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Plate towers --- 66.0 --- destillatie --- Bubble-cap plate towers --- Columns, Plate --- Towers, Plate --- Chemical engineering --- Distillation apparatus --- Distillation, Fractional --- Chemical engineering. Chemical production, processing, operations, plant --- Equipment and supplies --- Plate towers. --- 66.0 Chemical engineering. Chemical production, processing, operations, plant
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A completely thorough and up-to-date guide to modern distillation methods and their applicationsDistillation has been used for separating liquid mixtures for more than two thousand years, and it continues to be the most widely used separation technique in key industries throughout the industrialized world. Although the basic principles have remained the same since the days of the ancient Egyptians, new distillation and distillation control methods continue to be developed to satisfy a variety of highly specialized requirements.Encyclopedic in scope, this book provides distillation technicians with a uniquely comprehensive, up-to-date account of distillation methods currently employed in the oil, petrochemical, chemical, and pharmaceutical industries. The authors begin by acquainting readers with the principles of vapor-liquid equilibrium and the essential calculations for determining phase equilibria and equilibrium curves. Subsequent chapters are devoted to practical discussions of virtually all modern distillation methods, including batch, single stage, multistage continuous, multistage batch, and others. A wide array of industrial applications are described, including everything from crude oil distillation and argon recovery from air to water purification and ammonia recovery from wastewater. Special sections deal with the separation of azeotropic mixtures and the energy demand of distillation processes. Concluding chapters are devoted to detailed, extremely well illustrated descriptions of practical equipment design and modern distillation control methods.Distillation: Principles and Practice is an indispensable working resource for distillation technicians working in the oil, petrochemical, chemical, and pharmaceutical industries.
Chemical technology --- destillatie --- Distillation. --- Chemical engineering design --- Distillation --- Vapor-liquid equilibrium
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Thermal Separation Technology is a key discipline for many industries and lays the engineering foundations for the sustainable and economic production of high-quality materials. This book provides fundamental knowledge on this field and may be used both in university teaching and in industrial research and development. Furthermore, it is intended to support professional engineers in their daily efforts to improve plant efficiency and reliability. Previous German editions of this book have gained widespread recognition. This first English edition will now make its content available to the international community of students and professionals. In the first chapters of the book the fundamentals of thermodynamics, heat and mass transfer, and multiphase flow are addressed. Further chapters examine in depth the different unit operations distillation and absorption, extraction, evaporation and condensation, crystallization, adsorption and chromatography, and drying, while the closing chapter provides valuable guidelines for a conceptual process development.
Chemical industry. --- Heat -- Transmission. --- Mass transfer. --- Separation (Technology). --- Chemical & Materials Engineering --- Mechanical Engineering --- Physics --- Physical Sciences & Mathematics --- Engineering & Applied Sciences --- Mechanical Engineering - General --- Chemical Engineering --- Thermodynamics --- Separation (Technology) --- Thermodynamics. --- Engineering. --- Chemical engineering. --- Heat engineering. --- Heat transfer. --- Fluid mechanics. --- Industrial engineering. --- Engineering Thermodynamics, Heat and Mass Transfer. --- Industrial Chemistry/Chemical Engineering. --- Engineering Fluid Dynamics. --- Operating Procedures, Materials Treatment. --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Heat --- Heat-engines --- Quantum theory --- Chemistry, Analytic --- Chemistry, Technical --- Technology --- Hydraulic engineering. --- Manufactures. --- Manufacturing, Machines, Tools, Processes. --- Manufactured goods --- Manufactured products --- Products --- Products, Manufactured --- Commercial products --- Manufacturing industries --- Engineering, Hydraulic --- Engineering --- Fluid mechanics --- Hydraulics --- Shore protection --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Metallurgy --- Construction --- Industrial arts --- Hydromechanics --- Continuum mechanics --- Mass transport (Physics) --- Transport theory --- Heat transfer --- Thermal transfer --- Transmission of heat --- Energy transfer --- Mechanical engineering
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Fluid mechanics --- Thermodynamics --- Mechanical properties of solids --- Materials processing --- Engineering sciences. Technology --- thermodynamica --- BIT (biochemische ingenieurstechnieken) --- ingenieurswetenschappen --- productieprocessen --- vloeistoffen --- warmteoverdracht
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Die 2. Auflage hält an dem bewährten und anerkannten Konzept der Vorauflage fest: ein Grundlagenwerk zum Einsatz in der universitären Lehre, aber vor allem ein Nachschlagewerk für den Beruf zum tieferen Verständnis der verfahrenstechnischen Zusammenhänge. Gegenüber der Vorauflage wurde das Werk allerdings erheblich erweitert, durch aktuelle Forschungsergebnisse und ein Kapitel zur konzeptuellen Prozessentwicklung ergänzt. Prof. Dr.-Ing. Arnold Mersmann war Inhaber des Lehrstuhls für Verfahrenstechnik der TU München. Prof. Dr.-Ing. Matthias Kind ist Leiter des Instituts für Thermische Verfahrenstechnik an der Universität Karlsruhe. Seine Forschungsschwerpunkte liegen in der Produktgestaltung mittels Kristallisation und Fällung. Prof. Dr.-Ing. Johann Stichlmair ist Inhaber des Lehrstuhls für Fluidverfahrenstechnik an der TU München. Seine Forschungsschwerpunkte liegen in der Prozesssynthese, der Apparatedimensionierung und in der Diffusion.
Biochemical engineering. --- Chemical engineering. --- Thermodynamics. --- Heat engineering. --- Heat transfer. --- Mass transfer. --- Fluid mechanics. --- Manufactures. --- Biochemical Engineering. --- Industrial Chemistry/Chemical Engineering. --- Engineering Thermodynamics, Heat and Mass Transfer. --- Engineering Fluid Dynamics. --- Manufacturing, Machines, Tools, Processes.
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Thermal Separation Technology is a key discipline for many industries and lays the engineering foundations for the sustainable and economic production of high-quality materials. This book provides fundamental knowledge on this field and may be used both in university teaching and in industrial research and development. Furthermore, it is intended to support professional engineers in their daily efforts to improve plant efficiency and reliability. Previous German editions of this book have gained widespread recognition. This first English edition will now make its content available to the international community of students and professionals. In the first chapters of the book the fundamentals of thermodynamics, heat and mass transfer, and multiphase flow are addressed. Further chapters examine in depth the different unit operations distillation and absorption, extraction, evaporation and condensation, crystallization, adsorption and chromatography, and drying, while the closing chapter provides valuable guidelines for a conceptual process development.
Fluid mechanics --- Thermodynamics --- Mechanical properties of solids --- Materials processing --- Engineering sciences. Technology --- thermodynamica --- BIT (biochemische ingenieurstechnieken) --- ingenieurswetenschappen --- productieprocessen --- vloeistoffen --- warmteoverdracht
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