Intensification of Sorption Processes: Active and Passive Mechanisms
Intensification of Sorption Processes: Active and Passive Mechanisms
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- More about Intensification of Sorption Processes: Active and Passive Mechanisms
The book discusses active and passive mechanisms in sorption processes, covering ultrasonic, microwave, high-gravity, electrical, and magnetic fields, as well as nanostructures, nanofluids, membranes, supercritical fluids, and geometry design. It focuses on novel process intensification technologies, such as absorption and adsorption, working principles, and design and applications.
\n Format: Paperback / softback
\n Length: 278 pages
\n Publication date: 26 November 2021
\n Publisher: Elsevier Science Publishing Co Inc
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Sorption Processes: Active and Passive Mechanisms delves into a comprehensive exploration of sorption processes, encompassing both theoretical and practical aspects. The book commences by delving into the study of sorption mechanisms driven by active forces, such as ultrasonic, microwave, high-gravity, electrical, and magnetic fields. The subsequent section focuses on passive mechanisms, including nanostructures, nanofluids, membranes, supercritical fluids, and sorption processes influenced by geometry design and equipment structure.
The central theme of this text revolves around the exploration of novel process intensification technologies, emphasizing key aspects such as absorption and adsorption, working principles, and design and applications. By presenting a diverse range of topics, the book aims to provide a comprehensive understanding of sorption processes and their potential applications in various industries.
The first part of the book delves into the study of sorption processes based on active mechanisms. It begins by introducing the fundamentals of ultrasonic sorption, highlighting its applications in wastewater treatment and solid-liquid separation. The chapter then explores microwave sorption, emphasizing its efficiency in heating and drying processes. High-gravity sorption is discussed, emphasizing its use in the removal of contaminants from water and other liquids. Electrical and magnetic fields are explored, highlighting their potential in the separation of solid-liquid mixtures and the purification of gases.
The second part of the book focuses on passive mechanisms. It begins by discussing the role of nanostructures in sorption processes, emphasizing their enhanced surface area and ability to adsorb a wide range of contaminants. Nanofluids, characterized by their small particle size and high surface-to-volume ratio, are explored, highlighting their potential in heat transfer and energy storage applications. Membrane sorption is discussed, emphasizing its use in the separation of gases and liquids and the purification of water. Supercritical fluids, with their unique properties such as high density and low viscosity, are explored, emphasizing their potential in the extraction of chemicals and the production of energy.
Furthermore, the book delves into sorption processes influenced by geometry design and equipment structure. It discusses the use of sorption columns, packed beds, and other equipment designs to enhance sorption efficiency and improve process performance. The chapter also explores the use of advanced sensors and control systems to optimize sorption processes and achieve desired outcomes.
In conclusion, Sorption Processes: Active and Passive Mechanisms serves as a valuable resource for researchers, engineers, and practitioners interested in sorption processes and process intensification. By presenting a comprehensive coverage of both theoretical and practical aspects, the book provides a deep understanding of sorption mechanisms and their applications in various industries. The focus on novel process intensification technologies and their design and applications makes this text particularly relevant to contemporary research and practice.
\n Weight: 460g\n
Dimension: 228 x 155 x 17 (mm)\n
ISBN-13: 9780128214114\n \n
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