrothermal deposits. --- Water chemistry. --- 549 --- Chemical equilibrium --- Hydrothermal deposits --- Water chemistry --- Aquatic chemistry --- Chemical hydrology --- Hydrochemistry --- Hydrogeochemistry --- Natural water chemistry --- Hydrology --- Chemical composition of the earth --- Chemical geology --- Geological chemistry --- Geology, Chemical --- Chemistry --- Earth sciences --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits --- Equilibrium, Chemical --- Chemistry, Physical and theoretical --- Phase rule and equilibrium --- Mineralogy. Special study of minerals --- 549 Mineralogy. Special study of minerals
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Intended as a reference for the academically-oriented geologist as well as the practising economic geologist, this book is concerned with the study of skarn deposits having anomalously high tin or tungsten contents, or both. Unlike many other books on economic geology, both economic W-Sn skarns and non-economic examples are covered, in order to enable the academically-oriented reader to grasp the full range of such deposits, and also to aid the economic geologist in distinguishing between W-Sn skarns having economic potential and those which do not.W-Sn skarns are notoriously complex,
Skarn --- Granite --- Metamorphic rocks --- Tungsten ores --- Tin ores --- Hydrothermal deposits --- Granit --- Roches métamorphiques --- Tungstène --- Gîtes hydrothermaux --- Minerais --- Roches métamorphiques --- Tungstène --- Gîtes hydrothermaux --- Skarn. --- Granite. --- Rocks, Metamorphic. --- Tungsten ores. --- Tin ores. --- Hydrothermal deposits. --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits --- Ores --- Rocks, Metamorphic --- Rocks --- Granitic rocks --- Igneous rocks --- ETAIN --- TUNGSTENE --- MATIERES UTILES --- ELEMENTS CHIMIQUES --- GEOLOGIE APPLIQUEE --- GEOGRAPHIE INDUSTRIELLE ET MINIERE --- SYSTEMATIQUE DES RESSOURCES NATURELLES --- GITOLOGIE GENERALE --- MAGMATISME ACIDE --- INTRUSIF --- SKARNS --- Metamorphic rocks.
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Dramatic advances in understanding global tectonics have been made in the last half century and the information and specific data acquired on the floor of the World Ocean by the scientific community probably has exc- ded that available in all previous time. With the benefit of new technology and advanced concepts in the earth sciences extensive exploration of the deep seabed became possible, and has been carried out in many parts of the world. Many features have been recognized and data recorded that are vital for understanding the fundamental processes that shape the earth=s surface and control the habitable environment. The data collected to date on the o- an floor and its physical environment greatly exceeds our understanding and appreciation of their fundamental importance in the earth sciences, and our ability to apply this knowledge effectively in improving our way of life. With his extensive scientific knowledge and unique experience from - ny cruises in association with scientists throughout the world, Dr. Evgeny Gurvich has made an outstanding contribution in acquiring basic data on hydrothermal and sedimentation processes in the ocean, as well as in the synthesis of data and concepts available from cruise reports and an extensive literature.
Marine sediments. --- Hydrothermal deposits. --- Ore deposits. --- Deposits, Ore --- Mines and mineral resources --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits --- Bottom deposits (Oceanography) --- Bottom sediments (Oceanography) --- Deep-sea deposits --- Deposits, Deep-sea --- Marine deposits --- Sediments, Marine --- Ocean bottom --- Sedimentation and deposition --- Submarine geology --- Sediments (Geology) --- Oceanography. --- Sedimentology. --- Geochemistry. --- Geology. --- Mineral resources. --- Mineral Resources. --- Deposits, Mineral --- Mineral deposits --- Mineral resources --- Mines and mining --- Mining --- Natural resources --- Geology, Economic --- Minerals --- Geognosy --- Geoscience --- Earth sciences --- Natural history --- Chemical composition of the earth --- Chemical geology --- Geological chemistry --- Geology, Chemical --- Chemistry --- Petrology --- Oceanography, Physical --- Oceanology --- Physical oceanography --- Thalassography --- Marine sciences --- Ocean
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Hydrosphere --- 553.2 --- Ore formation. Mineral formation --- 553.2 Ore formation. Mineral formation --- Chemical equilibrium --- Geochemistry --- Geothermal resources --- Hydrothermal deposits --- Water chemistry --- Aquatic chemistry --- Chemical hydrology --- Hydrochemistry --- Hydrogeochemistry --- Natural water chemistry --- Hydrology --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits --- Geothermal energy --- Geothermal power --- Thermal waters --- Natural resources --- Power resources --- Chemical composition of the earth --- Chemical geology --- Geological chemistry --- Geology, Chemical --- Chemistry --- Earth sciences --- Equilibrium, Chemical --- Chemistry, Physical and theoretical --- Phase rule and equilibrium --- GEOCHIMIE ISOTOPIQUE --- GEOLOGIE DE L'INGENIEUR --- GEOCHIMIE --- HYDROGEOLOGIE PARTICULIERE --- HYDROGEOLOGIE ET GEOLOGIE INGENIEUR --- HYDROSPHERE, ATMOSPHERE --- PHENOMENES HYDROTHERMAUX --- EAUX THERMOMINERALES
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Geology, Stratigraphic --- Hydrothermal deposits --- Rare earths --- Geology --- Niobium ores --- Iron ores --- -Rare earths --- -Iron ores --- -Niobium ores --- -Geology --- -Geology, Stratigraphic --- -Age of rocks --- Rocks --- Stratigraphic geology --- Physical geology --- Geognosy --- Geoscience --- Earth sciences --- Natural history --- Columbium ores --- Ores --- Earths, Rare --- Lanthanide oxides --- Metal oxides, Rare earth --- Rare earth materials --- Rare earth metal oxides --- Rare earth minerals --- Rare earth oxides --- Minerals --- Oxides --- Rare earth metal compounds --- Deposits, Hydrothermal --- Hydrothermal mineral deposits --- Hydrothermalites --- Ore deposits --- Age --- -Hydrothermal deposits --- Agnotozoic --- Algonkian --- Proterozoic Era --- Geology, Stratigraphic - Proterozoic --- Hydrothermal deposits - China - Inner Mongolia --- Rare earths - China - Inner Mongolia --- Geology - China - Inner Mongolia --- Niobium ores - China - Inner Mongolia --- Iron ores - China - Inner Mongolia
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