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|a UAMI
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|a Rengan, Krishnaswamy.
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|a Ultrafast chemical separations /
|c Krishnaswamy Rengan, Richard A. Meyer.
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|a Radiochemical techniques
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|a Washington, D.C. :
|b National Academy Press,
|c 1993.
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|a 1 online resource (x, 272 pages) :
|b illustrations
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|a text
|b txt
|2 rdacontent
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|a computer
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|2 rdamedia
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|a online resource
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|a Nuclear science series ;
|v NAS-NS-3118
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|a At head of title: Radiochemical techniques.
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|a "Prepared for the Committee on Nuclear and Radiochemistry, Board on Chemical Sciences and Technology, Commission on Physical Sciences, Mathematics, and Applications, National Research Council."
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|a "Support for this project was provided by the U.S. Department of Energy under grant no. DE-FG05-89ER14032 and by Lawrence Livermore National Laboratory under contract W-7405-Eng-48."
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|a Committee chairman: Richard L. Hahn.
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|a Available from the Board on Chemical Sciences and Technology.
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|a Includes bibliographical references (pages 73-93).
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|a Print version record.
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|a ULTRAFAST CHEMICAL SEPARATIONS -- Copyright -- FOREWORD -- PREFACE -- Contents -- PART I SEPARATION TECHNIQUES -- 1 Introduction -- 2 BATCH PROCESSES -- 2.1 PRECIPITATION -- 2.2 ADSORPTION AND ISOTOPIC EXCHANGE -- 2.2.1 Adsorption -- 2.2.2 Adsorption of Ions and Exchanges -- 2.3 ION-EXCHANGE TECHNIQUES -- 2.3.1 Principle -- 2.3.2 Application to Fast Radiochemical Separations -- 2.4 LIQUID-LIQUID EXTRACTION -- 2.4.1 Systems in Use -- 2.4.2 Application to Ultrafast Separations -- 2.5 HIGH-PERFORMANCE LIQUID CHROMATOGRAPHY -- 2.5.1 Principle
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|a 2.5.2 Separation of Lanthanides2.5.3 Separation of Other Elements -- 2.6 DISTILLATION AND VOLATILIZATION -- 2.6.1 Applications -- 2.7 THERMOCHROMATOGRAPHY -- 2.7.1 Principle -- 2.7.2 Specific Cases -- 2.8 ELECTROPHORESIS -- 3. AUTOMATED PROCESSES -- 3.1 COMPARISON OF EFFICIENCIES OF AUTOBATCH AND CONTINUOUS PROCESSES -- 4. AUTOBATCH TECHNIQUES -- 4.1 AUTOBATCH TECHNIQUES FOR THE SEPARATION OF SILVER ISOTOPES -- 4.2 TECHNETIUM BY SOLVENT EXTRACTION -- 4.3 PALLADIUM BY SOLVENT EXTRACTION -- 4.4 ARSENIC AND ANTIMONY BY VOLATILE-HYDRIDE PRODUCTION
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|a 4.5 AUTOBATCH SEPARATION OF INDIVIDUAL LANTHANIDE FISSION PRODUCTS4.6 SEPARATION OF TRANSPLUTONIUM ELEMENTS -- 5. DELIVERY SYSTEMS FOR CONTINUOUS TECHNIQUES -- 5.1 GAS-JET SYSTEMS -- 5.1.1 Role of Aerosols -- 5.1.2 Techniques of Aerosol Production -- 5.1.3 Types of Aerosols -- 5.2 TRANSPORT TIME -- 5.3 EXAMPLES OF GAS-JET SYSTEMS -- 6. CONTINUOUS LIQUID-PHASE CHEMICAL SEPARATIONS -- 6.1 HIGH-SPEED CENTRIFUGE FOR PHASE SEPARATION -- 6.2 TRANSFER FROM GAS-JET SYSTEM TO AQUEOUS PHASE -- 6.3 EXAMPLES -- 6.3.1 Arsenic -- 6.3.2 Zirconium and Niobium
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|a 6.3.3 Lanthanum6.3.4 Technetium -- 7. CONTINUOUS GAS-PHASE CHEMISTRY -- 7.1 PRODUCTION OUTSIDE THE TARGET CHAMBER -- 7.2 PRODUCTION IN THE TARGET CHAMBER -- 8. FUTURE OF ULTRAFAST CHEMISTRY -- 9. REFERENCES -- PART II INDIVIDUAL SEPARATION PROCEDURES BY ELEMENT -- 1 Introduction -- 2 Procedures by Element
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|a English.
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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|a Radiochemical analysis.
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|a Separation (Technology)
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|a Analyse radiochimique.
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|a Séparation (Technologie)
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|a SCIENCE
|x Chemistry
|x Analytic.
|2 bisacsh
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|a Radiochemical analysis
|2 fast
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|a Separation (Technology)
|2 fast
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|a Meyer, Richard A.,
|d 1933-
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|a Hahn, Richard L.
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|a National Research Council (U.S.).
|b Committee on Nuclear and Radiochemistry.
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|a National Research Council (U.S.).
|b Board on Chemical Sciences and Technology.
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|a National Research Council (U.S.).
|b Commission on Physical Sciences, Mathematics, and Applications.
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0 |
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|i Print version:
|a Rengan, Krishnaswamy.
|t Ultrafast chemical separations.
|d Washington, D.C. : National Academy Press, 1993
|w (OCoLC)29858522
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|a Nuclear science series (National Research Council (U.S.)) ;
|v no. 3118.
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