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Calcined Clays for Sustainable Concrete

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Cover of 'Calcined Clays for Sustainable Concrete'

Table of Contents

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    Book Overview
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    Chapter 1 Calcined Clay-Cement Stabilisation – Physicochemical Attributes and Stabilised Strengths of a-1-a and a-2-6 Soils
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    Chapter 2 Sulfate Resistance of Cement Mortar Containing Metakaolin
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    Chapter 3 Use of R3 Rapid Screening Test to Determine Reactivity and Chloride Binding Potential of Locally Available Kaolinite Clay
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    Chapter 4 Assessment of Cuban Kaolinitic Clays as Source of Supplementary Cementitious Materials to Production of Cement Based on Clinker – Calcined Clay – Limestone
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    Chapter 5 Proposal of a Methodology for the Preliminary Assessment of Kaolinitic Clay Deposits as a Source of SCMs
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    Chapter 6 Hydration Study of Limestone Calcined Clay Cement (LC3) Using Various Grades of Calcined Kaolinitic Clays
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    Chapter 7 Reaction Degree of Metakaolin in Limestone Calcined Clay Cement (LC3)
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    Chapter 8 Durability of Steam Cured Pozzolanic Mortars at Atmospheric Pressure
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    Chapter 9 Use of Low-Carbon Cement in the Preparation of Masonry Mortars for Building Restoration
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    Chapter 10 Quantification of Pore Size Distribution Modification Due to Metakaolin Inclusion in Cement Based Systems
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    Chapter 11 Limestone Calcined Clay Cement: The Experience in India This Far
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    Chapter 12 Pilot Scale Production of Limestone Calcined Clay Cement
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    Chapter 13 The Special Case of North-Eastern India for the Production of LC3
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    Chapter 14 Comparative Study of Compressive Creep Behavior of Concrete with Metakaolin or Silica Fume
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    Chapter 15 Effect of Carbonate Minerals and Calcination of Carbonatites and Kamafugites on Their Pozzolanic Performance and Early Age Concrete Properties
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    Chapter 16 Assessment of the Pozzolanic Reactivity of Calcined Kaolinitic Clays by a Rapid Alkaline Solubility Test
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    Chapter 17 Sustainability of Cuban Construction Supply Chain by Means of LC3 Cement: Case Studies in Villa Clara Province
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    Chapter 18 Degradation of Calcined Clay-Limestone Cementitious Composites Under Sulfate Attack
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    Chapter 19 Sulfate and Alkali-Silica Performance of Blended Cements Containing Illitic Calcined Clays
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    Chapter 20 Use of Ceramic Waste as a Pozzolanic Addition on Cement
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    Chapter 21 Development of the Microstructure in LC3 Systems and Its Effect on Concrete Properties
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    Chapter 22 Carbonation of Concrete with Low Carbon Cement LC3 Exposed to Different Environmental Conditions
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    Chapter 23 Evaluation of Compressive Strength and Microstructure of Cement Pastes Containing Different Qualities of Metakaolin
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    Chapter 24 Influence of Initial Water Curing on Strength and Microstructure Development of Blended Cements
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    Chapter 25 Initial Performance Evaluation of Calcined Clay Based Ternary Blended Cement Under Various Climatic Conditions in India
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    Chapter 26 Alkali Silica Reaction and Sulfate Attack: Expansion of Limestone Calcined Clay Cement
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    Chapter 27 The Effect of Limestone on the Performance of Ternary Blended Cement LC3: Limestone, Calcined Clays and Cement
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    Chapter 28 Influence of Clay Type on Performance of Calcined Clay – Limestone Portland Cements
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    Chapter 29 Metakaolin-Based Geopolymers for Nuclear Waste Encapsulation
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    Chapter 30 The Influence of Recycled Concrete and Clay Brick Particles on the Strength and Porosity of Cement-Based Pastes
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    Chapter 31 The Effect of Kaolinite Content of China Clay on the Reactivity of Limestone Calcined Clay Cement
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    Chapter 32 The Effect of Alkali on the Properties of Limestone Calcined Clay Cement (LC3)
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    Chapter 33 On the Reactivity of Calcined Clays from Lower Lusatia for the Production of Durable Concrete Structures
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    Chapter 34 Compressive Strength Improvements of Cement-Based Composites Achieved with Additional Milling of Metakaolin
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    Chapter 35 Properties of the Cement-Based Composites with High Content of Metakaolin
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    Chapter 36 Calcined Clays – Performance as Composite Material
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    Chapter 37 Structural Ordering of Aged and Hydrothermally Cured Metakaolin Based Potassium Geopolymers
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    Chapter 38 Carbonation of Limestone Calcined Clay Cement Concrete
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    Chapter 39 Grinding of Calcined Clays and Its Effects on Cement Properties
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    Chapter 40 Hydration and Mechanical Properties of Limestone Calcined Clay Cement Produced with Marble Dust
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    Chapter 41 Performance-Based Design Procedure Applied to the Selection of Low-CO2 Binder Systems Including Calcined Clay
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    Chapter 42 Thermal Processing of Calcined Clay
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    Chapter 43 Thermal Transformation of Illitic-Chlorite Clay and Its Pozzolanic Activity
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    Chapter 44 In-situ Observation of Dissolution Behavior of Carbonatite in Water Glass Solution
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    Chapter 45 Analysis of the Mixing Performance Containing the LC3 as Agglomerant with Different Types of Calcined Clay
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    Chapter 46 Evaluation of Calcined Clays from Boyaca-Colombia Containing Alunite as Supplementary Cementitious Materials
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    Chapter 47 Improvement of the Environmental Energy Sustainability in the Production of Cement Portland with Addition of Thermally Activated Clays
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    Chapter 48 Resource Mapping of China Clay for LC3 Application in India
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    Chapter 49 Chloride Transport Behavior of LC3 Binders
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    Chapter 50 Blended Cements with Calcined Illitic Clay: Workability and Hydration
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    Chapter 51 Low Carbon Cement LC3 in Cuba: Ways to Achieve a Sustainable Growth of Cement Production in Emerging Economies
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    Chapter 52 Studies on the Influence of Limestone-Calcined Clay Blend on the Hydration of Cement
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    Chapter 53 Thermal Resistivity of Chemically Activated Calcined Clays-Based Cements
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    Chapter 54 Promising Early Age Evaluations of Fly Ash - Calcined Marl - OPC Ternary Cement
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    Chapter 55 Applicability of Lime Reactivity Strength Potential Test for the Reactivity Study of Limestone Calcined Clay Cement
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    Chapter 56 Limestone and Calcined Clay Blended Cement Used as Low-Cost Binder to Reduce Heat Production and Potential for Delayed Ettringite Formation
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    Chapter 57 Hydrate Phase Assemblages in Calcium Sulfoaluminate – Metakaolin – Limestone Blends
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    Chapter 58 Influence Grinding Procedure, Limestone Content and PSD of Components on Properties of Clinker-Calcined Clay-Limestone Cements Produced by Intergrinding
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    Chapter 59 Durability of Concretes Made with Calcined Clay Composite Cements
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    Chapter 60 Alkali-Activation of Calcined Clays – Past, Present and Future
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    Chapter 61 Influence of a Calcined Clay and the Temperature on the Hydration of an Oilwell Cement
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    Chapter 62 Influence of the Kind of Mineral Addition and the Seawater on the Hydration of a Portland Cement
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    Chapter 63 Standardization Strategy of Low Carbon Cement in Cuba. Case Study for “Siguaney” Cement Factory
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    Chapter 64 Antibacterial Metakaolin-Based Geopolymer Cement
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    Chapter 65 Identification of Reactive Sites in Calcined Kaolinite and Montmorillonite from a Combination of Chemical Methods and Solid-State NMR Spectroscopy
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    Chapter 66 The Decay of the Historical Site of Malecon in Havana, Cuba: Salt Crystallization Damage at Repair Interfaces
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    Chapter 67 Introducing Low Carbon Cement in Cuba - A Life Cycle Sustainability Assessment Study
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    Chapter 68 Sulphate Optimization of Binders with Calcined Clay Using Isothermal Calorimetry
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    Chapter 69 Reaction Kinetics of Basic Clay Components Present in Natural Mixed Clays
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    Chapter 70 Colloid-Chemical Investigation of the Interaction Between PCE Superplasticizers and a Calcined Mixed Layer Clay
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    Chapter 71 Prediction of Carbonation Depth in Blended Systems
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    Chapter 72 Autogenous Shrinkage and Creep of Limestone and Calcined Clay Based Binders
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    Chapter 73 Hydration of Blended Cement with Halloysite Calcined Clay
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    Chapter 74 Progress of Limestone Calcined Clay Cement in China
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    Chapter 75 Thermal Activation of Two Complex Clays (Kaolinite-Pyrophillite-Illite) from Tandilia System, Buenos Aires, Argentina
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    Chapter 76 Assessment of Calcined Clays According to the Main Criterions of Concrete Durability
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    Chapter 77 Application of Industrially Produced LC3 to Pavements, AAC Blocks and Other Products
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    Chapter 78 Machine Learning Approaches to Admixture Design for Clay-Based Cements
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    Chapter 79 Micro-Chemo-Mechanical Characterization of a Limestone-Calcinated-Clay Cement Paste by Statistical Nanoindentation and Quantitative SEM-EDS
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    Chapter 80 Addressing Key Challenges in MK-PLC Blends at Early Ages: Workability, Slump Retention, and Heat of Hydration
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    Chapter 81 Assessing the Effect of Calcite Impurities in Clay on Optimal Dehydroxylation Parameters for Enhanced Reactivity
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    Chapter 82 Reactivity and Performance of Limestone Calcined-Clay Cement (LC3) Cured at Low Temperature
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Title
Calcined Clays for Sustainable Concrete
Published by
Springer Netherlands, January 2018
DOI 10.1007/978-94-024-1207-9
ISBNs
978-9-40-241207-9, 978-9-40-241206-2
Editors

Fernando Martirena, Aurélie Favier, Karen Scrivener

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 187 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 187 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 20 11%
Student > Ph. D. Student 19 10%
Student > Bachelor 9 5%
Researcher 6 3%
Student > Doctoral Student 5 3%
Other 12 6%
Unknown 116 62%
Readers by discipline Count As %
Engineering 44 24%
Materials Science 15 8%
Design 2 1%
Chemistry 2 1%
Agricultural and Biological Sciences 1 <1%
Other 4 2%
Unknown 119 64%