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Biobased and Environmentally Benign Coatings

Biobased and Environmentally Benign Coatings
Author: Atul Tiwari
Publisher: John Wiley & Sons
Total Pages: 337
Release: 2016-03-29
Genre: Science
ISBN: 1119185106

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This book will have the recent information on the developments in the emerging field of environmental-friendly coatings. Crucial aspects associtaed with coating research will be presented in form of the indivudual chapters. Close attention will be paid to include essential aspects that are necessary to understand the porperties and applications of the novel materials. Different methods and techniques of synthesis and charcaterization will be detailed as individual chapters. It will also discuss the characterization techniques used in the area of such coatings. there will be chapters that descirbe the current status and future prospects. The topics will be selected so they are easy to understand and useful to new scholars as well as advanced learners. No book has been written on this subject so far.


Biobased and Environmental Benign Coatings

Biobased and Environmental Benign Coatings
Author: Atul Tiwari
Publisher:
Total Pages:
Release: 2016
Genre: Coatings
ISBN: 9781523111299

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This book will have the recent information on the developments in the emerging field of environmental-friendly coatings. Crucial aspects associtaed with coating research will be presented in form of the indivudual chapters. Close attention will be paid to include essential aspects that are necessary to understand the porperties and applications of the novel materials. Different methods and techniques of synthesis and charcaterization will be detailed as individual chapters. It will also discuss the characterization techniques used in the area of such coatings. there will be chapters that descirbe the current status and future prospects. The topics will be selected so they are easy to understand and useful to new scholars as well as advanced learners. No book has been written on this subject so far.


Environmentally Benign Coatings

Environmentally Benign Coatings
Author: Ganghua Teng
Publisher:
Total Pages: 484
Release: 2001
Genre: Ceramic materials
ISBN:

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Green Chemistry for Surface Coatings, Inks and Adhesives

Green Chemistry for Surface Coatings, Inks and Adhesives
Author: Rainer Hoefer
Publisher: Royal Society of Chemistry
Total Pages: 450
Release: 2019-06-06
Genre: Science
ISBN: 1782629947

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Many modern surface coatings and adhesives are derived from fossil feedstocks. With fossil fuels becoming more polluting and expensive to extract as supplies dwindle, industry is turning increasingly to nature, mimicking natural solutions using renewable raw materials and employing new technologies. Highlighting sustainable technologies and applications of renewable raw materials within the framework of green and sustainable chemistry, circular economy and resource efficiency, this book provides a cradle-to-cradle perspective. From potential feedstocks to recycling/reuse opportunities and the de-manufacture of adhesives and solvents, green chemistry principles are applied to all aspects of surface coating, printing, adhesive and sealant manufacture. This book is ideal for students, researchers and industrialists working in green sustainable chemistry, industrial coatings, adhesives, inks and printing technologies.


Environmentally Friendly and Biobased Lubricants

Environmentally Friendly and Biobased Lubricants
Author: Brajendra K. Sharma
Publisher: CRC Press
Total Pages: 644
Release: 2016-09-19
Genre: Science
ISBN: 1315355892

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A Comprehensive Review of Developing Environmentally Friendly Lubricants A push from environmentally savvy consumers along with recent changes in governmental regulations have paved the way for a marketplace of products with high levels of environmental performance. Fueled by the growing demand for biobased lubricants, Environmentally Friendly and Biobased Lubricants highlights the development of environmentally friendly additives that are compatible with environmental regulations and describes the approaches being used in this emerging area. Derived from research topics shared over the years at various technical sessions of the Society of Tribologists and Lubrication Engineers (STLE) Annual Meetings, the book includes a critical assessment of gaps and weaknesses in the field of environmentally friendly fluids and biobased lubricants. Each chapter is written by authors selected from the environmentally friendly fluids and biobased lubricants sessions of STLE and also incorporates input from prominent researchers invited to take part in the book. Expert contributors discuss the control, production, usage, and disposal of lubricants; factor in related policies, laws, and regulations around the world; and include case studies demonstrating the uses and values of commercially viable biobased lubricants. The book is divided into five sections that cover advanced environmentally friendly base oils and feedstocks, biobased hydraulic lubricants and biodegradability, chemically/enzymatically modified environmentally friendly base oils, vegetable oil–based environmentally friendly fluids, and additives for environmentally friendly fluids.


Biopolymer Thin Films and Coatings

Biopolymer Thin Films and Coatings
Author: Stefan Spirk
Publisher: Frontiers Media SA
Total Pages: 141
Release: 2020-01-10
Genre:
ISBN: 2889633330

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In science as well as in industry, the impetus of research on bio-based polymers has recently expanded into new terrains. The need to replace fossil-based materials with sustainable and renewable sources is one of the main drivers for the emergence and the development of new and environmentally friendly materials. While some materials applications of bio-based polymers are already very well established, for instance, in paper and textiles, others have just emerged with thin films and coatings being a recent and particular area of interest. Thin films in general are an enormous field of research both fundamentally and from an applied perspective, with uses ranging from corrosion resistance to photovoltaics and sensors. Since bio-based materials are a relatively novel source material for thin films, the research in this area is at a fresh, exciting stage at the moment.


Biopolymer-Based Films and Coatings

Biopolymer-Based Films and Coatings
Author: Sneh Punia Bangar
Publisher: CRC Press
Total Pages: 441
Release: 2023-05-30
Genre: Technology & Engineering
ISBN: 1000875954

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With the growing concern for the environment and the rising price of crude oil, there is increasing demand for non-petroleum-based polymers from renewable resources. Biopolymer films have been regarded as potential replacements for synthetic films in food packaging due to a strong marketing trend toward environmentally friendly materials. Biopolymer-based films and coatings display good barrier properties, flexibility, transparency, economic profitability, and environmental compatibility. Therefore, they have successfully been used for packaging various food products. Biopolymer-Based Films and Coatings: Trends and Challenges elaborates on the recent methods and ingredients for making biodegradable films and coatings, as well as the current requirements for food security and environmental issues. This book also explores films and coatings prepared with essential oils, antimicrobial substances, and bioactive components that make up this active packaging. Films and coating chapters are based on biopolymers used to prepare films and coatings, that is, carbohydrates, lipids, proteins, and so on. This book provides a platform for researchers and industrialists on the basic and advanced concepts of films and coatings. Key Features Provides a comprehensive analysis of recent findings on biopolymers (carbohydrate-, protein-, and lipid-) based films and coatings Contains a wealth of new information on the properties, functionality, and applications of films and coatings Presents possible active and functional components and ingredients for developing films and coatings. Guides start-up researchers on where to start the latest research work in packaging It has been estimated that the global production of bioplastics is set to hike from ~2.11 in 2020 to ~2.87 million tonnes in 2025. Further, the demand for fresh, ready-to-eat, or semi-finished foods is increasing, and the need to maintain food safety and quality further exacerbates the challenges in the supply chain, especially with the globalization of food trade and the use of centralized processing facilities for food distribution. It is an urgent requirement to increase shelf life and reduce food product loss. Considering the great market demand for biodegradable material-based packaging systems, this book comes at an opportune time to enable researchers and food scientists to develop suitable solutions considering the sustainability and economic feasibility of the process.


Factsheet Bio-based Coatings

Factsheet Bio-based Coatings
Author:
Publisher:
Total Pages:
Release: 2018
Genre:
ISBN: 9789279891717

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A coating is a covering that is applied to the surface of an object for decorative, protection or specific technical purposes. Following the definition of the European Commission, 'paint' means a pigmented coating material and 'varnish' means a clear coating material. In the infrastructure construction materials sector, coatings are applied for decorative, protection or specific technical purposes to the road (marking), guide rails, walls (for example in a tunnel) and street furniture. Mainstream paints and varnishes are produced from synthetic chemicals. Bio-based paints consist of a vegetable fraction and can also be made entirely from bio-based materials such as vegetable oils and natural pigments. This factsheet provides information on biobased coatings and how to take these into account in procurement.


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.


Thermoplastic-free Paper Coatings as Sustainable Alternatives for Single-use Plastic Packaging

Thermoplastic-free Paper Coatings as Sustainable Alternatives for Single-use Plastic Packaging
Author: Dhwani Kansal
Publisher:
Total Pages: 149
Release: 2021
Genre: Electronic dissertations
ISBN:

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Plastics are one of the most widely used classes of synthetic products due to their lightweight nature, affordability, and versatility. However, commonly used plastics are non-biodegradable and have low recycling rates that have created environmental issues. Paper is considered to be an excellent alternative to plastics in certain packaging applications due to its biodegradability, low-cost, and good mechanical properties. However, the porous texture and polar chemistry of paper make them unfit for containing liquid products and thus limit its applicability. This problem is circumvented by applying plastic and per- and polyfluoroalkyl substances (PFAS) coatings onto paper. However, plastic is non-biodegradable, and PFAS is harmful, and their accumulation in ecosystems poses threats to human health and the environment.This thesis work is aimed to address the current non-sustainable challenges associated with coated paper. Three approaches were used to develop environmentally friendly and sustainable coatings. The aim of Approach 1 is to develop chitosan- and zein-based dual-layer coatings as novel paper coating materials because both chitosan and zein are biobased, biodegradable, and food safe materials. Kraft paper was coated with an oil-resistant chitosan solution as the first layer and subsequently by a hydrophobic zein solution as the top layer. The resultant chitosan-zein-coated paper showed significant water resistance (Cobb 60 value of 4.88 g/m2) and oil repellency (kit rating of 12/12). Scanning electron microscopy (SEM) analysis showed that the pores were masked upon coating with chitosan and zein dual-layer coating that led to the improvement in water- and oil- resistance. The desirable mechanical properties of the coated paper were retained after the coating treatment. In addition, the pulp was recovered from the chitosan-zein-coated paper to validate the recyclability of this novel approach percentage of recovery and properties of recoverable materials. Approach 2 is aimed to replace chitosan with a less expensive material such as starch in the dual layer paper coating. Again, starch is widely available, and due to the similar chemical structure with that of chitosan, it shows the same oil resistance as chitosan. Accordingly, starch and zein dual-layer coatings were applied onto a Kraft paper and yielded a low Cobb 60 value of 4.81 g/m2. In addition, the coated paper exhibited excellent grease resistance with a kit rating of 12/12. SEM characterization confirmed that the dual-layer coating filled the pores of the paper substrate. The mechanical properties, as well as the thermal stability of the paper, remained essentially unchanged after the coating treatments. Approach 3 is focused on the use of single-layer coating to obtain water and oil resistant coatings. Here, sunflower oils were first modified and then grafted onto chitosan using industry-relevant epoxidation chemistry. The obtained chitosan-graft-oil was coated onto paper for the water and oil resistance properties. Cobb 60 and kit rating values were determined to be 8.00 g/m2 and 7.66, respectively, for the optimal formulations. Considering the excellent sustainability i.e., ability to be reused without depletion of natural resources, of our developed paper (e.g., thermoplastic-free, PFAS-free, repulpable, and biodegradable), this work offers a multitude of packaging applications with invaluable benefits for human, animal health, the environment, as well as industry.