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160928s2016 nyua ob 001 0 eng |
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|z 9781536102888
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|a (OCoLC)959609959
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|a UAMI
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|a Heterogeneous catalysts :
|b design, applications, and research insights /
|c Kurt Jensen, editor.
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|a New York :
|b Nova Science Publishers, Inc.,
|c [2016]
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300 |
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|a 1 online resource ((x, 205 pages).
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|a text
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|a Chemistry research and applications
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|a Includes bibliographical references and index.
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|a Preface; Chapter 1; Assembly of Nanocatalytic Structures by Molecular Layer Epitaxy Method; Abstract; 1. Introduction; 2. Molecular Layer Epitaxy (MLE) Method; 3. Heterocatalytic Nanostructures by MLE Method; 4. Evaluation Criteria for Catalytic Nanostructures; 5. Materials and Methods; 6. Results; 6.1. Structural Analysis; 6.2. Catalytic Properties; 7. Discussion; Conclusion; Acknowledgments; References; Chapter 2; Solid Acids as Catalysts for Biodiesel Synthesis; Abstract; Introduction; Heterogeneously Catalyzed Biodiesel Synthesis.
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|a Solid Acid Catalysts: Preparation, Characteristics and Activity in Biodiesel SynthesisModified Silica Based Catalysts; Metal Oxide Based Acid Catalysts; Ion-Exchange Resins; Heteropolyacids; Zeolite; Carbon-Based Solid Acids; Deactivation of Solid Acid Catalysts; Modified Silica Based Catalysts; Oxide Based Catalysts; Ion-Exchange Resin; Heteropolyacids; Zeolite; Carbon Based; Kinetics of Transesterification Process Catalyzed by Solid Acids; Conclusion; Acknowledgments; References; Chapter 3.
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|a Process Optimization of Refined Palm Oil Biodiesel Production Using Calcium Methoxide Obtained from Quick Lime as Heterogeneous CatalystAbstract; Introduction; Literature Review; Biodiesel; Biodiesel Production via Transesterification Reaction; Response Surface Methodology; Materials and Methods; Quick Lime; Refined Palm Oil; Reagents; Equipments; Methods; Preparation of the Catalyst; Characterization of Catalyst; Conversion Experiment of Approximate Conditions; Experimental Design and Statistical Analysis; Reusability of the Ca(OCH3)2; Gas Chromatography (GC) Analysis; Analysis Method.
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|a Analysis of Fatty Acid Composition in RPOCharacterization of Biodiesel; Results and Discussion; Properties of RPO; Characterization of the Obtained Catalyst; Conventional Transesterification for Approximate Conditions; Optimization of Reaction Conditions by RSM; Effect of the Variables on %FAME; Optimum Reaction Conditions Predicted by RSM; Validation of the Regression Model Developed; Biodiesel Properties; Reusability of the Ca(OCH3)2; Confirmation Biodiesel Structure by 1H-NMR; Conclusion; References; Biographical Sketch; Chapter 4; Cyclization of Pseudoionone over USY Zeolites; Abstract.
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|a IntroductionExperimental; Results and Discussion; Conclusion; Acknowledgments; References; Index; Blank Page.
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|a Online resource; title from digital title page (viewed on April 24, 2017).
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|b EBSCO eBook Subscription Academic Collection - Worldwide
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|a Heterogeneous catalysis.
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|a Catalysts.
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|a Jensen, Kurt
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|t Heterogeneous catalysts.
|d Hauppauge, New York : Nova Science Publishers, Inc., [2016]
|z 9781536102888
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|a Chemistry research and applications series.
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