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"Providing chemical engineering undergraduate and graduate students with a basic understanding of how separation of a mixture of molecules, macromolecules or particles is achieved, this textbook is a comprehensive introduction to the engineering science of separation. Students learn how to apply their knowledge to determine the separation achieved in a given device or process. Real-world examples are taken from biotechnology, chemical, food, petrochemical, pharmaceutical and pollution control industries. Worked examples, elementary separator designs and chapter-end problems, giving students a practical understanding of separation. The textbook systematically develops different separation processes by considering the forces causing the separation, and how this separation is influenced by the patterns of bulk flow in the separation device. Readers will be able to take this knowledge and apply it to their own future studies and research in separation and purification. Online resources include solutions to the exercises and guidance for computer simulations"-- Provided by publisher
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Distillation: Operation and Applications is a single source of authoritative information on all aspects of the theory and practice of modern distillation, suitable for advanced students and professionals working in a laboratory, industrial plants, or a managerial capacity. It addresses the most important and current research on industrial distillation, including all steps in process design (feasibility study, modeling, and experimental validation), together with operation and control aspects. This volume features an extra focus on distillation applications.Practical info
Distillation. --- Rectification of spirits --- Separation (Technology) --- Liquors
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Aerosols --- Adsorption. --- Sorption --- Separation (Technology) --- Surface chemistry --- Colloids --- Gases --- Environmental aspects. --- Optical properties.
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Distillation: Fundamentals and Principles - winner of the 2015 PROSE Award in Chemistry & Physics - is a single source of authoritative information on all aspects of the theory and practice of modern distillation, suitable for advanced students and professionals working in a laboratory, industrial plants, or a managerial capacity. It addresses the most important and current research on industrial distillation, including all steps in process design (feasibility study, modeling, and experimental validation), together with operation and control aspects. This volume features an extra focus
Distillation -- Congresses. --- Separation (Technology) -- Handbooks, manuals, etc. --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Chemical Engineering --- Distillation --- Separation (Technology) --- Analytical chemistry --- Chemistry, Technical --- Technology --- Rectification of spirits --- Liquors --- Chemical separations --- Separation processes --- Separation science --- Separation technologies --- Separations, Chemical
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- Data Compilation -Special topic volume.
Diffusion. --- Hydrogen. --- Gases --- Liquids --- Physics --- Separation (Technology) --- Solution (Chemistry) --- Solutions, Solid --- Matter --- Packed towers --- Semiconductor doping --- Nonmetals --- Diffusion --- Properties
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Computational Materials Science provides the theoretical basis necessary for understanding atomic surface phenomena and processes of phase transitions, especially crystallization, is given. The most important information concerning computer simulation by different methods and simulation techniques for modeling of physical systems is also presented. A number of results are discussed regarding modern studies of surface processes during crystallization. There is sufficiently full information on experiments, theory, and simulations concerning the surface roughening transition, kinetic roughenin
Crystallization --- Crystals --- Interfaces (Physical sciences) --- Computer simulation. --- Structure --- Chemistry --- Chemistry, Physical and theoretical --- Separation (Technology) --- Surface chemistry --- Surfaces (Physics) --- Crystallography --- Powders --- Solids
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This topical volume on Advanced Diffusion Processes and Phenomena addresses diffusion in a wider sense of not only mass diffusion but also heat diffusion in fluids and solids. Both diffusion phenomena play an important role in the characterization of engineering materials and corresponding structures. Understanding these different transport phenomena at many levels, from atomistic to macro, has therefore long attracted the attention of many researchers in materials science and engineering and related disciplines. The present topical volume captures a representative cross-section of some of the
Diffusion. --- Diffusion processes. --- Markov processes --- Gases --- Liquids --- Physics --- Separation (Technology) --- Solution (Chemistry) --- Solutions, Solid --- Matter --- Packed towers --- Semiconductor doping --- Diffusion --- Properties
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Ionic Liquids in Separation Technology reports on the most important fundamental and technological advances in separation processes using ionic liquids. It brings together the latest developments in this fascinating field, supplements them with numerous practical tips, and thus provides those working in both research and industry with an indispensable source of information. The book covers fundamental topics of physical, thermal, and optical properties of ionic liquids, including green aspects. It then moves on to contexts and applications, including separation of proteins, reduction of en
Electrolyte solutions. --- Ionic solutions. --- Separation (Technology). --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Chemical Engineering --- Separation (Technology) --- Analytical chemistry --- Chemistry, Technical --- Technology --- Solutions, Ionic --- Ions --- Solution (Chemistry) --- Polyelectrolyte solutions --- Solutions, Electrolyte --- Electrolytes --- Chemical separations --- Separation processes --- Separation science --- Separation technologies --- Separations, Chemical
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