Inorganic Membranes: Synthesis, Characterization and Applications: Synthesis, Characterization and Applications
Mallada, Reyes; Menéndez, Miguel
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Table of contents
- Cover
- Contentsv
- Contributorsix
- Prefacexiii
- Chapter 1: Stability of Porous Ceramic Membranes1
- 1. Introduction
- 2. Chemical Stability
- 3. Thermal Stability20
- 4. Resuming28
- References29
- Chapter 2: Microporous Silica Membrane: Basic Principles and Recent Advances33
- 1. Introduction33
- 2. Specific Properties of Amorphous Silica: Comparison with Other Oxides37
- 3. Synthesis Methods38
- 4. Design and Performance of Microporous Silica Membranes58
- 5. Conclusion73
- References74
- Chapter 3: From Polymeric Precursors to Hollow Fiber Carbon and Ceramic Membranes81
- 1. General Introduction
- 2. Part 1: Polymeric Precursors of Hollow Fiber Carbon Membranes
- 3. Part 2: Polymeric Precursors of Hollow Fiber Ceramic Membranes98
- References
- Chapter 4: Organic-Inorganic Membranes121
- 1. Introduction
- 2. Polymers with Impermeable Fillers
- 3. Polymers with Permeable Filler: Mixed Matrix Membranes129
- 4. Organic-Inorganic Covalent Network131
- References
- Chapter 5: Preparation and Characterization of Zeolite Membranes135
- 1. Introduction135
- 2. Preparation of Zeolite Membranes by In Situ Liquid-Phase Hydrothermal Synthesis140
- 3. Preparation of Zeolite Membranes by Secondary (Seeded) Growth145
- 4. Preparation of Membranes by the Dry Gel Method147
- 5. Special Issues150
- 6. Characterization158
- 7. Applications of Zeolite Membranes160
- References
- Chapter 6: Industrial Applications of Porous Ceramic Membranes (Pressure-Driven Processes)177
- 1. Introduction: Pressure-Driven Membrane Processes177
- 2. Porous Ceramic Membranes used in Pressure-Driven Filtration180
- 3. Industrial Applications of Ceramic Membranes189
- 4. Ceramic Membrane Applications in Water and Wastewater Treatment208
- Acknowledgments215
- References
- Chapter 7: Pervaporation and Gas Separation Using Microporous Membranes217
- 1. Introduction217
- 2. Types of Microporous Membranes220
- 3. Applications221
- 4. Modeling of Mass Transport Through Microporous Membranes236
- 5. Conclusions244
- References
- Chapter 8: Synthesis, Characterization, and Applications of Palladium Membranes255
- 1. Introduction256
- 2. Preparation of Palladium-Based Membranes256
- 3. Characterization of Palladium-Based Membranes275
- 4. Palladium Membrane Reactors290
- 5. Conclusions314
- Acknowledgments
- References315
- Chapter 9: Mathematical Modeling of Pd-Alloy Membrane Reactors325
- 1. Introduction328
- 2. Pd and Pd-Alloy Membranes330
- 3. Thermodynamic Equilibrium in Pd-Alloy Membrane Reactor336
- 4. Models of Pd-Alloy Membrane Reactors343
- 5. Simulation366
- Acknowledgments
- References
- Chapter 10: Oxygen and Hydrogen Separation Membranes Based on Dense Ceramic Conductors401
- 1. Introduction402
- 2. Theory403
- 3. Materials Properties
- 4. Stability
- 5. Applications
- 6. Concluding Remarks445
- References
- Index459
Book details
- Vendor Elsevier S & T
- SKU 9780444530707
- ISBN-13 9780080558004
- Author Mallada, Reyes; Menéndez, Miguel
- Category Science
- Subject Industrial & Technical
Do you have questions about this book?
The withstanding properties of inorganic membranes provide a set of tools for solving many of the problems that the society is facing, from environmental to energy problems and from water quality to more competitive industries. Such a wide variety of issues requires a fundamental approach, together with the precise description of applications provided by those researchers that have been close to the industrial applications. The contents of this book expand the lectures given in a Summer School of the European Membrane Society. They combine an easily accessible description of the technology, suitable for the graduate level, with the most advanced developments and the prospective of future applications. The large variety of membrane types makes almost compulsory to select a specialist for each of them, and this has been the approach selected in this book.
In the case of porous membranes, the advances are related to the synthesis of microporous materials such as silica, carbon and zeolite membranes and hollow fibre membranes. A chapter covers the increasingly relevant hybrid membranes. Attention is also devoted to dense inorganic membranes, experiencing constantly improved properties. The applications of all these membranes are considered throughout the book.
Covers all the inorganic membranes field, by different experts.
It comes from a European Summer School
It includes future directions in the field
In the case of porous membranes, the advances are related to the synthesis of microporous materials such as silica, carbon and zeolite membranes and hollow fibre membranes. A chapter covers the increasingly relevant hybrid membranes. Attention is also devoted to dense inorganic membranes, experiencing constantly improved properties. The applications of all these membranes are considered throughout the book.
Covers all the inorganic membranes field, by different experts.
It comes from a European Summer School
It includes future directions in the field
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