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140611s2014 nyua ob 001 0 eng |
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|a 9781633213715
|q (ebook)
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|a 1633213714
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|z 9781633213562
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|a TP1180.S7
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|a 668.4/233
|2 23
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|a UAMI
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|a Polystyrene :
|b synthesis, characteristics, and applications /
|c Cole Lynwood, editor.
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|a New York :
|b Nova Publishers,
|c [2014]
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|a 1 online resource
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|a text
|b txt
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|a computer
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|a online resource
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|a Chemistry research and applications
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|a Includes bibliographical references and index.
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|a Print version record.
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|a POLYSTYRENE: SYNTHESIS, CHARACTERISTICS AND APPLICATIONS; Library of Congress Cataloging-in-Publication Data; Contents; Preface; Chapter 1: Waste/Contaminated Polystyrene Recycling through Reverse Polymerization; Abstract; 1. Introduction; 2. Pyrolysis of Polystyrene Using Classical Heating; 2.1. Polystyrene Alone; 2.1.1. Autoclave Reactors; 2.1.2. Batch Reactors; 2.1.3. Fluidized Bed Reactors; 2.1.4. Special Mediums; 2.1.5. Other Pyrolysis of PS; 2.2. Pyrolysis of PS Mixed with Other Plastics; 2.2.1. Autoclave Reactors; 2.2.2. Batch Reactors.
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|a 2.2.3. Continuous Process Using a Fluidized Bed Reactors2.2.4. Pyrolysis of PS Mixed with Biomasses; 2.3. Catalytic Pyrolysis; 3. Microwave Assisted Pyrolysis; Conclusion; Acknowledgment; References; Chapter 2: Polystyrene-Based Amphiphilic Block Copolymers: Synthesis, Properties and Applications; Abstract; 1. Introduction; 2. Synthesis of Polystyrene-Based; Amphiphilic Block Copolymers; 2.1. Anionic Polymerization; 2.2. Nitroxide-Mediated Radical Polymerization (NMP); 2.3. Atom Transfer Radical Polymerization (ATRP); 2.4. Reversible Addition-Fragmentation Chain Transfer (RAFT)
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|a 3. Properties of Polystyrene-BasedAmphiphilic Block Copolymers; 3.1. Interfacial Properties; 3.2. Solution Rheology; 4. Applications; References; Chapter 3: Expanded Polystyrene: Thermo-Mechanical Recycling, Characterization and Application; Abstract; Expanded Polystyrene; History; Description; Methods for Manufacturing EPS; Basic Materials; Preparation of Expandable Polystyrene Beads; Manufacturing Process; Applications and Properties; Packaging; Application as a Construction Material; Other Applications; Consumption, Capacities and Recycling Rates; Common Methods for Recycling EPS.
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|a Thermal-Mechanical Recycling of EPS and Its Composites with Wood FlourExperimental Methods; Materials; EPS thermo-mechanical recycling and composite preparation; Mechanical testing; Density and morphological study; Results and Discussion; EPS recycling; Mechanical properties; Impact strength; Density and void content; Morphology characteristics; Future Trends; Conclusion; References; Chapter 4: Gigaporous Polystyrene Microspheres and Their Applications in High-Speed Protein Chromatography; Abstract; 1. Introduction and Background; 2. Preparation of Gigaporous Polystyrene Microspheres.
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|a 2.1. POROS Microspheres2.2. Magnapore Microspheres; 2.3. Microspheres Prepared by Surfactant Reverse Micelles Swelling Method; 2.4. Double Emulsion-templated Microspheres; 3. Hydrophilization of Gigaporous Polystyrene Microspheres; 3.1. Physical Adsorption of Phenoxyl Agarose on Gigaporous PS Microspheres; 3.2. Chemical Grafting Poly (Vinyl Alcohol) (PVA) on Gigaporous PS Microspheres; 3.3. Chemical Coupling Saccharide on Gigaporous PS Microspheres; 4. Applications to Protein Separation; 4.1. Ion-Exchange Chromatography; 4.2. Immobilized-metal Affinity Chromatography (IMAC); Conclusion.
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|a eBooks on EBSCOhost
|b EBSCO eBook Subscription Academic Collection - Worldwide
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650 |
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|a Polystyrene.
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650 |
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|a Polymers.
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|a Chemistry, Inorganic.
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|a Mineralogical chemistry.
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|a Polystyrène.
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|a Polymères.
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|a Chimie inorganique.
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|a polystyrene.
|2 aat
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|a polymers.
|2 aat
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|a inorganic chemistry.
|2 aat
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|a TECHNOLOGY & ENGINEERING
|x Chemical & Biochemical.
|2 bisacsh
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|a Mineralogical chemistry
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|a Chemistry, Inorganic
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|a Polymers
|2 fast
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|a Polystyrene
|2 fast
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700 |
1 |
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|a Lynwood, Cole,
|e editor.
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776 |
0 |
8 |
|i Print version:
|t Polystyrene.
|d New York : Nova Publishers, [2014]
|z 9781633213562
|w (DLC) 2014022560
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|
0 |
|a Chemistry research and applications series.
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