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原子光谱/质谱中的气体样品引入新方法及其在中药分析中的应用

Abstract (in Chinese)第8-11页
Abstract (in English)第11页
Chapter 1. The History, Current States and the Prospects of Chemical Vapor Generation Techniques第16-58页
    1.1 Introduction第16-19页
    1.2 The Classified of the Chemical Vapor Generation Forms第19-24页
        1.2.1 Hydrides第19-20页
        1.2.2 Carbonyls第20页
        1.2.3 Oxides第20-21页
        1.2.4 Chelates第21页
        1.2.5 Ethylation and butylation第21-22页
        1.2.6 Halides第22-23页
        1.2.7 Unconventional vapor generation methods第23-24页
    1.3 The hyphenation of vapor generation coupling with other techniques第24-29页
        1.3.1 Conventional flow techniques coupling with VG第24-25页
        1.3.2 Online-decomposition/online pre-reduction methods第25-26页
        1.3.3 Online preconcentration methods第26-27页
        1.3.4 Hyphenated techniques for speciation analysis第27-29页
    1.4 Selected application study on vapor generation for specific element第29-51页
        1.4.1 As第29-33页
        1.4.2 Se第33-36页
        1.4.3 Hg第36-39页
        1.4.4 Sn第39-41页
        1.4.5 Bi第41-44页
        1.4.6 Sb第44-48页
        1.4.7 Ge第48-50页
        1.4.8 Unconventional vapor generation elements第50-51页
    1.5 Summary第51-52页
    1.6 Glossary第52-53页
    1.7 References第53-58页
Chapter 2. The Application of A Novel Sample Introduction Technique for the Simultaneous Determination of Arsenic, Selenium, Germanium and Mercury in Chinese Medicinal Material第58-78页
    2.1 Introduction第58-60页
    2.2 Experimental第60-63页
        2.2.1 ICP-MS第60页
        2.2.2 Movable reduction bed hydride generator (MRBHG)第60-61页
        2.2.3 Reagents第61-63页
        2.2.4 Sample preparation第63页
    2.3 Results and Discussion第63-76页
        2.3.1 Gas Flow Rate第63-64页
        2.3.2 Integration Time第64页
        2.3.3 Transport Tubing Length第64-70页
        2.3.4 Acidity Effect on MRBHG System第70页
        2.3.5 Characteristics of As, Se, Ge and Hg Hydride or Cold Vapor Generation第70-74页
        2.3.6 Application of the Technique to TCM Analysis第74-76页
    2.4 Conclusion第76-77页
    2.5 References第77-78页
Chapter 3. Cold Vapor Generation Technique for the Determination of Some Noble Metals Using MRBHG with ICP/MS第78-88页
    3.1 Introduction第78-79页
    3.2 Experimental第79-80页
        3.2.1 ICP-MS第79页
        3.2.2 Movable reduction bed vapor generator (MRBVG)第79-80页
        3.2.3 Reagents第80页
    3.3 Results and discussions第80-87页
        3.3.1 Characteristics第80-82页
        3.3.2 Profiles of noble metals vapor species第82页
        3.3.3 Calibration plots第82页
        3.3.4 Interference effects第82-87页
    3.4 Conclusions第87页
    3.5 References第87-88页
Chapter 4. Pyrolysis Coupled with Atomic Absorption Spectrometry for the Direct and Fast Determination of Mercury in Chinese Medicinal Materials第88-108页
    4.1 Introduction第88-90页
    4.2 Experimental第90-92页
        4.2.1 Pyrolytic mercury analyzer第90-92页
        4.2.2 Temperature calibration of pyrolysis chamber第92页
    4.3 Materials and reagents第92-94页
        4.3.1 Cold vapor and ICP analyses第94页
    4.4 Results and discussion第94-99页
        4.4.1 System optimization第94-98页
        4.4.2 Pyrolytic Hg releasing profiles of CM samples第98-99页
    4.5 Analytical performance第99-106页
        4.5.1 Method validation by inter-method comparisons第105-106页
    4.6 Conclusions第106-107页
    4.7 References第107-108页
Chapter 5. Application to Real Chinese Medicinal Samples: Pyrolysis Coupled with AAS for the Determination of Hg, ICPMS for As, Cd and Pb-Inter-laboratory Data Comparisons第108-132页
    5.1 Introduction第108-110页
    5.2 Experimental第110-112页
        5.2.1 ICP-MS第110-111页
        5.2.2 Pyrolytic mercury analyzer第111页
        5.2.3 Reagents第111-112页
    5.3 Methods and material studied第112-113页
    5.4 Analyses and results第113-128页
        5.4.1 Analytical performance of ICP-MS and mercury analyzer第113-121页
        5.4.2 Results of the analyses—inter-laboratory comparisons第121-128页
    5.5 Conclusions第128-129页
    5.6 Appendix—The experimental data from two laboratories.第129-131页
    5.7 References第131-132页
Chapter 6. Recommended Future Work:1. Temperature Program Coupled with Pyrolysis for Mercury Speciation in Solid Samples of CMM; 2. The Preliminary Mechanism Study on the Chemical Vapor Generation Using MRBHG Coupled with AAS.第132-140页
    6.1 The possibility of mercury speciation in CM using pyrolysis第132-137页
        6.1.1 Experimental第135-137页
            6.1.1.1 Temperature programming system第135页
            6.1.1.2 Preliminary results第135-137页
    6.2 Mechanistic study of chemical vapor generation using MRBHG第137-139页
    6.3 References第139-140页
Publications & Presentations during Author's PhD study第140-144页
Acknowledgements第144-145页

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