Quenching a Plasma Stream in a Fluidized Bed

Quenching a Plasma Stream in a Fluidized Bed
Title Quenching a Plasma Stream in a Fluidized Bed PDF eBook
Author Gary Joseph Navitsky
Publisher
Pages 306
Release 1971
Genre Gases at high temperatures
ISBN

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Plasma Fluidized Bed

Plasma Fluidized Bed
Title Plasma Fluidized Bed PDF eBook
Author Changming Du
Publisher Springer
Pages 145
Release 2018-05-09
Genre Technology & Engineering
ISBN 9811058199

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This book provides a detailed overview of the plasma fluidized bed. It is an innovative tool and generally combines plasma process with another efficient reactor, fluidized bed, providing an excellent method for particulate processes over conventional technology. The development and designs of typical types of plasma fluidized beds, mainly thermal plasma fluidized beds and non-thermal plasma fluidized beds are discussed. The influencing factors on the performance of plasma fluidized beds are analyzed in detail. The mechanism, i.e. the discharge characteristics, hydrodynamics, heat transfer and mass transfer are analyzed to offer a further insight of plasma fluidized beds. Applications of plasma fluidized beds for different areas, including metallurgy extraction, green energy process, environmental protection and advanced materials are presented. The book is a valuable reference for scientists, engineers and graduate students in chemical engineering and relative fields.

Fluid Bed Technology in Materials Processing

Fluid Bed Technology in Materials Processing
Title Fluid Bed Technology in Materials Processing PDF eBook
Author C. K. Gupta
Publisher CRC Press
Pages 526
Release 1998-12-28
Genre Technology & Engineering
ISBN 9781420049862

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Fluid Bed Technology in Materials Processing comprehensively covers the various aspects of fluidization engineering and presents an elaborate examination of the applications in a multitude of materials processing techniques. This singular resource discusses: All the basic aspects of fluidization essential to understand and learn about various techniques The range of industrial applications Several examples in extraction and process metallurgy Fluidization in nuclear engineering and nuclear fuel cycle with numerous examples Innovative techniques and several advanced concepts of fluidization engineering, including use and applications in materials processing as well as environmental and bio-engineering Pros and cons of various fluidization equipment and specialty of their applications, including several examples Design aspects and modeling Topics related to distributors effects and flow regimes A separate chapter outlines the importance of fluidization engineering in high temperature processing, including an analysis of the fundamental concepts and applications of high temperature fluidized bed furnaces for several advanced materials processing techniques. Presenting information usually not available in a single source, Fluid Bed Technology in Materials Processing serves Fluidization engineers Practicing engineers in process metallurgy, mineral engineering, and chemical metallurgy Researchers in the field of chemical, metallurgical, nuclear, biological, environmental engineering Energy engineering professionals High temperature scientists and engineers Students and professionals who adopt modeling of fluidization in their venture for design and scale up

Theory and Technology of Quenching

Theory and Technology of Quenching
Title Theory and Technology of Quenching PDF eBook
Author Bozidar Liscic
Publisher Springer Science & Business Media
Pages 499
Release 2013-11-11
Genre Technology & Engineering
ISBN 366201596X

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Heat treatment of metallic alloys constitutes an important step within the production process. The heat treatment process itself is considered as a cycle of heating the workpieces to a predetermined temperature, keeping them at this temperature for the time period required, and cooling them to room temperature in an appropriate way. The process of heating and keeping workpieces at the required temperature is now adays weil mastered and mostly automatized. The process of cooling or quenching which determines actually the resulting properties, is handicapped with many physical and technical uncertainties. Good results can already be obtained predominantly by using empirically based practice. But increased demands on the properties of the pro ducts as weIl as demands on safety and environment conditions of the quenching media require efforts to investigate the details of the quenching process and to transfer the results of the research to practical application. Advances in the knowledge about quenching processes have been achieved by modem applied thermodynamics especially by the heat and mass transfer researches; further the application of computer technology was helpful to new approaches in quenching pro cesses. Special emphases has been given to: - The theory of heat transfer and heat exchange intensification during quenching - Wetting kinematics - Residual stresses after quenching - Determination of the quenching intensity - Prediction of microstructural transformation and hardness distribution after quenching, the latter with some limitations.

Analysis of Quench Techniques for Plasma Streams

Analysis of Quench Techniques for Plasma Streams
Title Analysis of Quench Techniques for Plasma Streams PDF eBook
Author Robert L. DeMichiell
Publisher
Pages
Release 1967
Genre Plasma (Ionized gases)
ISBN

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The Application of Plasmas to Chemical Processing

The Application of Plasmas to Chemical Processing
Title The Application of Plasmas to Chemical Processing PDF eBook
Author Raymond F. Baddour
Publisher Pergamon
Pages 232
Release 1967
Genre Chemical engineering
ISBN

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Handbook of Thermal Plasmas

Handbook of Thermal Plasmas
Title Handbook of Thermal Plasmas PDF eBook
Author Maher I. Boulos
Publisher Springer Nature
Pages 1973
Release 2023-02-20
Genre Science
ISBN 3030849368

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This authoritative reference presents a comprehensive review of the evolution of plasma science and technology fundamentals over the past five decades. One of this field’s principal challenges has been its multidisciplinary nature requiring coverage of fundamental plasma physics in plasma generation, transport phenomena under high-temperature conditions, involving momentum, heat and mass transfer, and high-temperature reaction kinetics, as well as fundamentals of material science under extreme conditions. The book is structured in five distinct parts, which are presented in a reader-friendly format allowing for detailed coverage of the science base and engineering aspects of the technology including plasma generation, mathematical modeling, diagnostics, and industrial applications of thermal plasma technology. This book is an essential resource for practicing engineers, research scientists, and graduate students working in the field.