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Introduction to Particle Technology

Third Edition

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Particle technology is essential for understanding the formation, processing, and properties of particles and powders found in various products, from construction materials to pharmaceuticals. The process industries heavily rely on particles, whether as catalysts or as intermediate and final products, with minerals often processed in particulate form. While particles offer numerous benefits, they can also pose environmental and health risks, particularly through inhalation, making particle size a critical factor. This well-regarded textbook, now in its 3rd edition, presents a clear introduction to the scientific principles of particle technology, supplemented by practical examples for industrial applications. Each chapter features worked examples and exercises to enhance student learning. Feedback from previous editions has led to revisions, including new introductory chapters on particles as products and computational methods. Key topics covered include characterization (size analysis, surface area), processing (granulation, fluidization), particle formation (granulation, crystallization, tableting, size reduction), storage and transport (hopper design, pneumatic conveying), separation (filtration, settling, cyclones), and safety (fire, explosion, and health hazards). This text is vital for chemical engineering students and is also recommended for those in mechanical engineering, applied chemistry, pharmaceutics, physics, min

Compra de libros

Introduction to Particle Technology, Jonathan K. P. Seville, Martin J. Rhodes

Idioma
Publicado en
2024
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Título
Introduction to Particle Technology
Subtítulo
Third Edition
Idioma
Inglés
Editorial
Wiley
Publicado en
2024
Formato
Tapa blanda
Páginas
496
ISBN10
111993110X
ISBN13
9781119931102
Serie
Descripción
Particle technology is essential for understanding the formation, processing, and properties of particles and powders found in various products, from construction materials to pharmaceuticals. The process industries heavily rely on particles, whether as catalysts or as intermediate and final products, with minerals often processed in particulate form. While particles offer numerous benefits, they can also pose environmental and health risks, particularly through inhalation, making particle size a critical factor. This well-regarded textbook, now in its 3rd edition, presents a clear introduction to the scientific principles of particle technology, supplemented by practical examples for industrial applications. Each chapter features worked examples and exercises to enhance student learning. Feedback from previous editions has led to revisions, including new introductory chapters on particles as products and computational methods. Key topics covered include characterization (size analysis, surface area), processing (granulation, fluidization), particle formation (granulation, crystallization, tableting, size reduction), storage and transport (hopper design, pneumatic conveying), separation (filtration, settling, cyclones), and safety (fire, explosion, and health hazards). This text is vital for chemical engineering students and is also recommended for those in mechanical engineering, applied chemistry, pharmaceutics, physics, min