Sustainable Concrete Made with Ashes and Dust from Different Sources


Book Description

Sustainable Concrete Made with Ashes and Dust from Different Sources: Materials, Properties and Applications focuses on individual materials, addressing material characterization, their role in the strength and durability of construction materials, and structural applications. Each chapter reflects the current state-of-the-art in terms of the effective and efficient use of the material. Types of ashes covered are Coal Fly Ash, Coal Bottom Ash, Bagasse Ash, MSW Ash, Red Mud, Waste Marble Dust, Sewage Sludge Ash, and Cement Kiln Dust. This book is useful for civil engineers in the design and development of sustainable concrete by utilizing such types of ashes and researchers involved in the design and formulation of new cementitious materials. Focuses on different types of ashes derived from various sources for use in the development of sustainable concrete Discusses the economic and environmental impacts, normative restrictions, and implementation in codes and standards related to the use of these by-products/wastes in concretes Includes coverage of the impact of dust from construction and demolition wastes




Advance Upcycling of By-products in Binder and Binder-Based Materials


Book Description

Advance Upcycling of By-products in Binder and Binder-Based Materials focuses on research trends in binder and binder-based materials containing by-products. The book covers the properties of these materials, both physical and mechanical, and their durability, as well as their inner structure, both at the micro and nano-scale. The reuse of by-products within binder systems is also discussed as well as innovative approaches and advanced solutions for making cost-, ecology-, and environmental-friendly hydraulic binder and binder-based materials from the upcycling of by-products. The book also looks at additive manufacturing and explains the effects of by-products on the properties of binder and binder-based materials. As a consequence of the popularity of additive manufacturing, various by-product materials, in terms of constructional application, are also identified. These include latent hydraulic supplements, activators of transport properties, and increase in inner strength and durability. The book will be an essential reference resource for academic and industrial researchers, materials scientists and civil engineers and all those who are working in the development of ‘greener’ construction materials and utilization of waste and other fine by-products in the production of environmentally-friendly concrete. Provides a detailed review of recent research on the upcycling of by-products for use in binder and binder-based materials Presents innovative approaches and advanced solutions for making environmentally-friendly hydraulic binders and binder-based materials from the upcycling of by-products Includes mathematical models for strength estimation




Application of Waste Materials in Lightweight Aggregates


Book Description

Application of Waste Materials in Lightweight Aggregates presents the current state of knowledge on aggregates production methods, their characteristics, current standards and legal regulations. In addition, the book briefly discusses the issue of the presence of different types of waste in the environment (including municipal, agricultural, energy and mining industries), their characteristics and uses for the production of lightweight aggregates. This book serves as a source of academic information on the course and conditions of using various waste treatment processes for academics, engineers, professionals and students interested in environmental engineering, as well as for companies dealing with recycling and disposal of waste.




Building for the Future: Durable, Sustainable, Resilient


Book Description

This book presents the proceedings of the fib Symposium “Building for the future: Durable, Sustainable, Resilient”, held in Istanbul, Turkey, on 5–7 June 2023. The book covers topics such as concrete and innovative materials, structural performance and design, construction methods and management, and outstanding structures. fib (The International Federation for Structural Concrete) is a not-for-profit association whose mission is to develop at an international level the study of scientific and practical matters capable of advancing the technical, economic, aesthetic, and environmental performance of concrete construction.







Sustainability in Energy and Buildings 2022


Book Description

This book contains the proceedings of the 14th KES International Conference on Sustainability and Energy in Buildings 2021 (SEB2022) held in Split, Croatia, during September 14–16, 2022, organized by KES International. SEB22 invited contributions on a range of topics related to sustainable buildings and explored innovative themes regarding sustainable energy systems. The conference formed an exciting chance to present, interact and learn about the latest research and practical developments on the subject. The conference attracted submissions from around the world. Submissions for the full-paper track were subjected to a blind peer-reviewed process. Only the best of these were selected for presentation at the conference and publication in these proceedings. It is intended that this book provides a useful and informative snapshot of recent research developments in the important and vibrant area of sustainability in energy and buildings.




Functional Fillers


Book Description

Functional Fillers: Chemical Composition, Morphology, Performance, Applications, Second Edition covers the structure, physical properties, electrical and magnetic properties, and applications of fillers. The book includes two sections, with the first part covering classic fillers, analyzing the current modifications in relation to composition and morphology, and enabling enhancements in properties and applications. The second part presents the new generation of fillers, which provide designers with exceptional properties not previously available. Applications discussed include lubricants, anti-corrosion, antimicrobial, and more. Renewable fillers and recycling of fillers are covered as well. Provides up-to-date, applicable information on the use of functional fillers Focuses on chemical modifications, enhanced density, particle size, mixtures of fillers, special properties, and fillers from renewable sources Covers both classical and new generation fillers




Bioprotopia


Book Description

Designing with living materials: thoughts on the paradigm shift and an overview of the state of research What is “Bioprotopia”? It is a vision of a world with buildings that grow, self-heal and create virtuous cycles where waste from one process feeds another. A vision where the spaces that we inhabit are attuned to both the human occupants and non-human microbial ecologies. This is the first book to ground the concept of biotechnology in the built environment in tangible, large-scale prototypes. With rich visuals, it presents materials and processes that bring to life the many possibilities of shaping the built environment with micro-organisms. In addition to considering scientific and technical challenges, the book also discusses the need for a shift in thinking and culture to realise this vision. First comprehensive publication on the state of research Demonstrates the use of renewable materials in design Illustrative, scientific documentation for design professions and researchers




Sustainable Concrete Materials and Structures


Book Description

Sustainable Concrete Materials and Structures focuses on recent research progress and innovations in this important field of research. All aspects of the technical routes to sustainable concrete and structures are discussed in detail. These include recent findings on sustainable concrete production and structural design and construction. Low-carbon cement, sustainable concrete mix design, durability, and structural applications are discussed in detail. Emphasis is placed on how to bring some of the innovations in concrete technology closer to market. Information on techno-economic analysis, economy of scale, and the supply chain of sustainable concrete is also addressed. The book will be an essential reference resource for academic and industrial researchers working in civil engineering, material science, chemical engineering, and the development and manufacture of construction materials. Provides a comprehensive collection of technical reviews on the latest advancements in sustainable concrete materials and structures Presents state-of-the-art research on preparation, production, processing, and implementation techniques for sustainable concrete materials and structures Features techno-economic analysis for each technology discussed Covers lifecycle assessment, the Circular Economy and end of life of concrete structures Includes industry case studies on implementation




Mechanical Properties of Fly Ash, RHA and Quarry Dust Addition in Conventional Concrete for Sustainable Construction


Book Description

A comprehensive effort is made to partially replace the natural river sand with stone quarry dust, cement with fly ash and rice husk ash as an alternative in combination with mineral admixture for concrete ingredients which shall lead to sustainable development and lowest possible environmental impact and also reduction in the cost of construction. The paper evaluates different contents of Quarry dust, Fly ash and Rice husk (QFR) added to concrete which influence its workable and strength properties. Experiments were conducted to study the effects of QFR of cement and sand with various percentages. M20 grade concrete was compared with and without QFR and the physical and chemical properties of concrete with addition of QFR were studied. The experiments were carried out to determine the properties of concrete with added QFR. The results were compared with control sample and the viability of adding QFR to concrete was verified. The results showed that concrete incorporating QFR had increased the compressive strength at various stages compared with that of the control concrete.