Intensification of Sorption Processes: Active and Passive Mechanisms introduces a number of selected, advanced topics in sorption processes/process intensification, covering both theoretical and applicable aspects. The first part of the book is devoted to the study of sorption processes based on active mechanisms, including ultrasonic, microwave, high-gravity, electrical and magnetic fields, while the second part covers passive mechanisms like nanostructures and nanofluids, membrane, supercritical fluids and sorption processes based on geometry design and equipment structure. The focus of the book is on key aspects of novel process intensification technologies (processes and equipment), i.e., absorption and adsorption, working principles, and design and applications.
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Mahmood Reza Rahimi is professor of chemical engineering and the founder and head manager at the Process Intensification Laboratory, Yasouj University, Ysouj, Iran. He teaches courses in advanced mass transfer, process intensification, computational fluid dynamics (CFD), multicomponent separation methods, mass transfer, and unit operation. His research interests encompass design, modelling and simulation of chemical processes, process intensification, synergy, nanotechnology, fluidized beds, computational fluid dynamics (CFD), and multiphase flow. He obtained a PhD in chemical engineering in 2007.
Soleiman Mosleh is an assistant professor of chemical engineering at the Department of Gas and Petroleum, Yasouj University, Gachsaran, Iran. He obtained a PhD in chemical engineering with a focus on process intensification of photocatalytic degradation in wastewater treatment using rotating packed bed. His research interests encompass process intensification, separation processes, nanotechnology, advanced oxidation processes (AOPs), wastewater treatment, carbon capture, environmental pollution control, degradation processes.
Intensification of Sorption Processes introduces a number of selected advanced topics in sorption processes based on process intensification and covers its theoretical and applicable aspects. The first part of the book is devoted to the study of sorption processes based on active mechanisms including ultrasonic, microwave, high-gravity, electrical and magnetic fields, while the second part regarding passive mechanisms consists of nanostructures and nanofluids, membrane, supercritical fluids and sorption processes based on geometry design and equipment structure. The focus of the book is on key aspects of novel process intensification technologies (processes and equipment) for sorption processes i.e. absorption and adsorption, ranging from the working principles to conceptual design and its applications.
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