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Brief Description
This is the first detailed and comprehensive account of the theory and practice of high performance chelation ion chromatography (HPCIC) for the trace determination of metals.
On the Back Cover
Established ion chromatography techniques have changed little since the 1980s but a new technique, high performance chelation ion chromatography (HPCIC), has revolutionized the area. HPCIC enables a much greater range of complex samples to be analyzed and this is the first comprehensive description of its use in the trace determination of metals. Written by world leaders in the field, it is aimed at professionals, postgraduates, chromatographers, analytical chemists, and industrial chemists. The book describes the underlying principles which give rise to the special selectivities that can be chosen for separating specific groups of metals. It also covers the latest research and gives many examples of its application to real samples. The very latest developments in detection techniques are included showing that HPCIC can rival atomic spectroscopic techniques such as ICP-MS. The detailed description of the fundamental principles controlling the separation of trace metals using chelating substrates is unique to this book. It shows how HPCIC differs from the commonly used simple ion exchange techniques and how these chelation characteristics give rise to a much more useful and versatile metal separation system. Readers will also be interested in the analysis of extremely difficult matrices, such as saturated brines, easily achieved by HPCIC but requiring very complex multi column systems using other ion chromatography methods.
About the Authors
MSc PhD DrSc MRACI CChem Senior researcher, Leading researcher and Professor in Analytical Chemistry for 20 years at Moscow State University, Russia. Now Professor in Separation Sciences. More info in attached CV. Research interests: Analytical Chemistry: Particularly separation sciences, including high-performance liquid chromatography, ion chromatography, size-exclusion chromatography, chiral chromatography capillary zone electrophoresis and chromatofocusing. Non traditional separation modes based on novel adsorption materials and with novel approaches to separation including multidimensional separations. Design of new adsorption materials for specific purposes including biochemistry and biotechnology.
Lecturer/Senior Lecturer in Analytical/Inorganic Chemistry, retired after 26 years. Now Research Fellow at the University of Plymouth Research interests - Development of trace analytical methods and separation science. Main interest since 1980 is the trace determination of metals using novel ion chromatography techniques. Have 96 publications to date, including 3 reviews and 2 book chapters.
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