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با سلام
به درخواست دوست عزیزمون، john zink، اینجا سری کتاب‌های جداسازی به وسیله غشا رو می‌زاریم
مدیریت مربوطه، اگه اسم مناسب‌تری رو مد نظر دارن، لطفن تاپیک رو ویرایش کنن و اسم مناسبی رو تهیه کنند
با تشکر
:gol:

پ.ن: در صورت نیاز به پسورد، خبرم بدین!

کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی کتاب‌های جداسازی غشایی
 
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Hybrid Membrane Systems for Water Purification

Hybrid Membrane Systems for Water Purification

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Hybrid Membrane Systems for Water Purification
Elsevier; 1 edition (February 8, 2006) | ISBN:1856174425 | 384 pages | PDF | 25,1 Mb

Membrane systems are finding increasing application worldwide in the purification of potable and industrial water, and their design and use is set to grow considerably in years to come.
This comprehensive book is written in a practical style with emphasis on process description, key unit operations, plant equipment description, equipment installation, safety and maintenance, process control, plant start-up, operation and troubleshooting. It is supplemented by case studies and useful engineering rules-of-thumb.
The author is a chemical engineer with many years experience in the field and his technical knowledge and practical know-how in the water purification industry are summarised succinctly in this volume.

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Membrane technology and applications - R.W. Baker

Membrane technology and applications - R.W. Baker

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Membrane Technology and Applications by Richard Baker
Publisher: Wiley | 2 edition (May 28, 2004) | ISBN: 0470854456 | Pages: 552 | PDF | 4.37 MB

Membrane Technology and Applications is the most authoritative overview available today of separation membranes, their theoretical underpinnings, manufacture and use. This second edition has been fully revised and expanded to provide comprehensive, up-to-the-minute coverage of the latest developments in the field.

The first four chapters cover the basics of membrane science, including transport theory, membrane and module preparation, and concentration polarization. This material is presented with a clarity that should make it readily accessible to the beginner, yet is sufficiently thorough to be a valuable refresher for the experienced membranologist.

Thereafter each major membrane application, including reverse osmosis, ultrafiltration, microfiltration, gas separation, pervaporation, and electrodialysis, is treated in its own chapter. Topics covered include membrane materials, process design, technical and economic comparison with other separations technologies, and integration with other plant operations. Emphasis throughout is on industrial practice, and numerous tables present real life performance data and operating parameters that are seldom available in the open literature.

Many changes have been made for the new edition, especially in the reverse osmosis, microfiltration and gas separation chapters, to reflect technology advances and emerging applications that are now coming on-line. In addition, there is new coverage of the separation of organic liquid mixtures by hyperfiltration, and a fuller and more detailed treatment of nanofiltration. New applications of microfiltration in municipal water treatment are also discussed. In the gas separations area, the section on natural gas processing has been enlarged, as has the discussion of hydrogen separation in refineries. The final chapter incorporates advances in membrane contactors, such as those used on off-shore oil platforms, as well as new developments in membrane reactors.

The book features a wealth of simple, line drawings, graphs and flow diagrams to augment the text and reinforce key concepts, as well as many photographs of membrane systems in action which provide the reader with a sense of scale. A further feature of the second edition is the much-expanded appendix, which includes 19 tables of conversion factors, physical constants and other reference material that will be an invaluable time-saver for plant engineers, researchers and students.

As refreshingly forthright and readable as ever, this second edition of Membrane Technology and Applications will be the guide of choice for any engineer, whether a student tentatively approaching the subject for the first time, or a seasoned expert seeking an all-inclusive handbook
 

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Membrane Technology in Water and Wastewater Treatment

Membrane Technology in Water and Wastewater Treatment



Peter Hillis, “Membrane Technology in Water and Wastewater Treatment”
Royal Society of Chemistry | 2000-05-15 | ISBN: 0854048006 | 269 pages | PDF | 12,3 MB

Presenting a useful reference to the current state of membrane technology and its likely future growth, this book covers all aspects of the technology and its applications in the water industry. Drawing on the
experience of international experts, Membrane Technology in Water and Wastewater Treatment encompasses many practical applications of specific membranes, including MF, UF, NF, RO and EDR, in the treatment of ground and surface water, backwashwater, seawater, and industrial and domestic wastewater. Novel applications, process enhancements and the latest systems are also discussed. This book is an excellent guide to membrane technology and will be of great interest to water companies, industrialists, legislative bodies and anyone with an interest in the technology or its applications.​
 

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Membrane and Desalination Technologies

Membrane and Desalination Technologies





Lawrence K. Wang, Jiaping Paul Chen, Yung-Tse Hung, and Nazih K. Shammas, "Membrane and Desalination Technologies"
Hu-ana Press | 2010 | ISBN: 1588299406 | 670 pages | PDF | 13,5 MB

In this essential new volume, Volume 13: Membrane and Desalination Technologies, a panel of expert researchers provide a wealth of information on membrane and desalination technologies. An advanced chemical and environmental engineering textbook as well as a comprehensive reference book, this volume is of high value to advanced graduate and undergraduate students, researchers, scientists, and designers of water and wastewater treatment systems. This is an essential part of the Handbook of Environmental Engineering series, an incredible collection of methodologies that study the effects of pollution and waste in their three basic forms: gas, solid, and liquid. Chapters adopt the series format, employing methods of practical design and calculation illustrated by numerical examples, including pertinent cost data whenever possible, and exploring in great detail the fundamental principles of the field. Volume 13: Membrane and Desalination Technologies is an essential guide for researchers, highlighting the latest developments in principles of membrane technology, membrane systems planning and design, industrial and municipal waste treatments, desalination requirements, wastewater reclamation, biofiltration, and more. -- Coverage of the principles of membrane and desalination technologies and the fundamentals of water and wastewater treatment -- Emphasis on industry standards, trends in the field, municipal & industrial full-scale operations, POU and POE applications -- Examples of actual operating water and wastewater treatment plants based on membrane technology. -- Examples of actual desalination plants based on both membrane and non-membrane technologies -- Reference of practical use to scientists, researchers, educators and designers of water and wastewater treatment systems. Contents: Membrane Technology. Preparation of Polymeric Membranes. Advanced Membrane Fouling Characterization. Membranes Testing. Membrane Bioreactors. Treatment of Food Wastes. Membrane Separation: Industrial and Municipal Operations. Membrane Systems Design. Adsorption Desalination. Municipal Wastewater Reclamation. Biotechnology and Membrane Filtration. Thermal Distillation and Electrodialysis Technologies. Reverse Osmosis Desalination. Membrane for Point-of-Use and Point-of-Entry Applications. Oil-Water Separation. Gas-sparged Ultrafilatration.

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Fundamentals of inorganic membrane science and technology

Fundamentals of inorganic membrane science and technology




Fundamentals of Inorganic Membrane Science and Technology by A. J. Burggraaf (Author), L. Cot (Editor)
Publisher: Elsevier Science | November 1, 1996 | ISBN: 0444818774 | Pages: 708 | PDF | 34.73 MB

Inorganic membrane science and technology is a new field of membrane separation technology which until recently was dominated by the earlier field of polymer membranes. Currently the subject is undergoing rapid development and innovation. Asymmetric inorganic membranes for microfiltration of liquids were first commercialized in the early 1980s and today form the largest application in the agro-food, biotechnology, pharmaceutical and other industries. Other types of inorganic membranes and separation processes (i.e., gas separation, nanofiltration, membrane reactors) have also been developed on a laboratory scale. The commercial exploitation of some of these developments is feasible although it has not yet been realized. This situation is hardly surprising when the history of polymer membrane development is considered.

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Inorganic Membranes for Separation and Reaction (Membrane Science and Technology)

Inorganic Membranes for Separation and Reaction (Membrane Science and Technology)






Inorganic Membranes for Separation and Reaction (Membrane Science and Technology) by: H.P. Hsieh
Publisher: Elsevier | June 1, 1996 | ISBN: 0444816771 | Pages: 610 | PDF | 25 MB

With the recent advent of commercial ceramic membranes, inorganic membranes are receiving much attention as unique separators and reactors due to their excellent thermal and chemical stabilities. This volume provides an extensive and integrated survey of the science and technology of inorganic membranes. Various methods for making dense metal and solid electrolyte membranes and porous inorganic membranes with tortuous and nearly straight pores are provided. These inorganic membranes, ranging from ceramics to metals to inorganic polymers, can be characterized by many techniques indicative of their separation performance under idealized as well as application conditions. In addition to many commercial liquid-phase applications, inorganic membranes have been used industrially for gas diffusion and particle filtration and demonstrated for the important high-temperature gas separation and membrane reactor applications. Approximately half of the book is devoted to the subject of inorganic membrane reactors. Useful data in many tables and figures and extensive literature and patent information are given throughout the book for further study. The book is a valuable reference for researchers as well as process engineers who are involved in membrane and separation technology. Chemical engineers, chemists and material scientists should also find the text a comprehensible introduction to the subject.

 

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Membrane Gas Separation

Membrane Gas Separation


Membrane Gas Separation
Benny Freeman, Yuri Yampolskii


Membrane Gas Separation by Benny Freeman, Yuri Yampolskii Publisher: WIKEY | 2010 | ISBN 0470746211 | PDF | 392 pages | 12 MB
Gas separation membranes offer a number of benefits over other separation technologies, and they play an increasingly important role in reducing the environmental impacts and costs of many industrial processes. This book describes recent and emerging results in membrane gas separation, including highlights of nanoscience and technology, novel polymeric and inorganic membrane materials, new membrane approaches to solve environmental problems e.g. greenhouse gases, aspects of membrane engineering, and recent achievements in industrial gas separation. It includes: * Hyperbranched polyimides, amorphous glassy polymers and perfluorinated copolymers * Nanocomposite (mixed matrix) membranes * Polymeric magnetic membranes * Sequestration of CO2 to reduce global warming * Industrial applications of gas separation Developed from sessions of the most recent International Congress on Membranes and Membrane Processes, Membrane Gas Separation gives a snapshot of the current situation, and presents both fundamental results and applied achievements.

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Basic Principles of Membrane Technology
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پی دی اف کتاب رو دارم اما بی کیفیته
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Basic Principles of Membrane Technology, Second Edition



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Polymeric Gas Separation Membranes

Polymeric Gas Separation Membranes

Polymeric Gas Separation Membranes
Donald R. Paul, Yuri P. Yampol'skii


Polymeric Gas Separation Membranes is an outstanding reference devoted to discussing the separation of gases by membranes. An international team of contributors examines the latest findings of membrane science and practical applications and explores the complete spectrum of relevant topics from fundamentals of gas sorption and diffusion in polymers to vapor separation from air. They also compare membrane processes with other separation technologies. This essential book will be valuable to all practitioners and students in membrane science and technology.
 

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Membrane Gas Separation

Membrane Gas Separation

Membrane Gas Separation
Benny Freeman, Yuri Yampolskii



 

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Materials science of membranes for gas and vapor separation

Materials science of membranes for gas and vapor separation

Materials science of membranes for gas and vapor separation
Benny Freeman, Yuri Yampolskii, Ingo Pinnau


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.

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