Industrial Crystallization Fundamentals and Applications

“Industrial Crystallization Fundamentals and Applications” by Alison Lewis, published by Cambridge University Press on July 2, 2015, is a comprehensive resource that explores the principles and practices of industrial crystallization. This edition, consisting of 323 pages, serves as an informative guide for newcomers, covering essential topics such as key concepts, basic theory, and industrial practices related to crystallization.
Readers will find a structured approach to learning, with each chapter beginning with an introduction that highlights the significance of the topic. The book includes practical elements such as homework problems and worked examples, alongside real-world case studies that provide industry-relevant insights. Topics discussed encompass the characterization of crystalline products, process design, batch crystallization, measurement techniques, and various methods like precipitation and melt crystallization. This text is suitable for industry practitioners, students, and researchers interested in fields such as chemistry, engineering, and crystallography.
Official synopsis Publisher
Bridging the gap between theory and practice, this text provides the reader with a comprehensive overview of industrial crystallization. Newcomers will learn all of the most important topics in industrial crystallization, from key concepts and basic theory to industrial practices. Topics covered include the characterization of a crystalline product and the basic process design for crystallization, as well as batch crystallization, measurement techniques, and details on precipitation, melt crystallization and polymorphism. Each chapter begins with an introduction explaining the importance of the topic, and is supported by homework problems and worked examples. Real world case studies are also provided, as well as new industry-relevant information, making this is an ideal resource for industry practitioners, students, and researchers in the fields of industrial crystallization, separation processes, particle synthesis, and particle technology.
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