Articles liés à Eco-Efficient Concrete

Eco-Efficient Concrete - Couverture rigide

 
9780857094247: Eco-Efficient Concrete

Synopsis

Eco-efficient concrete is a comprehensive guide to the characteristics and environmental performance of key concrete types. Part one discusses the eco-efficiency and life cycle assessment of Portland cement concrete, before part two goes on to consider concrete with supplementary cementitious materials (SCMs). Concrete with non-reactive wastes is the focus of part three, including municipal solid waste incinerator (MSWI) concrete, and concrete with polymeric, construction and demolition wastes (CDW). An eco-efficient approach to concrete carbonation is also reviewed, followed by an investigation in part four of future alternative binders and the use of nano and biotech in concrete production.

Key Features: the first part of the book examines the eco-efficiency and life cycle assessment of Portland cement concrete; chapters in the second part of the book consider concrete with supplementary cementitious materials, including properties and performance; reviews the eco-efficient approach to concrete carbonation.

Contents: Part 1 Eco-efficiency of Portland cement concrete: Environmental impact of Portland cement production; Low binder intensity eco-efficient concretes; Life cycle assessment (LCA) aspects of concrete. Part 2 Concrete with supplementary cementitious materials (SCMs): Natural pozzolans in eco-efficient concrete; Artificial pozzolans in eco-efficient concrete; Tests to evaluate pozzolanic activity in eco-efficient concrete; Properties of concrete with high volume pozzolans; Influence of supplementary cementitious materials (SCMs) on concrete durability; Performance of self- compacting concrete (SCC) with high volume SCMs; High volume ground granulated blast furnace slag (GGBFS) concrete; Recycled glass concrete. Part 3 Concrete with non-reactive wastes: Municipal solid waste incinerator (MSWI) concrete; Concrete with polymeric wastes; Concrete with construction and demolition wastes (CDW); An eco-efficient approach to concrete carbonation; Concrete with polymers. Part 4 Future alternative binders and use of nano and biotech: Alkali-activated based concrete; Sulfoaluminate cement; Reactive magnesia cement; Nanotechnology for eco-efficient concrete; Biotechconcrete: An innovative approach for concrete with enhanced durability.

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À propos de l'auteur

Fernando Pacheco-Torgal is an investigator in the C-TAC Research Centre at the University of Minho, Portugal, and is the author or co-author of almost 200 publications. Said Jalali is former Professor of Civil Engineering at the University of Minho, Portugal, and is an acknowledged expert on building materials. Joao Labrincha is Associate Professor in the Materials and Ceramics Engineering Department of the University of Aveiro, Portugal, and member of the CICECO research unit. He has registered 22 patent applications, and has published over 160 journal papers. Vanderley M John is Associate Professor in the Department of Construction Engineering at the Polytechnic School of the University of Sao Paulo, Brazil.

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