Mechanical and Solid-Fluid Operations: Separation of Particulate Materials

The text presents fundamental principles and analysis of the separation of particulate matter. Analysis and reduction of air pollution involve a variety of technical disciplines. The effective way to control air pollution is to prevent the release of pollutants at the source. The treatment can involve intimately contacting the effluent gases with liquids or solids capable of selectively removing gaseous pollutants or, in the case of particulate contaminants, directing the effluent flow through a device in which the particles are captured on surfaces.

This book:

  • Introduces the principle of separation methods of particulate matter (PM), common control equipment of PM, and collection or removal efficiency of the equipment
  • Describes the concept of separation of particles by sieving/screening, the basic principles of screening equipment, and the screen's effectiveness
  • Present the fundamental theories of removing particulate and gaseous pollutants from effluent streams by pollution control operations, such as gravitational (gravity chambers) and centrifugal deposition (cyclone separator), electrostatic precipitation, filtration, and wet scrubbing and covers fundamental principles of membrane separation, membrane modules, process design, applications, and governing equations of plate and frame filter press and rotary drum filter
  • Deals with the basic understanding of reverse osmosis and its theoretical analysis by different total flux and capacity models and explains the basic understanding of adsorption onto the solid surface and their isotherm and kinetics
  • Includes ancillary material such as numerical problems, review questions, multiple choice questions, and exercises at the end of each chapter

It is primarily written for senior undergraduates, graduate students, and academic researchers in chemical engineering, mechanical engineering, environmental engineering, industrial engineering, manufacturing engineering, and chemistry.

1146405985
Mechanical and Solid-Fluid Operations: Separation of Particulate Materials

The text presents fundamental principles and analysis of the separation of particulate matter. Analysis and reduction of air pollution involve a variety of technical disciplines. The effective way to control air pollution is to prevent the release of pollutants at the source. The treatment can involve intimately contacting the effluent gases with liquids or solids capable of selectively removing gaseous pollutants or, in the case of particulate contaminants, directing the effluent flow through a device in which the particles are captured on surfaces.

This book:

  • Introduces the principle of separation methods of particulate matter (PM), common control equipment of PM, and collection or removal efficiency of the equipment
  • Describes the concept of separation of particles by sieving/screening, the basic principles of screening equipment, and the screen's effectiveness
  • Present the fundamental theories of removing particulate and gaseous pollutants from effluent streams by pollution control operations, such as gravitational (gravity chambers) and centrifugal deposition (cyclone separator), electrostatic precipitation, filtration, and wet scrubbing and covers fundamental principles of membrane separation, membrane modules, process design, applications, and governing equations of plate and frame filter press and rotary drum filter
  • Deals with the basic understanding of reverse osmosis and its theoretical analysis by different total flux and capacity models and explains the basic understanding of adsorption onto the solid surface and their isotherm and kinetics
  • Includes ancillary material such as numerical problems, review questions, multiple choice questions, and exercises at the end of each chapter

It is primarily written for senior undergraduates, graduate students, and academic researchers in chemical engineering, mechanical engineering, environmental engineering, industrial engineering, manufacturing engineering, and chemistry.

69.99 In Stock
Mechanical and Solid-Fluid Operations: Separation of Particulate Materials

Mechanical and Solid-Fluid Operations: Separation of Particulate Materials

by Subrata Kumar Majumder
Mechanical and Solid-Fluid Operations: Separation of Particulate Materials

Mechanical and Solid-Fluid Operations: Separation of Particulate Materials

by Subrata Kumar Majumder

eBook

$69.99 

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Overview

The text presents fundamental principles and analysis of the separation of particulate matter. Analysis and reduction of air pollution involve a variety of technical disciplines. The effective way to control air pollution is to prevent the release of pollutants at the source. The treatment can involve intimately contacting the effluent gases with liquids or solids capable of selectively removing gaseous pollutants or, in the case of particulate contaminants, directing the effluent flow through a device in which the particles are captured on surfaces.

This book:

  • Introduces the principle of separation methods of particulate matter (PM), common control equipment of PM, and collection or removal efficiency of the equipment
  • Describes the concept of separation of particles by sieving/screening, the basic principles of screening equipment, and the screen's effectiveness
  • Present the fundamental theories of removing particulate and gaseous pollutants from effluent streams by pollution control operations, such as gravitational (gravity chambers) and centrifugal deposition (cyclone separator), electrostatic precipitation, filtration, and wet scrubbing and covers fundamental principles of membrane separation, membrane modules, process design, applications, and governing equations of plate and frame filter press and rotary drum filter
  • Deals with the basic understanding of reverse osmosis and its theoretical analysis by different total flux and capacity models and explains the basic understanding of adsorption onto the solid surface and their isotherm and kinetics
  • Includes ancillary material such as numerical problems, review questions, multiple choice questions, and exercises at the end of each chapter

It is primarily written for senior undergraduates, graduate students, and academic researchers in chemical engineering, mechanical engineering, environmental engineering, industrial engineering, manufacturing engineering, and chemistry.


Product Details

ISBN-13: 9781040322840
Publisher: CRC Press
Publication date: 04/28/2025
Sold by: Barnes & Noble
Format: eBook
Pages: 246
File size: 9 MB

About the Author

Subrata Kumar Majumder is a professor in the Chemical Engineering Department at the Indian Institute of Technology Guwahati, India. He completed his Ph.D. in Chemical Engineering from the Indian Institute of Technology Kharagpur. His research interests include applied multiphase flow and reactor development, mineral processing, extraction, micronano bubble science and technology, and its applications in wastewater treatment and enhanced oil recovery. He is a Fellow of the Council of Engineering and Technology (India), a Fellow of the International Society for Research and Development, London, a Fellow of the Indian Institute of Chemical Engineers, and a Fellow of the Association of Researchers & Academicians (India). He is a member of the Indian Institute of Mineral Engineers, a life member of the Institute of Engineers (India), a member of the Asia-Pacific Chemical, Biological & Environmental Engineering Society (PCBEE), and a member of the International Association of Engineers (IAE), Japan. He was the Editor of the Journal of Chemical Engineering Research Studies, Guest editor of the American Journal of Fluid Dynamics, Scientific & Academic Publishing Co., USA, Editorial board member of the Scientific Journal of Materials Science, an Editorial Board Member of the Journal of Science and Technology, Scientific and Academic Publishing, USA, Advisory board member of Excelling Tech Publishers (ETP), London. He is a recipient of Dr. A.V. Rama Rao best research award in 2022 by the Indian Institute of Chemical Engineers and the IIME Award on mineral beneficiation in 2008 from the Indian Institute of Mineral Engineers (IIME). He authored five other books and has over 120 publications in several reputed international journals. He has completed several sponsored and consultancy projects. He collaborates with Aalborg University, Denmark; University of Los Andes, Colombia; Curtin University, Australia; and Edith Cowan University, Australia. He has developed six massive open online courses (including the subject of this book) sponsored by Govt. of India. He has more than 20 years of experience in teaching, research and development.

For more details: https://www.iitg.ac.in/chemeng/faculty_profile.php?name=skm

Table of Contents

1. Principle of Separation of Particles. 2. Separation of Particles by Sieving/Screening. 3. Separation by Gravity Chambers, Granular bed and Elutriation. 4. Separation of Particles by Cyclone Separator. 5. Separation of Particles by Electrostatic Precipitator. 6. Separation of Particles by Industrial Fabric (Bag) Filters. 7. Separation of Particulate Matters by Wet Scrubbers. 8. Separation by Membrane Filtration: Introduction. 9. Separation by Dead-End and Continuous Filtration. 10. Osmosis and Reverse Osmosis. 11. Separation by Adsorption: Principles and Applications. 12. Adsorption Isotherms. 13. Kinetics of Adsorption.

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