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Hydrothermal Reactions for Materials Science and Engineering

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Cover of 'Hydrothermal Reactions for Materials Science and Engineering'

Table of Contents

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    Book Overview
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    Chapter 1 Hydrothermal Reaction Sintering of Pure Cr 2 O 3
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    Chapter 2 Hydrothermal Reaction Sintering of Cr 2 O 3 and Iron Oxides
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    Chapter 3 Fabrication of Dense, Nonstabilized ZrO 2 Ceramics by Hydrothermal Reaction Sintering
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    Chapter 4 Hydrothermal reaction sintering of monoclinic zirconia
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    Chapter 5 Hydrothermal Reaction-Sintering of Monoclinic HfO 2
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    Chapter 6 Hydrothermal Reaction Sintering of High Density Sintered Oxides
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    Chapter 7 Hydrothermal Reaction Sintering of Oxides
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    Chapter 8 Hydrothermal Preparation and Sintering of Fine Ceramic Powders
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    Chapter 9 The Processing of a Permalloy-Magnetite Composite by Hydrothermal Reaction Sintering
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    Chapter 10 Preparation of Zirconia Fine Powders by the Reactions Between Zirconium Metal and High Temperature—High Pressure Solutions
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    Chapter 11 Preparation of Fine Monoclinic Hafnia Powders by Hydrothermal Oxidation
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    Chapter 12 Synthesis and Sintering of Zirconia Fine Powders by Hydrothermal Reactions from Zirconium Metal and High-Temperature High-Pressure Solutions
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    Chapter 13 Hydrothermal Oxidation of Hf Metal Chips in the Preparation of Monoclinic HfO 2 Powders
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    Chapter 14 Reaction Kinetics in the Hydrothermal Oxidation of Hf
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    Chapter 15 Preparation of Mixed Fine Al 2 O 3 -HfO 2 Powders by Hydrothermal Oxidation
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    Chapter 16 Preparation of Zirconia-Alumina Fine Powders by Hydrothermal Oxidation of Zr-Al Alloys
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    Chapter 17 Formation of TiO 2 and ZnO Powders by Hydrothermal Oxidation of Ti and Zn Metals
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    Chapter 18 Crystal Growth of Magnetite under Hydrothermal Condition with Hydrogen
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    Chapter 19 Hydrothermal Growth of Brucite Crystals
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    Chapter 20 Hydrothermal Crystal Growth of Magnetite in the Presence of Hydrogen
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    Chapter 21 Crystal Growth of Sodium Iron Titanium Bronze Compounds under Hydrothermal Conditions
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    Chapter 22 Hydrothermal Growth of Y 2 O 3 –Stabilized Cubic ZrO 2 Crystals
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    Chapter 23 Hydrothermal Growth of Fayalite Crystals
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    Chapter 24 Hydrothermal Growth of Fayalite Crystals
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    Chapter 25 Hydrothermal Growth of Quartz Crystals in NaCl Solution
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    Chapter 26 Hydrothermal crystal growth of perovskite-type fluorides
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    Chapter 27 Hydrothermal Growth of Quartz Crystals in KCl Solution
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    Chapter 28 Hydrothermal crystal growth of mixed crystals in the KMnF 3 -KCoF 3 system
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    Chapter 29 Crystallization and crystal growth of CeO 2 under hydrothermal conditions
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    Chapter 30 Hydrothermal Growth of Amethyst and Citrine in NaCl and KCl Solutions
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    Chapter 31 Hydrothermal growth of La 3+ -doped SrF 2 single crystal
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    Chapter 32 Crystal Growth of Yttria Stabilized Zirconia (YSZ) Under Hydrothermal Conditions
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    Chapter 33 Hydrothermal Crystal Growth of Calcite in NaCl and KCl Solutions
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    Chapter 34 Hydrothermal Crystal Growth of BaPb 1– x Bi x O 3 (0 ≤ x ≤ 0.30)
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    Chapter 35 Solubility and Hydrothermal Growth of Calcite Single Crystal in Nitrate Solutions
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    Chapter 36 Hydrothermal Preparation of Ultrafine Monoclinic ZrO 2 Powder
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    Chapter 37 Crystallizatioe and Transformation of Zirconia Under Hydrothermal Conditions
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    Chapter 38 Crystallization and crystal growth of CeO2 under hydrothermal conditions
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    Chapter 39 Formation of Ultrafine Tetragonal ZrO 2 Powder Under Hydrothermal Conditions
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    Chapter 40 Hydrothermal Crystallization and Crystal Growth of Un-doped and ZrO 2 -doped CeO 2
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    Chapter 41 Fine Zirconia Powders by Hydrothermal Processing
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    Chapter 42 Cubie Eu-doped Hafnia Ultrafine Particles Crystallized under Hydrothermal Conditions
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    Chapter 43 Hydrothermal Processing of Ultrafine Single-Crystal Zirconia and Hafnia Powders with Homogeneous Dopants
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    Chapter 44 Fluid Inclusions in Hydrothermally Synthesized Brucite Crystals
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    Chapter 45 Hydrothermal Synthesis of Topaz Crystals
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    Chapter 46 Hydrothermal Synthesis and Sintering of LaCrO 3
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    Chapter 47 Synthesis of LaCrO 3 Under Hydrothermal Conditions
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    Chapter 48 Effects of Starting Materials and Temperature on the Hydrothermal Synthesis of Aluminum Orthophosphate
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    Chapter 49 Hydrothermal Synthesis of Oxides of Manganese Single Crystals
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    Chapter 50 Hydrothermal Synthesis and Growth of La 1− x Sr x FeO 3 (0 ≤ x ≤0·1) Crystals
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    Chapter 51 Synthesis of magnetite using ilmenite under hydrothermal conditions
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    Chapter 52 Synthesis of Vanadium Sulfides under High Pressure
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    Chapter 53 Hydrothermal Synthesis of Gallium Orthophosphate Crystals
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    Chapter 54 Hydrothermal Synthesis and Properties of Bapb 1− x Bi x O 3
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    Chapter 55 Graphitization of Carbon in Presence of Calcium Compounds under Hydrothermal Condition by Use of High Gas Pressure Apparatus
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    Chapter 56 Hydration of Calcium Aluminates (3:1, 12:7, 1:1, 1:2 and 1:6) in Phosphoric Acid Solutions at Various Temperatures
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    Chapter 57 Immobilization of Radioactive Wastes in Hydrothermal Synthetic Rock
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    Chapter 58 Immobilization of Radioactive Wastes in Hydrothermal Synthetic Rock, (II)
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    Chapter 59 Immobilization of Radioactive Wastes in Hydrothermal Synthetic Rock, (III)
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    Chapter 60 Decomposition of Ilmenite under Hydrothermal Condition (Preliminary Work)
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    Chapter 61 Decomposition of Ilmenite under Hydrothermal Condition
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    Chapter 62 Reaction Products of Si 3 N 4 in Ammonia Solution at High Temperature Under High Pressure
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    Chapter 63 Hydrothermal Decomposition of Polychlorinated Biphenyls
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    Chapter 64 Decomposition of Ilmenite in KOH-H 2 O Solutions Under High-Pressure Conditions
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    Chapter 65 Oxidation of SiC powder by high-temperature, high-pressure H 2 O
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    Chapter 66 Dissolution and Reaction of Yttria-Stabilized Zirconia Single Crystals in Hydrothermal Solutions
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    Chapter 67 Role of H 2 O on the degradation process of Y-TZP
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    Chapter 68 Oxidation of Non-oxide Ceramics by High-Temperature High-Pressure Water
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    Chapter 69 Solidification of Glass Powder by A Hydrothermal Hot-Pressing Technique
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    Chapter 70 A hydrothermal hot-pressing method: apparatus and application
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    Chapter 71 Immobilization of Radioactive Wastes by Hydrothermal Hot Pressing
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    Chapter 72 Fabrication of phosphate-bonded mica ceramics by hot isostatic processing
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    Chapter 73 Fabrication of Nonadditive Mica Ceramics by Hot Isostatic Processing
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    Chapter 74 Sintering of Synthetic Mica by a Hydrothermal Equipment
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    Chapter 75 Sintering of Synthetic Mica by a Hydrothermal Hot Isostatic Process
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    Chapter 76 High-Pressure Hot Isostatic Pressing of Synthetic Mica
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    Chapter 77 Reactions of titanium metal powders with high-temperature high-pressure ammonia
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    Chapter 78 Oxidation of Si 3 N 4 and Sic by High Temperature—High Pressure Water Vapor
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    Chapter 79 Nitridation of Titanium and Zirconium Powders Mixed with Ammonium Chloride under High Temperature-High Pressure Ammonia
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    Chapter 80 Nitridation of Titanium and Zirconium Powders Mixed with Ammonium Chloride under High Temperature-High Pressure Ammonia
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    Chapter 81 Phase Equilibria in the System MgO-RCI (R = Li, Na and K) Solution under Hydrothermal Conditions by Means of a Capsule Bursting Method
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    Chapter 82 Phase Equilibria in the System Nd 2 O 3 -P 2 O 5 -H 2 O at 500°C under 100 MPa and Synthesis of NdP 5 O 14 Crystals
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    Chapter 83 The Confirmation of Phase Equilibria in the System ZrO 2 -CeO 2 Below 1400°C
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    Chapter 84 Revised Phase Diagram of the System ZrO 2 -CeO 2 Below 1400°C
Attention for Chapter 38: Crystallization and crystal growth of CeO2 under hydrothermal conditions
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Chapter title
Crystallization and crystal growth of CeO2 under hydrothermal conditions
Chapter number 38
Book title
Hydrothermal Reactions for Materials Science and Engineering
Published by
Springer Netherlands, February 1989
DOI 10.1007/978-94-009-0743-0_38
Book ISBNs
978-9-40-106819-2, 978-9-40-090743-0
Authors

E. Tani, M. Yoshimura, S. Sōmiya

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