Permeability Of Organic Materials To Gases
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Materials Science of Membranes for Gas and Vapor Separation
Author | : Benny Freeman |
Publisher | : John Wiley & Sons |
Total Pages | : 466 |
Release | : 2006-05-12 |
Genre | : Technology & Engineering |
ISBN | : 9780470029046 |
Materials Science of Membranes for Gas and Vapor Separation is a one-stop reference for the latest advances in membrane-based separation and technology. Put together by an international team of contributors and academia, the book focuses on the advances in both theoretical and experimental materials science and engineering, as well as progress in membrane technology. Special attention is given to comparing polymer and inorganic/organic separation and other emerging applications such as sensors. This book aims to give a balanced treatment of the subject area, allowing the reader an excellent overall perspective of new theoretical results that can be applied to advanced materials, as well as the separation of polymers. The contributions will provide a compact source of relevant and timely information and will be of interest to government, industrial and academic polymer chemists, chemical engineers and materials scientists, as well as an ideal introduction to students.
Permeability of Organic Compounds Through Various Packaging Polymers Database
Author | : Jonathan Bernard Shaw |
Publisher | : |
Total Pages | : 236 |
Release | : 2002 |
Genre | : Mass transfer |
ISBN | : |
Pervaporation, Vapour Permeation and Membrane Distillation
Author | : Angelo Basile |
Publisher | : Elsevier |
Total Pages | : 481 |
Release | : 2015-02-07 |
Genre | : Technology & Engineering |
ISBN | : 1782422560 |
Vapour permeation and membrane distillation are two emerging membrane technologies for the production of vapour as permeate, which, in addition to well-established pervaporation technology, are of increasing interest to academia and industry. As efficient separation and concentration processes, they have high potential for use in the energy, water, chemical, food and pharmaceutical sectors. Part One begins by covering the fundamentals, preparation and characterization of pervaporation, before going on to outline the associated systems and applications. State of the art uses, future trends and next generation pervaporation are then discussed. Part Two then explores the preparation, characterization, systems and applications of membranes for vapour permeation, followed by modelling and the new generation of vapour permeation membranes. Finally, Part Three outlines the fundamentals of membrane distillation and its applications in integrated systems, before the book concludes with a view of the next generation. - Explores three emerging membrane technologies that produce vapour as a permeate. - Looks at the fundamentals, applications, state of the art uses and next generation of each technology. - Provides an authoritative guide for chemical engineers and academic researchers interested in membrane technologies for desalination, process water/steam treatment, water purification, VOCs removal and other aspects of pollution control, industrial process chemistry, renewable energy production or separation and concentration in the food/pharmaceutical industries.
Reliability of Organic Compounds in Microelectronics and Optoelectronics
Author | : Willem Dirk van Driel |
Publisher | : Springer Nature |
Total Pages | : 552 |
Release | : 2022-01-31 |
Genre | : Technology & Engineering |
ISBN | : 3030815765 |
This book aims to provide a comprehensive reference into the critical subject of failure and degradation in organic materials, used in optoelectronics and microelectronics systems and devices. Readers in different industrial sectors, including microelectronics, automotive, lighting, oil/gas, and petrochemical will benefit from this book. Several case studies and examples are discussed, which readers will find useful to assess and mitigate similar failure cases. More importantly, this book presents methodologies and useful approaches in analyzing a failure and in relating a failure to the reliability of materials and systems.
Membrane Materials for Gas and Separation
Author | : Yuri Yampolskii |
Publisher | : John Wiley & Sons |
Total Pages | : 440 |
Release | : 2017-01-10 |
Genre | : Technology & Engineering |
ISBN | : 1119112737 |
Si containing polymers have been instrumental in the development of membrane gas separation practices since the early 1970s. Their function is to provide a selective barrier for different molecular species, where selection takes place either on the basis of size or on the basis of physical interactions or both. Combines membrane science, organosilicon chemistry, polymer science, materials science, and physical chemistry Only book to consider polymerization chemistry and synthesis of Si-containing polymers (both glassy and rubbery), and their role as membrane materials Membrane operations present environmental benefits such as reduced waste, and recovered/recycled valuable raw materials that are currently lost to fuel or to flares
Metal-organic Framework Membranes For Molecular Gas Separations
Author | : Moises A Carreon |
Publisher | : World Scientific |
Total Pages | : 283 |
Release | : 2020-07-30 |
Genre | : Technology & Engineering |
ISBN | : 1786346745 |
This unique compendium describes research progress on metal-organic framework (MOF) membranes for different relevant industrial gas separations. Specifically, the book focuses mainly on gas separations which are important in flue gas treatment, natural gas purification, hydrogen purification, and nuclear reprocessing. The advantages of using MOFs in mixed matrix membranes are discussed. Some of the pressing challenges in the field, and strategies to potentially overcome them are also distinctly outlined.This volume is a useful reference materials for professionals, academics, researchers and postgraduate students in chemical engineering and materials engineering.
Modelling in Nanoporous Shale
Author | : Liehui Zhang |
Publisher | : Springer Nature |
Total Pages | : 199 |
Release | : |
Genre | : |
ISBN | : 3031691423 |
Unconventional: Natural Gas Developmt from Marcellus Shale
Author | : Daniel J. Soeder |
Publisher | : Geological Society of America |
Total Pages | : 160 |
Release | : 2017 |
Genre | : Nature |
ISBN | : 0813725275 |
"An excellent objective explanation of the history, science, technology, politics, environmental concerns, and economics of the shale gas boom. The author clearly has great practical experience of the science and technology of shale gas development and shows a deep understanding of the environmental and economic issues." --Andrew Stone, Executive Director, American Ground Water Trust New technology has opened vast reserves of "unconventional" natural gas and oil from shales like the Marcellus in the Appalachian Basin, making the United States essentially energy independent for the first time in decades. Shale gas had its origins in the oil embargos and energy crises of the 1970s, which led to government research to increase domestic energy supplies. The first large-scale shale gas production was successful on the Barnett Shale in Texas in the late 1990s, followed a few years later by the Marcellus Shale in Pennsylvania. Shale gas has changed thinking about fossil energy supplies worldwide, but the development of these resources has been controversial. Activists have made claims that hydraulic fracturing may contribute to climate change, threaten groundwater resources, and pose risks to terrestrial and aquatic ecosystems, and human health. This volume explores the geology, history, technology, and potential environmental impacts of Marcellus Shale gas resources.