Carte Carbon Dioxide Sequestration in Cementitious Construction Materials F Pacheco Torgal

Carbon Dioxide Sequestration in Cementitious Construction Materials

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1 414.07 lei
Carbon Dioxide Sequestration in Cementitious Construction Materials – Second Edition follows on the...

Informații despre carte

Limbă
engleză
Legare
Carte - Carte broșată
Publicat
2024
Pagini
426
EAN
9780443135774
ISBN
0443135770
Enbook ID
44312159
Greutate
684
Dimensiuni
151 x 229

Descriere completă

Carbon Dioxide Sequestration in Cementitious Construction Materials – Second Edition follows on the success of the previous edition and provides an up-to-date review on recent research developments on cementitious construction materials based on carbon dioxide storage. Along with the addition of an entire new section on bio- sequestration. Brand new chapters are included on carbonation methods such as carbon sequestration of cement pastes during pressurized CO2 curing; carbon dioxide sequestration of low-calcium fly ash via direct aqueous carbonation; increasing the efficiency of carbon dioxide sequestration through high temperature carbonation; and carbon sequestration in engineered cementitious composites. There are also several new case studies on sequestration of industrial wastes, which include carbon dioxide sequestration by direct mineralization of fly ash; the effect of direct carbonation routes of basic oxygen furnace slag on strength and hydration of blended cement paste; carbon sequestration of mine waste and utilization as a supplementary cementitious material and carbon dioxide sequestration on masonry blocks based on industrial wastes. This updated edition will be a valuable reference resource for academic researchers, materials scientists and civil engineers, and other construction professionals looking for viable routes for carbon sequestration in building materials. Promotes the importance of CO2?storage in carbonation of construction materials, especially reincorporation of CO2?during fabricationDiscusses a wide range of cementitious materials with CO2?storage capabilitiesFeatures redesign of cementation mechanisms to utilize CO2?during fabricationCovers biosequestration

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