Fluidized Bed Technology Principles And Applications Pdf

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Pressurized Fluidized Bed Combustion pp Cite as.

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Fluidized Bed Technology: Principles and Applications,

Fluidization technology has a tremendous economic importance in process engineering and is used for a wide range of physical and chemical processes like particle formulation, classification, drying, adsorption, heating and cooling of solids, combustion, pyrolysis, carbonization, gasification, calcination or gas-solid reactions.

In this course we focus on the drying as well as on the spray granulation, coating and agglomeration in fluidized beds. The particle formulation processes play an important role in the manufacturing of powder granules from liquid educts in the food, fine chemicals, biotechnological and pharmaceutical industries as dust-free and free-flowing particles with improved particle properties, like a defined particle size distribution, porosity or desired mechanical strength, can be produced in a process with intensive heat and mass transfer conditions and good solids mixing.

This course highlights the fundamentals and applications of various types and different scales of fluidized bed processes for drying, coating, granulation and agglomeration of particles with practical hints and extensive calculation examples.

The focus is on fluid mechanics, mixing, heat and mass transfer and particle formulation mechanisms. Furthermore, actual applications as well as modern computational tools and measuring techniques are presented. The knowledge transfer is supported by different experts from industry, who will present procedures and approaches used in plant construction and optimization, in operation of processes for chemical, food and pharmaceutical industry as well as novel measuring techniques.

The hands-on trainings, demonstrations and tutorials offered during practical sessions will strengthen the learning experience. The course is designed for people from various backgrounds engineers, chemists, food and pharmaceutical technologists and with different levels of experience, who need to understand the fundamentals of applications of modern and efficient fluidized bed processes.

The course language is English. Start: Monday, November 8 th , , p. End: Thursday, November 11 th , , p. The online version of the course will be transferred via the conference tool Zoom. The access data link, personal password to the webinar will be sent to you by email in good time before the start of the course.

Bettina Bartels Mail: spe at tuhh. The participation fee includes extensive course-ware lecture and practical course material which will be sent via post before the course. The course fee can be transferred after official confirmation of participation.

Cancellations until October 24th, are free of charge. Thereafter no refunding is possible, however, another participant can be denominated. Hauptnavigation Unternavigation Inhalt Suche. Research Focus Staff Prof. Stefan Heinrich Prof. Joachim Werther Prof.

Maksym Dosta Prof. Stefan Palzer Prof. Werner Sitzmann Dr. Swantje Pietsch Dipl. Falk Bunke, M. Philipp Nicolas Depta, M.

Timo Dymala, M. Christian Eichler, M. Mauricio Vaca Guerra, M. Kolja Jarolin, M. Paul Kieckhefen, M. Carine Laurenco Alves, M. Patrick Levin, M. Tobias Oesau, M. Maike Orth, M. Hannah Sophia Rothberg, M. Sebastian Rybczynski, M. Abdullah Sadeq, M. Vasyl Skorych, M. Chan Tsz Tung, M. Refeered Journal Contributions Patents Book Contributions Monographies Editorial Work. Course Information as PDF Topic Fluidization technology has a tremendous economic importance in process engineering and is used for a wide range of physical and chemical processes like particle formulation, classification, drying, adsorption, heating and cooling of solids, combustion, pyrolysis, carbonization, gasification, calcination or gas-solid reactions.

Target Audience The course is designed for people from various backgrounds engineers, chemists, food and pharmaceutical technologists and with different levels of experience, who need to understand the fundamentals of applications of modern and efficient fluidized bed processes. Maksym Dosta Dr.

Swantje Pietsch Paul Kieckhefen, M. Evangelos Tsotsas External Speaker: Dr.

Fluidization fundamentals

Fluidized beds have been known for over a century, yet widespread application has only occurred in the last fifty years. They are now one of the most important chemical engineering technologies. Applications range from oil refining to drying processes, solids handling systems, boilers, metallurgical heat treatment furnaces and environmental protection measures. 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 plants. The text is accompanied by worked examples, using elementary mathematics, to illustrated practical considerations, and contains comprehensive references for further reading.

No matter the detailed application, the Fluid Bed is designed to process products as they float on a cushion of air or gas. The process air is supplied to the through a special perforated distributor plate and flows through the bed of solids at a velocity sufficient to support the weight of particles in a fluidized state. Bubbles form and collapse within the fluidized bed of material, promoting intense particle movement. In this state, the solids behave like a free flowing boiling liquid. Very high heat and mass transfer values are obtained as a result of the intimate contact with the solids and the differential velocities between individual particles and the fluidizing gas.

Fluidization technology has a tremendous economic importance in process engineering and is used for a wide range of physical and chemical processes like particle formulation, classification, drying, adsorption, heating and cooling of solids, combustion, pyrolysis, carbonization, gasification, calcination or gas-solid reactions. In this course we focus on the drying as well as on the spray granulation, coating and agglomeration in fluidized beds. The particle formulation processes play an important role in the manufacturing of powder granules from liquid educts in the food, fine chemicals, biotechnological and pharmaceutical industries as dust-free and free-flowing particles with improved particle properties, like a defined particle size distribution, porosity or desired mechanical strength, can be produced in a process with intensive heat and mass transfer conditions and good solids mixing. This course highlights the fundamentals and applications of various types and different scales of fluidized bed processes for drying, coating, granulation and agglomeration of particles with practical hints and extensive calculation examples. The focus is on fluid mechanics, mixing, heat and mass transfer and particle formulation mechanisms. Furthermore, actual applications as well as modern computational tools and measuring techniques are presented.

Fluidized bed

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This is usually achieved by the introduction of pressurized fluid through the particulate medium. This results in the medium then having many properties and characteristics of normal fluids, such as the ability to free-flow under gravity, or to be pumped using fluid type technologies. The resulting phenomenon is called fluidization. Fluidised beds are used for several purposes, such as fluidized bed reactors types of chemical reactors , solids separation, [1] fluid catalytic cracking , fluidized bed combustion , heat or mass transfer or interface modification, such as applying a coating onto solid items. This technique is also becoming more common in aquaculture for the production of shellfish in integrated multi-trophic aquaculture systems.

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Get this from a library! Fluidized bed technology: principles and applications. [​J R Howard;].


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5 Comments

  1. Georgette B. 15.05.2021 at 01:05

    Fluidized Bed Technology- Principles and Applications (Adam-Hingler Edition) Chapter 5 deals with possibly the earliest application of fluidized beds in the.

  2. Greg T. 15.05.2021 at 13:48

    Fluidized bed technology: principles and applications. Responsibility: J.R. Howard. Imprint: Bristol, England ; New York: A. Hilger, c Physical description: x.

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    Drying in the rotating-pulsed fluidized bed.

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