Graphite Nanoparticle-Based Innovative Composite Binder System for UN's Sustainable Development Goals

Graphite Nanoparticle-Based Innovative Composite Binder System for UN's Sustainable Development Goals

Mehmet Kirgiz
Pages: 300
DOI: 10.4018/979-8-3693-6059-0
ISBN13: 9798369360590|ISBN13 Softcover: 9798369360606|EISBN13: 9798369360613
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Description & Coverage
Description:

Environmental impact of the common binders used is usually evaluated through the life-cycle assessment (LCA), which is an effective process for measuring the service life of the materials. LCA results of materials made of such biodegradable binder and fiber as starch, flour-based-starch, corn-based-starch and potato-based-starch, and oat-shives, hemp-shives, and flax shives demonstrate that they have a lesser harmful environmental impact than conventional materials made of common binders. As the materials are based on woody, they needs of the flame retardants and of various other additives to develop their features. Therefore, the blending of the chemical admixture into the manufacturing process of the construction materials could provide less environmentally-friendly structure for them. For the aforementioned outputs, the overall goal of this volume is to provide an advanced overview, applicable procedures, and prescriptions for the Graphite nanoparticle-based innovative composite binder system for UN's Sustainable Development Goals. Emphasis will be placed on the synthesis of materials, the measurement of physical, mechanical, and durability properties of material as well as the analysis of the inner-structure of materials. Over the years, there have been several comprehensive research reports published regarding on the adhesive systems in peer-reviewed journals; however this volume will discuss new innovative approaches and advanced solutions for making cost-, ecology-, and environmental-friendly formaldehyde-free-hydraulic binder and binder-based materials through common construction binders and biodegradable binders. As a consequence of the popularity of adhesive manufacturing, various formaldehyde-free-hydraulic binder and binder-based materials will be identified in terms of constructional application. The book will provide further knowledge on the most suitable ones available, coupled with techniques and their applications. Where the readership will be located geographically, Worldwide. If localized, how it will be split between UK, Continental Europe, North America, Rest of the World?

Worldwide. All stakeholders in the built environment, construction materials, material science– Teachers, Scientists, Builders, Technologist, Students, Researchers, Policymakers, Admixture and Chemical Manufacturers, and also for academic research and teaching purposes. Whilst there have been a few comprehensive academic reports published on Graphite nanoparticle-based innovative composite binder system for UN's Sustainable Development Goals; there is comprehensive significant input on Cost-Effective Composite Binder for UN's Sustainable Development Goals, which will advance the literature. Thus, this volume will help identified stakeholders to better understand and apply innovative techniques in Graphite nanoparticle-based innovative composite binder system for UN's Sustainable Development Goals. Universities related to Technology, Construction, Transportation, Infrastructure, Structure, Environmental authorities, Local authorities and policymakers on the GHGE, Institutes on Natural and Applied Sciences, construction contractors, lecturers in colleges related to construction, structure, and materials and technology. Also, the book could be used for courses, such as materials, nanotechnology, construction, and adhesive, in undergraduate and graduate schools, faculties, construction technology, and colleges. Such courses need the binder synthesis to teach students its reaction. Therefore, it will help students to better understand the broad field of adhesive, especially materials bonded graphite nanoparticle-based binder. Such some organizations as following could be interested in the book.

names of any societies or organisations that may be interested in the book.

 RILEM (https://www.rilem.net/),  Fiber Reinforced Concrete Association (https://fiberreinforcedconcrete.org/),  American Concrete Institute (www.concrete.org),  The European Cement Association (CEMBUREAU) (https://cembureau.eu/),  EFCA- European Federation of Concrete Admixtures Assoc's (https://www.efca.info/), European Concrete Platform (https://cembureau.eu/about-us/our-partners/european-concrete-platform/),  EUPAVE is the European Concrete Paving Association (https://www.eupave.eu),  National Asphalt Pavement Association (NAPA) (https://www.asphaltpavement.org),  National Asphalt Pavement Association (NAPA) (https://www.acpa.org),  American Concrete Pavement Association (ACPA) (https://www.acpa.org),  Australian Flexible Pavement Association (AfPA) (https://www.afpa.asn.au),  European Asphalt Pavement Association – ECCREDI (https://www.eccredi.org).

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