1 edition of Fluidized bed fundamentals and applications found in the catalog.
Fluidized bed fundamentals and applications
Papers originally presented at meetings of the American Institute of Chemical Engineers in San Francisco, 1971, Cincinnati, 1971, St. Louis, 1972 and New York, 1972.
|Statement||D. L. Keairns ... et al. editors.|
|Series||AIChE symposium series -- no.128|
|Contributions||Keairns, D.L., American Institute of Chemical Engineers.|
Botterill, J.S.M. () Fluidized bed behaviour at high temperatures and pressures. In Transport in Fluidized Particle Systems (Eds Doraiswamy, L.K and Mujamar, A.S.) . Hydrodynamic Behavior of a 3-D Liquid–Solid Fluidized Bed Operating in the Intermediate Flow Regime—Application of Stability Analysis, Coupled CFD-DEM, and Tomography. Industrial & Engineering Chemistry Research , 57 (49),
The Fluidization XVI conference aims to bridge fundamental research on fluidization and emerging applications of fluidization and novel fluidization technologies. As the 16th iteration of this conference, the conference brought together world renowned experts in the field. Abstract The fluidized bed provides a means for exchanging heat between a metal part, the solid particles, and the fluidizing gas and which is viable for quenching. This article briefly considers the design aspects of the gas distributor, plenum, container, immersed cooling tubes and surface air spray cooling system in the quenching fluidized bed.
Vibratory Fluidized Bed (VFB) is a type of fluidized bed where the mechanical vibration enhances the performance of fluidization process. Since the first discovery of vibratory fluidized bed, its vibration properties proves to be more efficient in dealing with fine particles which appears to be very difficult to achieve with normal fluidized bed. Beginning with a general introduction to fossil or biofuel conversion choices, the book surveys hydrodynamics, fundamentals of gasification, combustion of solid fuels, pollution aspects including climate change mitigation, heat transfer in fluidized beds, the design and operation of bubbling and circulating fluidized bed boilers, and various.
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Fundamentals of Fluidized-bed Chemical Processes presents a survey of the design, operation, and chemical processes of fluidized-bed reactors. The book is composed of five chapters. The first chapter examines the basic physics of gas-solid fluidization.
Fluidized bed fundamentals and applications. (Book, )  Get this from a library. Fluidized bed fundamentals and applications. About the authors The fluidized-bed reactor is the centerpiece of industrial fluidization processes.
This book focuses on the design and operation of fluidized beds in many different industrial processes, emphasizing the rationale for choosing fluidized beds for each particular process. Fundamentals of Fluidized-bed Chemical Processes presents a survey of the design, operation, and chemical processes of fluidized-bed reactors.
The book is composed of five chapters. The first chapter examines the basic physics of gas-solid Edition: 1. The book is a must-have for understanding how academic and industrial researchers are now collaborating in order to develop novel catalytic processes.
Keywords Fluid Catalytical Cracking Catalytic Reaction Fluidized Bed Diameter-Transformed Multiscale Modeling Multiphase Flow Gas-Solid-Two-Phase Flow Reactor Design Chemical Engineering.
A fluidized bed is a physical phenomenon occurring when a quantity of a solid particulate substance (usually present in a holding vessel) is placed under appropriate conditions to cause a solid/fluid mixture to behave as a fluid.
This is usually achieved by the introduction of pressurized fluid through the particulate medium. Fluidized bed (FB) combustion and gasification are advanced techniques for fuel flexible, high efficiency and low emission conversion.
Fuels are combusted or gasified as a fluidized bed suspended by jets with sorbents that remove harmful emissions such as SOx. CO2 capture can also be incorporated. This book puts forward the concept of the Diameter-Transformed Fluidized Bed (DTFB): a fluidized bed characterized by the coexistence of multiple flow regimes and reaction zones, achieved by transforming the bed into several sections of different diameters.
This volume, Fluidization, Solids Handling, and Processing, is the first of a series of volumes on "Particle Technology". Particles are important products of chemical process industries spanning the basic and specialty chemicals, agricultural products, pharmaceuticals, paints, dyestuffs and pigments, cement, ceramics, and electronic materials.
Cambridge Core - Chemical Engineering - Spouted and Spout-Fluid Beds - edited by Norman Epstein. The book is composed of five chapters. The first chapter examines the basic physics of gas-solid fluidization. The second chapter shows how the physics of gas-solid fluidization may be combined with chemical kinetics to generate models of fluidized-bed reactors.
Chapters 3 and 4 deal with two major applications of gas-solid fluidization, the. Fluidized‐bed processes for heterogeneous catalytic gas‐phase reactions, for the polymerization of olefins, for homogenous gas‐phase reactions, gas–solid reactions and applications in biotechnology are described in detail.
A final chapter is devoted to the modeling of. The authors discuss flow through fixed beds, elutriation and entrainment, gas distributor and plenum design in fluidized beds, effect of internal tubes and baffles, general approaches to reactor Reviews: 1.
Specifically, in what follows we focus on applications in the pharma and food sector, e.g., pharmaceutical fluidized bed dryers 8,10, wet spouted beds, 11 as well as fluid cokers 12 in which.
Up-to-date information on the fundamentals and applications of SFBs has been briefly presented, based on the limited work reported, in the new spouted bed book. The topics presented cover: fluid particle transfer in packed beds; heat transfer in fixed submerged surfaces in fluidized beds; fundamentals and measurements and applications; heat and mass transfer to suspended objects in fluidized beds; modeling of fluidized bed reactors; fluidized bed combustion and gasification; special fluidized bed.
The spout-fluid bed (SFB) is a very successful synthesis of the spouting and fluidization. Up-to-date information on the fundamentals and applications of SFBs has been briefly presented, based on the limited work reported, in the new spouted bed book edited by Norman Epstein and John R. Grace (Spouted and spout-fluid beds: fundamentals and.
Fluidized Bed Technology: Principles and Applications presents the essential facts about beds of solid particles when fluidized by gases, and explains how the technology has been applied to yield fluidized bed boilers, furnaces, heat recovery systems and process s: 3.
Rector: With fluid bed coating, the part has to be preheated, immersed in the coating and then flowed out. Long: Electrostatically assisted fluidized bed coating does not dip the part into the powder, it generates a cloud of charged particles (much like a conventional electrostatic gun) through which a heated or an unheated part passes.
It generally applies a thin coat vs. the thicker coat. "The preface to this book begins modestly: 'The primary objective of this book is to help beginners and students gain sufficient insight into the subject of fluidized bed technology from which they can form their own appreciation of the capabilities and limitations of the technology and proceed, if necessary to greater expertise.'Cited by:.
Fundamentals of Fluidized Bed Chemical Processes | J. G. Yates and J. W. Mullin (Auth.) | download | B–OK. Download books for free. Find books.There have been five successful International Circulating Fluidized Bed Confer ences beginning inthe most recent taking place in Beijing in May In addition, we have witnessed a host of other papers on CFB funda mentals and applications in journals and other archival s: 2.Combustion systems for solid fuels generally.
Fluidized bed combustion of solid fuels. Size of fluidized bed combustion systems. Efficiency of fluidized bed combustion equipment. Combustion of fuel particles in a fluidized bed. Distinction between boilers and furnaces. Methods of starting up. Circulating or "fast" fluidized bed combustion systems.