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In this investigation, the transfer of mass between liquid phases was studied in a continuous-flow mixing vessel. These data were used to test the applicability of contemporary film theory and to determine the validity of suggested methods of correlation.
This book introduces a number of selected advanced topics in mass transfer phenomenon and covers its theoretical, numerical, modeling and experimental aspects. The 26 chapters of this book are divided into five parts. The first is devoted to the study of some problems of mass transfer in microchannels, turbulence, waves and plasma, while chapters regarding mass transfer with hydro-, magnetohydro- and electro- dynamics are collected in the second part. The third part deals with mass transfer in food, such as rice, cheese, fruits and vegetables, and the fourth focuses on mass transfer in some large-scale applications such as geomorphologic studies. The last part introduces several issues of combined heat and mass transfer phenomena. The book can be considered as a rich reference for researchers and engineers working in the field of mass transfer and its related topics.
Mixing: Theory and Practice, Volume II provides a complete and practical summary of mixing or the movement of fluids in conduits and vessels of laboratory and industrial processing equipment. The book is a compilation of papers that focuses on the theory and practice of mixing. Chapters in this volume are devoted to the discussion of mass transfer in two-phase systems; the effects of mixing on chemical reactions; the mixing of highly viscous materials; the suspension of particles in liquids; the mixing of dry solid particles; and the mechanical design of impeller-type mixers. Chemical engineers and chemists will find the book a good reference material.
Mixing: Theory and Practice, Volume III is a five-chapter text that covers the significant improvements in the theoretical aspects and knowledge in mixing related to industrial-scale operations. The introductory chapters deal with the agitation of particulate solid-liquid mixtures and the turbulent radial mixing in pipes, with particular emphasis on the effects of jets and baffles on such mixing. The following chapter presents the theoretical analysis and experimental confirmation for predicting hydrodynamic characteristics and some process results in mechanically agitated vessels. Another chapter provides a comprehensive development of approaches and recommended practices for scale-up of agitated liquid equipment. The methods considered serve as a useful guide for reducing the risk of scale-up and scale-down catastrophes. The last chapter discusses the fundamental concepts and measures of the quality of mixing and the mechanisms of mixing and segregation. This chapter also introduces the process of continuous mixing of solids.
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