Sustainable Concrete Materials and Structures: Woodhead Publishing Series in Civil and Structural Engineering
Editat de Ashraf Ashour, Xinyue Wang, Baoguo Hanen Limba Engleză Paperback – 5 iun 2024
- 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
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Specificații
ISBN-13: 9780443156724
ISBN-10: 0443156727
Pagini: 748
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
ISBN-10: 0443156727
Pagini: 748
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
Cuprins
1 Introduction
2 Cement and innovative sustainable binders
3 Sustainable concrete containing supplementary cementitious materials
4 Mechanical and durability properties of sustainable geopolymer concrete
5 Sustainable alkali-activated construction materials from construction and demolition waste
6 Recycled materials used for sustainable pervious concrete
7 Sustainable recycled aggregate concrete materials and structures
8 Crumb rubber in sustainable self-compacting concrete
9 Sustainable cementitious composites with recycled aggregates and fibers
10 Sustainable fiber-reinforced geopolymer composites
11 Sustainable additive manufacturing of concrete with low-carbon materials
12 Sustainable three-dimensional printing concrete: advances, challenges, and future direction
13 Emerging resources for the development of low-carbon cementitious composites for three-dimensional printing applications
14 Sustainable 3D printed concrete structures using high-quality raw materials
15 Sustainable seawater sea-sand concrete materials and structures
16 Sustainable ultra-high-performance concrete materials and structures
17 Sustainable nano concrete materials and structures
18 Sustainable thermal energy storage concrete incorporated with phase change materials
19 Smart sustainable concrete materials and structures
20 Detachable connections for future reuse of structural concrete elements
21 Integration of new technology with sustainable concrete materials and structures
22 CO2 capture and storage for sustainable concrete production
23 Conclusions and recommendations
2 Cement and innovative sustainable binders
3 Sustainable concrete containing supplementary cementitious materials
4 Mechanical and durability properties of sustainable geopolymer concrete
5 Sustainable alkali-activated construction materials from construction and demolition waste
6 Recycled materials used for sustainable pervious concrete
7 Sustainable recycled aggregate concrete materials and structures
8 Crumb rubber in sustainable self-compacting concrete
9 Sustainable cementitious composites with recycled aggregates and fibers
10 Sustainable fiber-reinforced geopolymer composites
11 Sustainable additive manufacturing of concrete with low-carbon materials
12 Sustainable three-dimensional printing concrete: advances, challenges, and future direction
13 Emerging resources for the development of low-carbon cementitious composites for three-dimensional printing applications
14 Sustainable 3D printed concrete structures using high-quality raw materials
15 Sustainable seawater sea-sand concrete materials and structures
16 Sustainable ultra-high-performance concrete materials and structures
17 Sustainable nano concrete materials and structures
18 Sustainable thermal energy storage concrete incorporated with phase change materials
19 Smart sustainable concrete materials and structures
20 Detachable connections for future reuse of structural concrete elements
21 Integration of new technology with sustainable concrete materials and structures
22 CO2 capture and storage for sustainable concrete production
23 Conclusions and recommendations