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Ion Exchange and Solvent Extraction: A Series of Advances, Volume 20 (Ion Exchange and Solvent Extraction Series)

معرفی کتاب «Ion Exchange and Solvent Extraction: A Series of Advances, Volume 20 (Ion Exchange and Solvent Extraction Series)» نوشتهٔ Y Marcus; Arup K SenGupta; Jacob A Marinsky; Bruce A Moyer، منتشرشده توسط نشر Marcel Dekker در سال 2011. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

Over the past four decades, notable advancements in the theory and application of ion exchange science uncovered a wealth of knowledge that fueled new scientific pursuits and created synergies with myriad scientific endeavors. Today, pioneers continue to break new ground by synthesizing novel materials and merging the interdisciplinary fields of science and engineering. Now in its 20 th volume, Ion Exchange and Solvent Extraction: A Series of Advances chronicles the ongoing changes that drive innovation in this important field. Beginning with a review of research studies that show how functionalized ion exchange polymers serve as supports to stabilize metal nanoparticles (MNPs) without forming larger than nano aggregates, the book describes the sorption of different gases from the air by ion exchange resins and fibrous ion exchangers and discusses the selective ion exchange technology capable of removing and recovering perchlorate quantitatively through stable isotope ratio analysis of chlorine and oxygen atoms, allowing for the forensic analysis of perchlorate origin in contaminated water. Later chapters demonstrate how numerical simulations coupled with small-scale bench-top experiments can help tailor particle size distribution and enhance the efficiency of each application, review dual-temperature ion exchange processes in which sorption and desorption are carried out solely by varying temperature, and present the preparation and characterization of a new composite material in which microparticles of clinoptilolite are embedded in a matrix of cross-linked chitosan, opening new opportunities for the natural biopolymer. The book concludes with the preparation, characterization, and field-level experience of an emerging class of "hybrid ion exchangers" that enhance the application opportunities of ion exchange resins. Highlighting the latest and most pivotal discoveries, the 20 th volume of a field standard codifies the current state-of-the-art and lays the groundwork for the next generation of growth and expansion in the field of ion exchange. Presenting key advancements in the areas of ion exchange and solvent extraction, this volume discusses the growth in the field and the synergies it has created with a myriad of scientific endeavours, from decontamination to deionization, mining to microelectronics and drug delivery to desalination. Over the past four decades, notable advancements in the theory and application of ion exchange science uncovered a wealth of knowledge that fueled new scientific pursuits and created synergies with myriad scientific endeavors. Today, pioneers continue to break new ground by synthesizing novel materials and merging the interdisciplinary fields of science and engineering. Now in its 20th volume, Ion Exchange and Solvent Extraction: A Series of Advances chronicles the ongoing changes that drive innovation in this important field. Beginning with a review of research studies that show how functionalized ion exchange polymers serve as supports to stabilize metal nanoparticles (MNPs) without forming larger than nano aggregates, the book describes the sorption of different gases from the air by ion exchange resins and fibrous ion exchangers and discusses the selective ion exchange technology capable of removing and recovering perchlorate quantitatively through stable isotope ratio analysis of chlorine and oxygen atoms, allowing for the forensic analysis of perchlorate origin in contaminated water. Later chapters demonstrate how numerical simulations coupled with small-scale bench-top experiments can help tailor particle size distribution and enhance the efficiency of each application, review dual-temperature ion exchange processes in which sorption and desorption are carried out solely by varying temperature, and present the preparation and characterization of a new composite material in which microparticles of clinoptilolite are embedded in a matrix of cross-linked chitosan, opening new opportunities for the natural biopolymer. The book concludes with the preparation, characterization, and field-level experience of an emerging class of "hybrid ion exchangers" that enhance the application opportunities of ion exchange resins. Highlighting the latest and most pivotal discoveries, the 20th volume of a field standard codifies the current state-of-the-art and lays the groundwork for the next generation of growth and expansion in the field of ion exchange Front Cover 1 Contents 13 Preface 15 About the Editor 19 Contributors 21 Chapter 1 - Ion Exchange-Assisted Synthesis of Polymer Stabilized Metal Nanoparticles 23 Chapter 2 - Ion Exchangers for Air Purification 67 Chapter 3 - Applications of Selective Ion Exchange for Perchlorate Removal, Recovery, and Environmental Forensics 139 Chapter 4 - Influence of Ion Exchange Resin Particle Size and Size Distribution on Chromatographic Separation in Sweetener Industries 167 Chapter 5 - Dual Temperature Methods of Separation and Concentration of Elements in Ion Exchange Columns 193 Chapter 6 - Separations by Multicomponent Ionic Systems Based on Natural and Synthetic Polycations 255 Chapter 7 - Polymeric-Inorganic Hybrid Ion Exchangers: Preparation, Characterization, and Environmental Applications 315 Back Cover 365 This volume will capture transformational changes in both the chemistry and engineering side of solvent extraction, creating new directions and deepening our understanding of the structure and dynamics of liquid-liquid systems from the molecular- to nano- to meso- to bulk-scale. Reviews will cover advances in microfluidics, new tools for understanding the structure and dynamics of the liquid-liquid interface, ionic liquids in liquid-liquid extraction, molecular dynamics to visualize interactions in the solvent phase, liquid-liquid electrochemistry to interrogate the energetics of interfacial transport and complexation, design of new extractants, and the streamlining of process applications. -- Provided by publisher
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