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EBSCO_ocm58593995 |
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OCoLC |
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20231017213018.0 |
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m o d |
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050324s2000 dcu o 000 0 eng d |
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|a UAMI
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|a Catalytic process technology /
|c Committee on Catalytic Process Technology for Manufacturing Applications, Board on Manufacturing and Engineering Design, Commission on Engineering and Technical Systems, National Research Council.
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|a Washington, D.C. :
|b National Academy Press,
|c Ã2000.
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|a 1 online resource
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|a Online resource; title from HTML t.p. (National Academies Press, viewed August 11, 2011).
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|a CATALYTIC PROCESS TECHNOLOGY -- Copyright -- Preface -- Acknowledgments -- Contents -- Executive Summary -- RECOMMENDATIONS -- Recommendations for Applied Research -- Alkane Activation and Selective Oxidation -- Synthesis of Fine Chemicals -- Alternative and Renewable Resources -- Olefin Polymerization -- Alkylation Technology -- Environmental Applications -- Policy-Related Recommendations -- Innovation -- Computational Technology -- Funding for Catalyst Research -- Proposal Review Process -- Program Metrics -- Research Centers -- 1 Introduction
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|a U.S. CHEMICAL INDUSTRYINDUSTRIAL CATALYSIS -- POLICY BACKGROUND -- OFFICE OF INDUSTRIAL TECHNOLOGIES -- CURRENT STUDY -- 2 Areas for Applied Research -- ALKANE ACTIVATION AND SELECTIVE OXIDATION -- Low-Temperature, Oxidative Dehydrogenation of Alkanes to Alkenes -- Molecularly Designed Metal Oxides -- Direct Epoxidation of Higher Alkenes with Molecular Oxygen -- Primary Oxidation of Alkanes to Alcohols and Diols -- SYNTHESIS OF FINE CHEMICALS -- Catalysis -- Synthetic Versatility and Atom Economy -- Selectivity -- Reaction Conditions -- Biocatalysis
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|a Substrate Specificity and StereoselectivityEnzyme Stability -- Enzyme Activity -- Cofactor Regeneration -- ALTERNATIVE AND RENEWABLE RESOURCES -- Alternative Resources -- Low-Cost Production of Synthesis Gas -- Available Chemicals -- Renewable Resources -- Converting Biomass to Feedstocks and Polymers -- Efficient Use of Carbon -- OLEFIN POLYMERIZATION -- Copolymerized Olefins with a Diverse Class of Polar Unsaturated Monomers -- Tolerant Catalysts -- Macromolecular Architectures and Thermoplastic Elastomers -- Polymer Recycling -- ALKYLATION TECHNOLOGY
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|a Ultrahigh SelectivityTolerance to Functional Groups -- Reactivity -- ENVIRONMENTAL APPLICATIONS -- Pollution Control for Mobile Applications -- Control of Nitrogen Oxides in Lean-Exhaust Environments -- Control of Particulate Emissions -- Catalytic Sensors -- Measuring Combustion Exhaust Streams -- Monitoring Fuel Quality -- Fuel Cell Systems -- Converting Hydrocarbon Fuels to Hydrogen -- Metal-Sintering Processes of Supported Metal Catalysts -- Mechanistic Understanding of the Sintering of Metals on a Support -- Model System -- 3 Policy-Related Issues
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|a INNOVATIONCOMPUTATIONAL TECHNOLOGY, COMBINATORIAL CHEMISTRY, AND DATA MANAGEMENT -- FUNDING FOR CATALYSIS RESEARCH -- PROPOSAL REVIEW PROCESS -- PROGRAM METRICS -- RESEARCH CENTERS -- References -- Appendix A Invited Speakers -- Appendix B Biographical Sketches of Committee Members -- Glossary -- Acronyms
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546 |
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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 Chemical industry.
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|a National Research Council (U.S.).
|b Committee on Catalytic Process Technology for Manufacturing Applications.
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