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Quantitative Column Liquid Chromatography

Quantitative Column Liquid Chromatography
Author: S.T. Balke
Publisher: Elsevier
Total Pages: 298
Release: 2000-04-01
Genre: Science
ISBN: 9780080858326

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Quantitative Column Liquid Chromatography


Practice of High Performance Liquid Chromatography

Practice of High Performance Liquid Chromatography
Author: Heinz Engelhardt
Publisher: Springer Science & Business Media
Total Pages: 468
Release: 2012-12-06
Genre: Science
ISBN: 3642692257

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During its short 20 year history High Performance Liquid Chro matography (HPLC) has won itself a firm place amongst the instrumental methods of analysis. HPLC has caused a revolution in biological and pharmaceutical chemistry. Approximately two thirds of the publications on HPLC are concerned with problems from this area of life science. Biotechnology, where it is necessary to isolate substances from complicated mixtures, is likely to give further impetus to the dissemination of modern liquid chromatog raphy in columns, particularly on the preparative scale. This book presents, by means of examples, the application of HPLC to various fields, as well as fundamental discussions of chromatographic methods. The quality of the analytical result is decisively dependent on the qualities of the equipment employed (by Colin, Guiochon, and Martin). Especially the demands are discussed that are placed on the components of the instrument including those for data acquisition and processing. The section on "quantitative analy sis" (by ABhauer, Ullner) covers besides the principles also the problems of ensuring the quality of the data in detail. The basic problems arising by enlarging the sample size to preparative di mensions and the requirements put on the aparatus are discussed in the section on "preparative applications" (by Wehrli).


Quantitative Chromatographic Analysis

Quantitative Chromatographic Analysis
Author: Thomas Beesley
Publisher: CRC Press
Total Pages: 398
Release: 2000-12-06
Genre: Science
ISBN: 9780203910788

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Highlights critical factors involved in successful chromatographic analysis. Details analytical procedures; outlining sample preparation, collection, transportation, and storage. Provides step-by-step guidelines for producing analytical reports.


Quantitative Gas Chromatography for Laboratory Analyses and On-Line Process Control

Quantitative Gas Chromatography for Laboratory Analyses and On-Line Process Control
Author: G. Guiochon
Publisher: Elsevier
Total Pages: 796
Release: 1988-06-01
Genre: Science
ISBN: 9780080858470

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Here is an invaluable new book on quantitative gas chromatography which explains how the method can - or should - be used for accurate and precise analysis. Gas chromatography is firmly established as one of the few major methods for the quantitative analysis of complex mixtures. It is fast, accurate and inexpensive, with a broad range of applications. It has however become very complex and involved: over 200 stationary phases, more than 10 detector principles and several very different column types are available from among the catalogs of over 100 manufacturers and major retailers. The progressive changes in the nature of gas chromatography have created new needs for information which are not satisfied by the literature presently available. This book provides a complete discussion of all the problems involved in the achievement of quantitative analysis by gas chromatography, whether in the research laboratory, in the routine analysis laboratory or in process control. For this reason the presentation of theoretical concepts has been limited to the essential, while extensive explanations have been devoted to the various steps involved in the derivation of precise and accurate data. This starts with the selection of the instrumentation and column, continues with the choice of optimum experimental conditions, then calibration and ends with the use of correct procedures for data acquisition and calculations. Finally, there is almost always a way to reduce errors and an entire chapter deals with this single issue. Numerous relevant examples are presented. The first part of the book presents the theoretical background, simple enough to be understood by all analytical chemists, but still complete and up-to-date. It discusses the problems of flow dynamics, retention and band broadening. The changes in band profile associated with column overloading are explained without much recourse to mathematics. The second part describes the gas chromatograph and discusses the properties of each of its parts: gas flow and pressure controller sampling system, oven, column switching valves, detectors. The different implementations, their advantages and drawbacks are discussed and compared. In addition, three chapters present packed column technology, open tubular column technology and some sophisticated new phase systems, respectively. The new phase systems described use adsorbents, modified by coating or grafting organic phase, and carrier gases containing vapors which are sorbed by the stationary phase and modify it, such as steam. The third part discusses the applications in qualitative and quantitative analysis. Calibration, peak integration, sources of errors arising from the various parts of the instrument as well as from the measurement process itself are carefully described in four detailed chapters. Methods to carry out accurate and precise analysis are presented. A last chapter is devoted to process control analysis and gives a number of detailed examples of applications. A lexicon explaining the most important chromatographic terms and a detailed index complete the book. This is a book which no chemical analyst should be without. It should be on the library shelf of all universities, instrument companies and any laboratory and plant where gas chromatography is used.


Introduction to Modern Liquid Chromatography

Introduction to Modern Liquid Chromatography
Author: Lloyd R. Snyder
Publisher: John Wiley & Sons
Total Pages: 831
Release: 2011-09-20
Genre: Science
ISBN: 1118210395

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The latest edition of the authoritative reference to HPLC High-performance liquid chromatography (HPLC) is today the leading technique for chemical analysis and related applications, with an ability to separate, analyze, and/or purify virtually any sample. Snyder and Kirkland's Introduction to Modern Liquid Chromatography has long represented the premier reference to HPLC. This Third Edition, with John Dolan as added coauthor, addresses important improvements in columns and equipment, as well as major advances in our understanding of HPLC separation, our ability to solve problems that were troublesome in the past, and the application of HPLC for new kinds of samples. This carefully considered Third Edition maintains the strengths of the previous edition while significantly modifying its organization in light of recent research and experience. The text begins by introducing the reader to HPLC, its use in relation to other modern separation techniques, and its history, then leads into such specific topics as: The basis of HPLC separation and the general effects of different experimental conditions Equipment and detection The column—the "heart" of the HPLC system Reversed-phase separation, normal-phase chromatography, gradient elution, two-dimensional separation, and other techniques Computer simulation, qualitative and quantitative analysis, and method validation and quality control The separation of large molecules, including both biological and synthetic polymers Chiral separations, preparative separations, and sample preparation Systematic development of HPLC separations—new to this edition Troubleshooting tricks, techniques, and case studies for both equipment and chromatograms Designed to fulfill the needs of the full range of HPLC users, from novices to experts, Introduction to Modern Liquid Chromatography, Third Edition offers the most up-to-date, comprehensive, and accessible survey of HPLC methods and applications available.


Gradient Elution in Column Liquid Chromatography

Gradient Elution in Column Liquid Chromatography
Author: P. Jandera
Publisher: Elsevier
Total Pages: 509
Release: 1985-05-01
Genre: Science
ISBN: 9780080858340

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Gradient Elution in Column Liquid Chromatography


Quantitative Analysis Using Chromatographic Techniques

Quantitative Analysis Using Chromatographic Techniques
Author: Elena Katz
Publisher:
Total Pages: 456
Release: 1987-02-27
Genre: Science
ISBN:

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This is the only book that covers only quantitative techniques of all chromatography methods. Contributors, experts in the field, present general concepts applicable to all types of analyses performed by chromatographic techniques, and treat in detail principles of quantitative detection and sources of error in data processing procedures. Chapters cover liquid chromatography, gas chromatography, thin-layer chromatography, detection methods, detector performance, data handling procedures, and automation procedures. Included is discussion of chromatographic applications in physical chemistry and in pharmaceutical analysis.


Liquid Column Chromatography

Liquid Column Chromatography
Author: K. Macek
Publisher: Elsevier
Total Pages: 1172
Release: 2011-09-21
Genre: Science
ISBN: 9780080858036

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Liquid Column Chromatography


Liquid Chromatography

Liquid Chromatography
Author: R. Kaliszan
Publisher: Elsevier Inc. Chapters
Total Pages: 520
Release: 2013-01-08
Genre: Science
ISBN: 0128071443

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In view of linear free-energy relationships, LFER, chromatographic systems are “free-energy transducers,” translating differences in the structure of analytes into quantitative differences in physicochemical properties, like retention parameters. Hence, quantitative structure property (retention) relationships, QSP(R)R, bear valuable information on analytes and the separation systems involved. We illustrate here what can be achieved from the statistically valid and physically meaningful quantitative structure-retention relationships, QSRR. In particular, one can predict retention data, confirm identification, and optimize conditions of separation of given structurally defined analytes. Also, QSPR can shed light on the molecular mechanism of separation operating on specific stationary phases. Additionally, one can assess such properties of drug analytes of pharmacokinetic importance, like lipophilicity and acidity. Also, differences in interactions of xenobiotics with biomacromolecule components of chromatographic systems can conveniently be quantified. By means of QSRR, the chromatographic behavior of analytes in diverse separation systems can be related to their pharmacological properties.