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Fundamentals of Membrane Separation Technology provides a comprehensive and systematic introduction to this environmentally-friendly separation process. Using a structured format that promotes comprehension and implementation, each chapter provides overviews, principles, materials, preparation, and industrial applications. Each chapter then concludes with future prospects, references, and end-of-chapter exercises. Written for students and professionals, this book is an ideal reference for those who wish to better understand the fundamentals and applications of membrane technology.
This book presents the editor's recently proposed mathematical models for flux prediction in membrane filtration. It also provides typical mathematical models used in the development of membrane fouling control and explains the step-by-step derivation of these models. The book then highlights how these mathematical models provide insights into the mechanisms of membrane fouling and cleaning to allow for a better understanding of the complete membrane filtration process. Given its scope, this book appeals to a broad readership, particularly professionals at universities as well as engineers engaged in membrane separation in an industrial process.
Mobility applications highly depend on accurate and reliable localization, as well as mapping of the surroundings where one is moving. For safety critical applications like highly automated vehicles, localization and mapping enable many actors not only making their own local dynamic map, but also sharing the information in order to update this map cooperatively with the others. This book investigates a deterministic filtering technique, based on interval analysis and constraint propagation, to deal with the robotic localization and mapping issues, with certain advantages among which reliability. Both practical and theoretical aspects of the vehicle localization and mapping problems are modeled and exploited. Some new deterministic methods using interval analysis and constraint propagation are presented, accompanied with sufficient simulation and full-scale experimental data to illustrate the applicability of the method and its reliability. This book contains also an effectively pedagogical presentation for understanding and using interval analysis and constraint propagation to solve practical problems, which is very helpful for a beginer in the domain.
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