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181128s2019 enk o 000 0 eng d |
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|e pn
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|d UKMGB
|d OCLCF
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|d OPELS
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|a GBB8I9947
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|a 019086985
|2 Uk
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|a 9780081026427
|q (electronic bk.)
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|a 0081026420
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|a 9780081026410
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|a 0081026412
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|a (OCoLC)1076485519
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|a T174.7
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|a TEC
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|a 620.5
|2 23
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|a Nanotechnology in Eco-efficient Construction :
|b Materials, Processes and Applications /
|c edited by F. Pacheco-Torgal [and 5 others].
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250 |
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|a Second edition.
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264 |
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|a United Kingdom :
|b Elsevier Ltd. :
|b Woodhead Publishing,
|c 2019.
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300 |
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|a 1 online resource
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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|a Woodhead Publishing series in civil and structural engineering
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|a Online resource; title from PDF title page (EBSCO, viewed November 29, 2018).
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|a Front Cover; Nanotechnology in Eco-efficient Construction; Nanotechnology in Eco-efficient Construction: Materials, Processes and Applications; Copyright; Contents; List of contributors; 1 -- Introduction to nanotechnology in eco-efficient construction; 1.1 Recent nanotechnology advancements and limitations; 1.2 Nanotech-based materials for eco-efficient construction; 1.3 Outline of the Book; References; One -- Mortars and concrete related applications; 2 -- Influence of nanoparticles on the strength of ultra-high performance concrete; 2.1 Introduction
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|a 2.2 Types of nanomaterials in cement-based composites2.3 Role of nanoparticles in ultra-high performance concrete (UHPC); 2.4 UHPC curing regimes; 2.4.1 Curing in water; 2.4.2 Steam-curing regime; 2.4.3 Autoclaving; 2.5 Strength of UHPC; 2.5.1 Compressive strength; 2.5.2 Flexural strength; 2.5.3 Tensile splitting strength; 2.6 Production problems and recommendations for practical application; Acknowledgments; References; 3 -- The effect of nanoparticles on the self-healing capacity of high performance concrete; 3.1 Introduction
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|a 3.2 Self-healing systems based on nanoparticles used in cementitious materials3.2.1 Nonencapsulated self-healing systems; 3.2.2 Encapsulated self-healing systems; 3.3 Influence of self-healing systems in the characteristics of HPC; 3.3.1 Modifications in the microstructural properties; 3.3.2 Modifications in the physico-mechanical performance; 3.3.3 Modifications in the self-healing capacity; 3.4 Durability of self-healing HPC under aggressive environments; 3.5 Future trends; References; 4 -- The impact of graphene oxide on cementitious composites; 4.1 Introduction; 4.2 Graphene materials
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|a 4.3 Graphene oxide4.3.1 GO synthesis; 4.3.2 Structure of GO; 4.3.3 Hygroscopic nature of GO; 4.4 Effects of GO incorporation into cementitious composites; 4.4.1 Effects on mechanical properties; 4.4.2 The influence of GO on durability; 4.5 Some structural applications of GO/cement composites in repairing of reinforced concrete; 4.6 Summary of the chapter; Acknowledgment; References; 5 -- Application of nanomaterials in alkali-activated materials; 5.1 Introduction; 5.2 Nanotechnology in alkali-activated materials; 5.3 Effects of nanosilica on alkali-activated materials
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|a 5.4 Effect of nanoclay on alkali-activated materials5.5 Effect of nano-TiO2 on alkali-activated materials; 5.6 Effects of carbon nanotube on alkali-activated materials; 5.7 Conclusions and recommendations; References; 6 -- Effects of nanofibers on properties of geopolymer composites; 6.1 Introduction; 6.2 Design of experiments approach; 6.2.1 Main effects; 6.2.2 Interaction effects; 6.3 Experimental; 6.3.1 Materials of the investigation; 6.3.2 Sample preparation technique; 6.3.2.1 Mixing of nanomaterials; 6.3.2.2 Processing and curing of nanoreinforced sample; 6.3.3 Factorial design
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|a Covering the latest technologies, Nanotechnology in eco-efficient construction provides an authoritative guide to the role of nanotechnology in the development of eco-efficient construction materials and sustainable construction. The book contains a special focus on applications concerning concrete and cement, as nanotechnology is driving significant development in concrete technologies. The new edition has 14 new chapters, including 3 new parts: Mortars and concrete related applications; Applications for pavements and other structural materials; and Toxicity, safety handling and environmental impacts. Civil engineers requiring an understanding of eco-efficient construction materials, as well as researchers and architects within any field of nanotechnology, eco-efficient materials or the construction industry will find this updated reference to be highly valuable.
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650 |
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|a Nanotechnology.
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650 |
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0 |
|a Nanotechnology
|x Environmental aspects.
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650 |
|
0 |
|a Nanotechnology
|x Industrial applications.
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650 |
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0 |
|a Construction industry.
|
650 |
|
0 |
|a Construction industry
|x Environmental aspects.
|
650 |
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6 |
|a Construction
|x Industrie.
|0 (CaQQLa)201-0038817
|
650 |
|
7 |
|a TECHNOLOGY & ENGINEERING
|x Engineering (General)
|2 bisacsh
|
650 |
|
7 |
|a TECHNOLOGY & ENGINEERING
|x Reference.
|2 bisacsh
|
650 |
|
7 |
|a Construction industry.
|2 fast
|0 (OCoLC)fst00875964
|
650 |
|
7 |
|a Construction industry
|x Environmental aspects.
|2 fast
|0 (OCoLC)fst00876021
|
650 |
|
7 |
|a Nanotechnology.
|2 fast
|0 (OCoLC)fst01032639
|
650 |
|
7 |
|a Nanotechnology
|x Industrial applications.
|2 fast
|0 (OCoLC)fst01983734
|
650 |
|
7 |
|0 (FrPBN)12304410
|a Nanotechnologie
|0 (FrPBN)11975935
|x Applications industrielles.
|2 ram
|
650 |
|
7 |
|0 (FrPBN)11931778
|a Construction
|x Industrie
|0 (FrPBN)11959574
|x Aspect environnemental.
|2 ram
|
700 |
1 |
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|a Torgal, Fernando Pacheco,
|e editor.
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700 |
1 |
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|a Diamanti, Maria Vittoria.
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700 |
1 |
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|a Nazari, Ali.
|
700 |
1 |
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|a Goran-Granqvist, Claes.
|
700 |
1 |
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|a Pruna, Alina.
|
700 |
1 |
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|a Amirkhanian, Serji.
|
776 |
0 |
8 |
|i Print version:
|z 9780081026410
|
830 |
|
0 |
|a Woodhead Publishing series in civil and structural engineering.
|
856 |
4 |
0 |
|u https://sciencedirect.uam.elogim.com/science/book/9780081026410
|z Texto completo
|