Bio Based Reactive Diluents And Thiol Ene Photopolymerization For Environmentally Benign Coatings PDF Download

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Bio-based Reactive Diluents and Thiol-ene Photopolymerization for Environmentally Benign Coatings

Bio-based Reactive Diluents and Thiol-ene Photopolymerization for Environmentally Benign Coatings
Author: Kosin Wutticharoenwong
Publisher:
Total Pages: 210
Release: 2007
Genre: Diels-Alder reaction
ISBN:

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Tung oil was used as diene for modification via a Diels-Alder reaction with acrylate dienophiles. Tung oil was modified with three different acrylate molecules: 3-methacryloxypropyl trimethoxysilane (MAS), 2,2,2-trifluoroethyl methacrylate (TFM) and triallyl ether acrylate (TAEA) at atmospheric pressure. The modified tung oils were characterized using 1H NMR, 13C NMR, and FT-IR. The molecular weight and distribution were characterized using GPC, and MALDI-TOF. The effects of new acrylate modified tung oils on the properties of alkyd-based coatings film were investigated including hardness, solvent resistance, flexibility, gloss, impact resistance, contact angle, tensile, and thermo-mechanical properties. Viscosity of the alkyd can be greatly reduced by the introduction of modified tung oils. Drying time study showed that drying time can be altered by types and level of diluent added. All the results revealed that modified tung oils can be used as volatile organic compound (VOC) compliant in alkyd systems. Synthetic methods were developed to prepare thiols and mercaptopropionate thiols for thiol-ene photopolymerization. New thiols were characterized by 1H NMR, 13C NMR, Fourier transform infrared spectroscopy (FT-IR), and elemental analysis (C, H, S, O). Photopolymerization kinetics of the thiols with representative alkenes were investigated by time resolved Fourier transform infrared spectroscopy (FT-IR) with and without photoinitiator. It was proposed that steric hinderance of thiol structures lower the initial reaction rate of photopolymerization. An experiment was planned according to ternary mixture design to investigate the influence the three thiols on the thermo-mechanical and coatings properties of thiol-ene photopolymerizable materials. It was found that the steric and rigidity of the double cycloaliphatic structure of thiol enhanced the tensile strength, tensile modulus, glass transition temperature (T[subscript g]) and pencil hardness with loss of crosslink density of the film. The result suggested that steric and rigidity of thiols structures played an important role in both kinetics and material properties on thiol-ene photopolymerization. A thiol colloid oligomer was prepared via sol-gel method from mercaptopropyl- trimethoxysilane (MPTS). The thiol colloid oligomer was characterized using 1H NMR, 29Si NMR, FT-IR, GPC, and MALDI-TOF mass spectroscopy. The thiol colloid was attempted to photopolymerize with triallyl ether modified tung oil (TAETO) as a bio-based alkene via thiol-ene photopolymerization. However, kinetics results via time-resolved FT-IR indicated that MPTS colloid oligomer did not affect the initial reaction rate and final conversion of MPTS/TAETO system due to the immiscibility between TAETO and MPTS oligomer.


Bio-Based Plant Oil Polymers and Composites

Bio-Based Plant Oil Polymers and Composites
Author: Samy Madbouly
Publisher: William Andrew
Total Pages: 232
Release: 2015-08-27
Genre: Science
ISBN: 0323371280

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Bio-based Plant Oil Polymers and Composites provides engineers and materials scientists a useful framework to help take advantage of the latest research conducted in this rapidly advancing field—enabling them to develop and commercialize their own products quickly and more successfully. Plant oil is one of the most attractive options as a substitute for non-renewable resources in polymers and composites, and is producing materials with very promising thermomechanical properties relative to traditional, petroleum-based polymers. In addition to critical processing and characterization information, the book assists engineers in deciding whether or not they should use a plant oil-based polymer over a petroleum-based polymer, discussing sustainability concerns, biodegradability, associated costs, and recommended applications. The book details the advancements in the development of polymeric materials and composites from plant oils, and provides a critical review of current applications in various fields, including packaging, biomedical, and automotive applications. Also includes the latest progress in developing multifunctional biobased polymers—by increasing thermal conductivity or adding antibacterial properties, for example. Essential coverage of processing, characterization, and the latest research into polymeric materials and composites derived from plant oils (thermoplastics, thermosets, nanocomposites, and fiber reinforced composites) Critically reviews the potential applications of plant oil-based polymers, including sensors, structural parts, medical devices, and automotive interiors Includes the latest developments in multifunctional bio-based polymer composites


Photopolymerization

Photopolymerization
Author: Alec B. Scranton
Publisher:
Total Pages: 266
Release: 1997
Genre: Language Arts & Disciplines
ISBN:

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This valuable reference examines the fundamental aspects of acrylate systems used in commercial photopolymerization, and investigates advanced analytical systems that characterize acrylate and non-acrylate systems. The new non-acrylate systems covered include free radical, cation, and charge-transfer photopolymerizations. The book also discusses emerging applications for this technology in photoresists, orthopedic cements, fiber-filled composites, and electro-optic materials.


Soybean

Soybean
Author: Minobu Kasai
Publisher: BoD – Books on Demand
Total Pages: 192
Release: 2019-02-20
Genre: Technology & Engineering
ISBN: 1789853737

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Plants are important for a permanent ecosystem, because in the ecological pyramid plants support all the other living organisms at the base. Very important organization is thought to be the integral process of resource, transport, partitioning, metabolism, and production, which involves yield, biomass, and productivity in plants. Accordingly, it is important to obtain more information about the knowledge concerning yield, biomass, and productivity in plants. Soybean is one of the main crops largely contributing to our life, which is thought to be connected to our ecosystem through the above-mentioned integral process. This book focuses on the soybean, and reviews and research concerning the yield, biomass, and productivity of soybean are presented herein. This text updates the book published in 2017. Although there are many difficulties, the main aim of this book is to present a basis for the above-mentioned integral processes of resource, transport, partitioning, metabolism, and production, which involves yield, biomass, and productivity in plants (soybean), and to understand what supports this basis and the integral process. It is hoped that this and the preceding book will be essential reads.


Industrial Photoinitiators

Industrial Photoinitiators
Author: W. Arthur Green
Publisher: CRC Press
Total Pages: 306
Release: 2010-04-22
Genre: Science
ISBN: 143982746X

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The use of photoinitiators in the UV curing process shows remarkable possibilities in myriad applications. Highlighting critical factors such as reactivity, cure speeds, and application details, Industrial Photoinitiators: A Technical Guide is a practical, accessible, industrially oriented text that explains the theory, describes the products, and


Radiation Curing

Radiation Curing
Author: Patrick Glöckner
Publisher: Vincentz Network GmbH & Co KG
Total Pages: 176
Release: 2009-01-15
Genre: Science
ISBN: 9783866309074

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"This book, a combination of theory and practice, provides comprehensive knowledge in the field of radiation curing and support for your daily work. It offers guidance on how to select raw materials and features a troubleshooting chapter which provides concrete answers to possible problems." "This book is aimed towards formulators in the field of radiation curing, students and young professionals in coatings and printing inks with no previous experience of radiation curing and all readers who have an interest in and enjoy reading about the theory and practice of one of the fastest-growing technologies." --Book Jacket.


Environmental Protection and Sustainable Development

Environmental Protection and Sustainable Development
Author: Fauziah Shahul Hamid
Publisher: Trans Tech Publications Ltd
Total Pages: 2030
Release: 2014-02-06
Genre: Technology & Engineering
ISBN: 3038264032

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Collection of selected, peer reviewed papers from the 2013 2nd International Conference on Sustainable Energy and Environmental Engineering (ICSEEE 2013), 28-29 December, 2013, Shenzhen, China. The 363 papers are grouped as follows: Chapter 1: Environmental Analysis, Monitoring and Pollution Control Project, Chapter 2: Environmental Chemistry and Biological Researches, Chapter 3: Environmental Safety and Health, Chapter 4: Environmental Restoration and Purification Engineering, Chapter 5: Ecological and Environmental Protection, Chapter 6: Waste Disposal and Recycling, Chapter 7: Disaster Prevention and Mitigation, Chapter 8: Hydrology, Water Resources Engineering and Water Supply, Chapter 9: Forest Cultivation and Plant Protection, Chapter 10: Biomedical Engineering, Chapter 11: Geographic Information Science and Remote Sensing, Chapter 12: Geology and Geoscience, Prospecting and Exploration of Mineral Resources, Chapter 13: Mining Engineering, Chapter 14: Technologies of Mineral Processing, Chapter 15: Technology of Oil and Gas Extraction, Chapter 16: Urban and Rural Planning and Design, Chapter 17: Sustainable Development, Circulary and Low-Carbon Economy


Bio-Based Epoxy Polymers, Blends, and Composites

Bio-Based Epoxy Polymers, Blends, and Composites
Author: Jyotishkumar Parameswaranpillai
Publisher: John Wiley & Sons
Total Pages: 402
Release: 2021-04-26
Genre: Technology & Engineering
ISBN: 3527346481

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State-of-the-art overview on bioepoxy polymers as well as their blends and composites -- covering all aspects from fundamentals to applications! Bioepoxy polymers is an emerging area and have attracted more and more attention due to their biodegradability and good thermo-mechanical performance. In recent years, research progress has been made in synthesis, processing, characterization, and applications of bioepoxy blends and composites. Bioepoxy polymers are very promising candidates to replace the traditional thermosetting nonbiodegradable polymers. Bio-Based Epoxy Polymers, Blends and Composites summaries recent research progress on bioepoxy polymers as well as their blends and composites. It covers aspects from synthesis, processing, various characterization techniques to broad spectrum of applications. It provides a correlation of physical properties with macro, micro and nanostructures of the materials. Moreover, research trends, future directions, and opportunities are also discussed. Attracts attention: Bioepoxy polymers are environmentally friendly and considered as a promising candidate to replace the traditional thermosetting nonbiodegradable polymers Highly application-oriented: Bioepoxy polymers can be used in a broad range of applications such as polymer foams, construction, aerospace, automobiles, self-healing systems One-stop reference: Covers all aspects of bioepoxy polymer, their blends and composites, such as synthesis, properties, processing, characterization and applications Broad audience: Attracts attention from both academia and industry


Sustainable Polymers from Biomass

Sustainable Polymers from Biomass
Author: Chuanbing Tang
Publisher: John Wiley & Sons
Total Pages: 458
Release: 2017-02-21
Genre: Technology & Engineering
ISBN: 352734019X

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Offering a unique perspective summarizing research on this timely important topic around the globe, this book provides comprehensive coverage of how molecular biomass can be transformed into sustainable polymers. It critically discusses and compares a few classes of biomass - oxygen-rich, hydrocarbon-rich, hydrocarbon and non-hydrocarbon (including carbon dioxide) as well as natural polymers - and equally includes products that are already commercialized. A must-have for both newcomers to the field as well as established researchers in both academia and industry.