Particle Deposition & Aggregation: Measurement, Modelling and Simulation

“Particle Deposition & Aggregation: Measurement, Modelling and Simulation” by Elimelech, M. is published by Elsevier S & T in 1998 and spans 448 pages in English. This book explores the processes of deposition and aggregation of small solid particles, which are significant in various natural and industrial contexts. It addresses the deposition of particles onto surfaces in liquid suspensions and the aggregation of individual particles, highlighting their importance in applications such as magnetic tape manufacturing and water purification.
Readers will find a comprehensive approach to the measurement, modeling, and simulation of these processes, integrating concepts from colloid and surface chemistry, hydrodynamics, and both experimental and computational methods. This edition serves as a valuable resource for graduates in process and environmental engineering, postgraduates engaged in industrial research and development, and scientists seeking a deeper understanding of the conditions affecting these processes.
Official synopsis Publisher
Deposition and aggregation of small solid particles are encountered in many natural and industrial environments. Whether it be deposition of particles onto a surface immersed in a liquid suspension or aggregateion of individual particles, these processes are of enotmous significance. They are vital to the manufacture of magnetic tape, purification of water using packed bed filters, selective capture of solids, cells and macromolecular species, and many other applications.
This book presents a unified approach to the measurement, modelling and simulation of these processes, bringing together the disciplines of colliod and surface chemistry, hydrodynamics, and experimental and computational methods. It will be required reading for graduates working in process and environmental engineering, postgraduates involved in industrial R & D and for all scientists wishing to gain a more detailed and realistic understanding of process conditions in these areas.
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