Green Materials in Civil Engineering: Woodhead Publishing Series in Civil and Structural Engineering
Editat de Anasua GuhaRay, Toshiro Hata, Nagesh R. Iyer, Pijush Samui, Sanjay Kumaren Limba Engleză Paperback – 12 feb 2024
The book will be a valuable reference resource for academic and industrial researchers, materials scientists, and civil engineers who are working in the development of construction materials, utilization of waste, and other fine by-products in the production of concrete and other construction materials.
- Provides an up-to-date and comprehensive resource on the use of green materials in civil engineering
- Covers green concrete, agricultural waste, industrial by-products, biological and waste materials such as smart materials, microbially generated calcium precipitation, recycled asphalt and natural fibers
- Discusses selection criteria, durability, lifecycle, recyclability, and regulatory measures
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Specificații
ISBN-13: 9780443191060
ISBN-10: 0443191069
Pagini: 332
Dimensiuni: 152 x 229 x 20 mm
Greutate: 0.45 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
ISBN-10: 0443191069
Pagini: 332
Dimensiuni: 152 x 229 x 20 mm
Greutate: 0.45 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Civil and Structural Engineering
Cuprins
1 A model to predict water retention characteristic curve of fly ash
2 Experimental study of the parameter for predicting the strength of geopolymer concretes based on ground granulated blast furnace slag and fly ash
3 Mitigating the environmental impacts of conventional concrete—a quantitative sustainable concrete approach
4 Consistency, setting, and strength properties of fly ash and slag based geopolymer mortar activated with water
5 Developing flyash and slagbased high-strength geopolymer concrete
6 Interfacial direct shear behavior of aluminum slag and uniaxial
geogrids
7 Fly ash-granulated blast furnace slag: better replacement
materials for subbase flexible pavement construction
8 High performance concrete using fly ash
9 Engineering green concrete for sustainable infrastructure
10 Behavior assessment of poor subgrade soil using natural coir geotextile under static and repeated load condition
11 Utilization of higher percentage of reclaimed asphalt pavement material in bituminous mixtures
12 Mineral wastes
13 Morphology and strength of concrete incorporating natural rubber latex and plastic fibers
14 Fiber-reinforced polymer nanocomposites for structural retrofitting applications
15 Biological materials for geotechnical engineering
16 A review on microstructural characteristics of bacterial concrete
17 Geoenvironmental evaluation on coal gangue: greener alternative to existing fill materials
18 Utilization of Sustainable Material: Ferrock for Stabilization of Subgrade Soil
2 Experimental study of the parameter for predicting the strength of geopolymer concretes based on ground granulated blast furnace slag and fly ash
3 Mitigating the environmental impacts of conventional concrete—a quantitative sustainable concrete approach
4 Consistency, setting, and strength properties of fly ash and slag based geopolymer mortar activated with water
5 Developing flyash and slagbased high-strength geopolymer concrete
6 Interfacial direct shear behavior of aluminum slag and uniaxial
geogrids
7 Fly ash-granulated blast furnace slag: better replacement
materials for subbase flexible pavement construction
8 High performance concrete using fly ash
9 Engineering green concrete for sustainable infrastructure
10 Behavior assessment of poor subgrade soil using natural coir geotextile under static and repeated load condition
11 Utilization of higher percentage of reclaimed asphalt pavement material in bituminous mixtures
12 Mineral wastes
13 Morphology and strength of concrete incorporating natural rubber latex and plastic fibers
14 Fiber-reinforced polymer nanocomposites for structural retrofitting applications
15 Biological materials for geotechnical engineering
16 A review on microstructural characteristics of bacterial concrete
17 Geoenvironmental evaluation on coal gangue: greener alternative to existing fill materials
18 Utilization of Sustainable Material: Ferrock for Stabilization of Subgrade Soil