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  • 1
    UID:
    (DE-627)1851261761
    In: Kunst der Nation, Berlin : [Verlag nicht ermittelbar], 1933, 3(1935), 2, Seite 5-6
    In: volume:3
    In: year:1935
    In: number:2
    In: pages:5-6
    Language: German
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  • 2
    UID:
    (DE-602)gbv_1851261761
    In: Kunst der Nation, Berlin : [Verlag nicht ermittelbar], 1933, 3(1935), 2, Seite 5-6
    In: volume:3
    In: year:1935
    In: number:2
    In: pages:5-6
    Language: German
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  • 3
    UID:
    (DE-101)1142561194
    Format: Online-Ressource
    ISSN: 1814-9332
    In: volume:7
    In: number:2
    In: year:2011
    In: pages:501-509
    In: Climate of the past, Katlenburg-Lindau : Copernicus Ges., 2005-, 7, Heft 2 (2011), 501-509, 1814-9332
    Language: English
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  • 4
    UID:
    (DE-605)HT008617231
    Format: 71 Bl.
    Language: German
    Keywords: Freizeitwert ; Stadtplanung
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  • 5
    UID:
    (DE-605)(DE-E15)000023384
    Format: 71 Bl.
    Language: German
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  • 6
  • 7
    UID:
    (DE-627)1655656015
    Format: Online Ressource (1 volume) , illustrations.
    Edition: Online-Ausg.
    ISBN: 9780444883278 , 0444883274 , 9780080858432 , 0080858430
    Series Statement: Journal of chromatography library v. 39B
    Content: This is the second of a two-volume project which treats the handling, separation and detection of complex samples as an integrated, interconnected process. On the basis of this philosophy the editors have selected those contributions which demonstrate that optimal sample preparation leads to a simplification of detection or reduced demands on the separation process. Throughout the book emphasis is on chemical principles with minimum discussion of the equipment required - an approach which reflects the editors' view that the limiting factor in the analysis of complex samples is an incomplete knowledge of the underlying chemistry rather than the hardware available. This lack of knowledge becomes more evident as the demands for lower detection limits grow, as solving complex matrix problems requires a greater understanding of the chemical interaction between the substance to be analysed and the stationary phase. Thus, apart from one chapter dealing with chemically modified silicas, the main theme of the book is developed in three chapters on sample preparation and three on detection. The opening chapter outlines concentration and chromatography on chemically modified silicas with complexing properties, and gives examples of the use of these phases with organic and inorganic compounds. Chapter II, the first of the three contributions dealing with sample preparation, addresses such questions as whether the prepared sample is representative of the material to be analysed; how to avoid contamination; which separation procedure should be used to avoid tedious sample preparation. Chapter III describes the processing of whole blood for drug analysis. The determination of cyclosporine and its metabolites (an especially difficult case) demonstrates how comprehensive the optimisation of sample preparation must be to successfully perform the analysis. Several other examples are also given. Chapter IV deals with radio-column liquid chromatography and introduces the other theme of the book, i.e. selective detection methods. The widespread use of radioisotopes requires a high degree of purification during the manufacture of the compounds, as well as highly accurate detection methods in biological and biochemical studies. Chapter V continues the theme of selective detection with an overview of post-column reaction detection. The use of immobilised enzymes in post-column reactors or `pumpless' reactor systems for on-line reagent generation after the chromatographic separation step is discussed in detail. Various examples of the separation of biological compounds show how the production of electrochemical reagents and photochemical reaction detection have increased the selectivity of the detection, leading to more economical analytical systems. Selective detection employing luminescence detection techniques is outlined in Chapter VI. The use of immobilised fluorophores or the coupling to photochemical reactions leads to highly selective detection systems which can greatly simplify the sample handling. The final chapter reviews the use of continuous separation techniques in flow injection analysis thus revealing the need for a strong interdisciplinary dependence between sample handling and separation in this area. Written by experienced practitioners, this book will be extremely useful to investigators in many areas of application. Each chapter includes sufficient references to the literature to serve as a valuable starting point for more detailed investigation. The strong emphasis on sample handling makes the book unique in many ways and it will be welcomed by environmental scientists as well as those active in the clinical, pharmaceutical and bioanalytical fields
    Note: Includes bibliographical references and index. - Print version record
    Additional Edition: 0444883274
    Additional Edition: 0444416161
    Additional Edition: Erscheint auch als Druck-Ausgabe Selective sample handling and detection in high-performance liquid chromatography. Part B Amsterdam ; New York : Elsevier, 1989
    Language: English
    Keywords: Electronic books ; Electronic books
    Library Location Call Number Volume/Issue/Year Availability
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  • 8
    UID:
    (DE-604)BV042314131
    Format: 1 Online-Ressource (1 v.)
    ISBN: 9780444883278 , 0444883274
    Series Statement: Journal of chromatography library v. 39B.
    Note: This is the second of a two-volume project which treats the handling, separation and detection of complex samples as an integrated, interconnected process. On the basis of this philosophy the editors have selected those contributions which demonstrate that optimal sample preparation leads to a simplification of detection or reduced demands on the separation process. Throughout the book emphasis is on chemical principles with minimum discussion of the equipment required - an approach which reflects the editors' view that the limiting factor in the analysis of complex samples is an incomplete knowledge of the underlying chemistry rather than the hardware available. This lack of knowledge becomes more evident as the demands for lower detection limits grow, as solving complex matrix problems requires a greater understanding of the chemical interaction between the substance to be analysed and the stationary phase. , Thus, apart from one chapter dealing with chemically modified silicas, the main theme of the book is developed in three chapters on sample preparation and three on detection. The opening chapter outlines concentration and chromatography on chemically modified silicas with complexing properties, and gives examples of the use of these phases with organic and inorganic compounds. Chapter II, the first of the three contributions dealing with sample preparation, addresses such questions as whether the prepared sample is representative of the material to be analysed; how to avoid contamination; which separation procedure should be used to avoid tedious sample preparation. Chapter III describes the processing of whole blood for drug analysis. The determination of cyclosporine and its metabolites (an especially difficult case) demonstrates how comprehensive the optimisation of sample preparation must be to successfully perform the analysis. Several other examples are also given. , Chapter IV deals with radio-column liquid chromatography and introduces the other theme of the book, i.e. selective detection methods. The widespread use of radioisotopes requires a high degree of purification during the manufacture of the compounds, as well as highly accurate detection methods in biological and biochemical studies. Chapter V continues the theme of selective detection with an overview of post-column reaction detection. The use of immobilised enzymes in post-column reactors or 'pumpless' reactor systems for on-line reagent generation after the chromatographic separation step is discussed in detail. Various examples of the separation of biological compounds show how the production of electrochemical reagents and photochemical reaction detection have increased the selectivity of the detection, leading to more economical analytical systems. Selective detection employing luminescence detection techniques is outlined in Chapter VI. , The use of immobilised fluorophores or the coupling to photochemical reactions leads to highly selective detection systems which can greatly simplify the sample handling. The final chapter reviews the use of continuous separation techniques in flow injection analysis thus revealing the need for a strong interdisciplinary dependence between sample handling and separation in this area. Written by experienced practitioners, this book will be extremely useful to investigators in many areas of application. Each chapter includes sufficient references to the literature to serve as a valuable starting point for more detailed investigation. The strong emphasis on sample handling makes the book unique in many ways and it will be welcomed by environmental scientists as well as those active in the clinical, pharmaceutical and bioanalytical fields , Includes bibliographical references and index
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 9
    UID:
    (DE-627)1748925911
    Format: xi, 394 p. , ill.
    ISBN: 9780080858432
    Series Statement: Journal of chromatography library v. 39B
    Note: Includes bibliographies and index
    Additional Edition: 9780444883278
    Language: English
    Library Location Call Number Volume/Issue/Year Availability
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  • 10
    UID:
    (DE-627)1655655973
    Format: Online Ressource (xi, 457 pages) , illustrations.
    Edition: Online-Ausg.
    ISBN: 9780444428813 , 044442881X
    Series Statement: Journal of chromatography library v. 39A
    Content: This book is the first of a two-volume project which attempts to treat the sample handling and detection processes in a liquid chromatographic system in an integrated fashion. The need for more selective and sensitive chromatographic methods to help solve the numerous trace analysis problems in complex samples is undisputed. However, few workers realize the strong interdependence of the various steps - sample handling, separation and detection - which must be considered if one wants to arrive at an optimal solution. By introducing a strong element of selectivity and trace enrichment in the sample preparation step, fewer demands are placed on the quality of the chromatography and often a simple UV detector can be used. By using a selective detection mode, i.e. a reaction detector, the sample handling step can frequently be simplified and more easily automated. The impact of such a ``total system'' approach on handling series of highly complex samples such as environmental specimens or biological fluids can be easily imagined. Each chapter includes sufficient references to the literature to serve as a valuable starting point for more detailed investigation. Special emphasis is placed on the sample handling, and high priority has been given to the treatment of chemical principles applied to the topics presented, rather than to instrumentation. Written by experienced practitioners, this volume will be of interest to investigators in many areas of application, including environmental scientists and those active in the clinical, pharmaceutical and bioanalytical fields
    Note: Includes bibliographical references and index. - Print version record
    Additional Edition: 044442881X
    Additional Edition: Erscheint auch als Druck-Ausgabe Selective sample handling and detection in high-performance liquid chromatography. Part A Amsterdam ; New York : Elsevier, 1987
    Language: English
    Keywords: Electronic books ; Electronic books
    Library Location Call Number Volume/Issue/Year Availability
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