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Calcined Clays for Sustainable Concrete

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Cover of 'Calcined Clays for Sustainable Concrete'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 The Experience of Cuba TRC on the Survey of Kaolinitic Clay Deposits as Source of SCMs—Main Outcomes and Learned Lessons
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    Chapter 2 Potential of Selected South African Kaolinite Clays for Clinker Replacement in Concrete
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    Chapter 3 Potential for Selected Kenyan Clay in Production of Limestone Calcined Clay Cement
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    Chapter 4 Feasibility Study for Calcined Clay Use in the Southeast USA
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    Chapter 5 An Approach for the Evaluation of Local Raw Material Potential for Calcined Clay as SCM, Based on Geological and Mineralogical Data: Examples from German Clay Deposits
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    Chapter 6 Clay Deposits from the Northeastern of Cuba: Characterization, Evaluation, and Use as a Source of Supplementary Cementitious Materials
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    Chapter 7 Potential of Marine Clay for Cement Replacement and Pozzolanic Additive in Concrete
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    Chapter 8 Evaluation of Ceramic Waste from Goa as SCM
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    Chapter 9 Potential of Calcined Recycling Kaolin from Silica Sand Processing as Supplementary Cementitious Material
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    Chapter 10 Comparison of Brick Clays and a Kaolinitic Clay Regarding Calcination and Performance in Blended Cement Mortars
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    Chapter 11 Utilization of Clay Brick Waste Powder for Partial Replacement with Cement in Cement Mortar
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    Chapter 12 Qualifying of Low Grade Clay for Geopolymer Mortar: A Preliminary Assessment
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    Chapter 13 Alkaline Activation of Blended Cements with Calcined Illitic Clay Using Glass Powder Wastes
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    Chapter 14 Why Low-Grade Calcined Clays Are the Ideal for the Production of Limestone Calcined Clay Cement (LC 3 )
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    Chapter 15 The Effect of Calcite in the Raw Clay on the Pozzolanic Activity of Calcined Illite and Smectite
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    Chapter 16 Activated Calcined Clays as Cement Main Constituent
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    Chapter 17 Simple and Reliable Quantification of Kaolinite in Clay Using an Oven and a Balance
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    Chapter 18 Improving the Behaviour of Calcined Clay as Supplementary Cementitious Materials by a Combination of Controlled Grinding and Particle Selection
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    Chapter 19 Calcined Clay: Process Impact on the Reactivity and Color
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    Chapter 20 A Flexible Technology to Produce Gray Calcined Clays
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    Chapter 21 Research and Design of Suspension Calcining Technology and Equipment for Kaolin
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    Chapter 22 Elements for the Design of Experimental Plant for LC 3 Cement Production
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    Chapter 23 Effectiveness of Amphoteric PCE Superplasticizers in Calcined Clay Blended Cements
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    Chapter 24 Effect of Clay Mineralogy, Particle Size, and Chemical Admixtures on the Rheological Properties of CCIL and CCI/II Systems
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    Chapter 25 On the Workability of Mortar and Concrete Mixtures Containing Calcined Clay Blends
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    Chapter 26 Studying the Rheological Behavior of Limestone Calcined Clay Cement (LC 3 ) Mixtures in the Context of Extrusion-Based 3D-Printing
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    Chapter 27 Rheological Properties of Self-Compacting Lightweight Concrete with Metakaolin
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    Chapter 28 Comparing the Ecoefficiency of Cements Containing Calcined Clay and Limestone Filler
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    Chapter 29 Study of Concrete Made of Limestone Calcined Clay Cements (LC 3 )
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    Chapter 30 Impacts Assessment of Local and Industrial LC3 in Cuban Context: Challenges and Opportunities
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    Chapter 31 Service Life Modeling in Propagation Phase of Corrosion in Concrete Due to Carbonation
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    Chapter 32 Life Cycle Assessment of LC3: Parameters and Prognoses
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    Chapter 33 Effect of Temperature on the Hydration of White Portland Cement–Metakaolin Blends Studied by 29 Si and 27 Al MAS NMR
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    Chapter 34 The Effect of Curing Temperature on the Properties of Limestone Calcined Clay Cement (LC 3 )
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    Chapter 35 The Influence of Temperature Regime on Performance of Low Clinker Blended Cements
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    Chapter 36 The Origin of the Increased Sulfate Demand of Blended Cements Incorporating Aluminum-Rich Supplementary Cementitious Materials
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    Chapter 37 Influence of Calcium Sulphate on Hydration of Cements Containing Calcined Clay
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    Chapter 38 Sulfate Optimization for CCIL Blended Systems
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    Chapter 39 Influence of Kaolinite Content, Limestone Particle Size and Mixture Design on Early-Age Properties of Limestone Calcined Clay Cements (LC 3 )
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    Chapter 40 Evaluation of Age Strengths of Metakaolin Blend Pastes with Varying Fineness of Grind
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    Chapter 41 The Effect of Composition of Calcined Clays and Fly Ash on Their Dissolution Behavior in Alkaline Medium and Compressive Strength of Mortars
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    Chapter 42 The Effect of Calcite and Gibbsite Impurities in Calcined Clay on Its Reactivity
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    Chapter 43 High Performance Illitic Clay-Based Geopolymer: Influence of the Mechanochemical Activation Duration on the Strength Development
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    Chapter 44 Performance and Properties of Alkali-Activated Blend of Calcined Laterite and Waste Marble Powder
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    Chapter 45 Identification and Activation of Coal Gangue and Performance of Limestone Calcined Gangue Cement
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    Chapter 46 Activation of Early Age Strength in Fly Ash Blended Cement by Adding Limestone Calcined Clay (LC 2 ) Pozzolan
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    Chapter 47 Density of C-A-S-H in Plain Cement and Limestone Calcined Clay Cement (LC 3 )
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    Chapter 48 Microstructural Modelling of the Microstructural Development of Limestone Calcined Clay Cement
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    Chapter 49 Hydration of Tricalcium Silicate Blended with Calcined Clay
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    Chapter 50 Weibull Probabilistic Analyses on Tensile Strength of Limestone Calcined Clay (LC 3 ) and Portland Cement Pastes
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    Chapter 51 Quantifications of Cements Composed of OPC, Calcined Clay, Pozzolanes and Limestone
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    Chapter 52 Investigation on Limestone Calcined Clay Cement System
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    Chapter 53 Heat Generation and Thermal Properties of Limestone Calcined Clay Cement Paste
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    Chapter 54 Study on the Efficacy of Natural Pozzolans in Cement Mortar
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    Chapter 55 Comparison of Strength Activity of Limestone-Calcined Clay and Class F Fly Ash
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    Chapter 56 Limestone Calcined Clay as Potential Supplementary Cementitious Material—An Experimental Study
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    Chapter 57 Sustainable PVA Fiber-Reinforced Strain-Hardening Cementitious Composites (SHCC) with Ultrahigh-Volume Limestone Calcined Clay
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    Chapter 58 Using Limestone Calcined Clay to Improve Tensile Performance and Greenness of High-Tensile Strength Strain-Hardening Cementitious Composites (SHCC)
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    Chapter 59 Basic Creep of LC 3 Paste: Links Between Properties and Microstructure
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    Chapter 60 Study on Fresh and Harden Properties of Limestone Calcined Clay Cement (LC 3 ) Production by Marble Stone Powder
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    Chapter 61 Performance and Durability of High Volume Fly Ash Cementitious System Incorporating Silica Nanoparticles
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    Chapter 62 Monitoring Strength Development of Cement Substituted by Limestone Calcined Clay Using Different Piezo Configurations
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    Chapter 63 Bond Behavior Between Limestone Calcined Clay Cement (LC 3 ) Concrete and Steel Rebar
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    Chapter 64 Evaluating the Hydration of Cement Mortar Blended with Calcined Clay Using Piezoelectric-Based Sensing Technique
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    Chapter 65 Perspectives on Durability of Blended Systems with Calcined Clay and Limestone
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    Chapter 66 Tortuosity as a Key Parameter of Chloride Diffusion in LC 3 Systems
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    Chapter 67 Chloride Resistance of Cementitious Materials Containing Calcined Clay and Limestone Powder
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    Chapter 68 Chloride-Induced Corrosion Resistance of Steel Embedded in Limestone Calcined Clay Cement Systems
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    Chapter 69 Influence of Carbonation on Mechanical and Transport Properties of Limestone Calcined Clay Blend Mortar Mix
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    Chapter 70 Durability of Concrete Containing Calcined Clays: Comparison of Illite and Low-Grade Kaolin
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    Chapter 71 Assessment of the Efficacy of Waterproofing Admixtures Using Calcined Clay and SCMs
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    Chapter 72 Corrosion Properties of Self-Compacting Lightweight Concrete Using Metakaolin
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    Chapter 73 Performance of Blended Cements with Limestone Filler and Illitic Calcined Clay Immediately Exposed to Sulfate Environment
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    Chapter 74 Mitigation of Alkali–Silica Reaction in Limestone Calcined Clay Cement-Based Mortar
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    Chapter 75 Hydration and Durability of Ternary Binders Based on Metakaolin and Limestone Filler
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    Chapter 76 Calcined Clay—Limestone Cements: Hydration and Mechanical Properties of Ternary Blends
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    Chapter 77 Assessment of Sorptivity and Porosity Characteristics of Self-Compacting Concrete from Blended Cements Using Calcined Clay and Fly Ash at Various Replacement Levels
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    Chapter 78 Utilization of Limestone Powder and Metakaolin as Mineral Fillers in High-Performance Self-Compacting Concrete
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    Chapter 79 Experimental Investigation on Strength and Durability of Concrete with Partial Replacement of Cement Using Calcined Clay
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    Chapter 80 Study of Durability Aspects of Limestone Calcined Clay Cement Using Different Piezo Configurations
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    Chapter 81 Influence of Calcined Clay-Limestone Ratio on Properties of Concrete with Limestone Calcined Clay Cement (LC3)
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    Chapter 82 Volumetric Deformations at Early Age on Portland Cement Pastes with the Addition of Illitic Calcined Clay
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    Chapter 83 Anomalous Early Increase in Concrete Resistivity with Calcined Clay Binders
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    Chapter 84 Properties of Calcined Clay-Based Geopolymer Mortars in Presence of Alccofine Powder and Recron Fiber
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    Chapter 85 Calcined Clays and Geopolymers for Stabilization of Loam Structures for Plaster and Bricks
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    Chapter 86 The Dissemination of the Technology “LC 3 ” in Latin America. Challenges and Opportunities
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    Chapter 87 What’s Old Is New Again: A Vision and Path Forward for Calcined Clay Use in the USA
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    Chapter 88 Limestone Calcined Clay Cement: Opportunities and Challenges
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    Chapter 89 LC 3 Cement Produced Using New Additives
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    Chapter 90 Development of Green Additive for Cement and Concrete Industries
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    Chapter 91 Use of Kaolin Clay as a Source of Silica in MgO–SiO 2 Binder
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    Chapter 92 Fresh and Hardened Properties of Pastes and Concretes with LC 3 and Its Economic Viability: Indian Ready Mix Industry Perspective
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    Chapter 93 Reactivity of Clay Minerals in Intervention Mortars
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    Chapter 94 Performance of Limestone Calcined Clay Cement (LC 3 )-Based Lightweight Blocks
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    Chapter 95 Alternative Masonry Binders and Units Using LP Cement–Soil–Brick Powder Blend and Low-Molar Alkaline Solution
Attention for Chapter 9: Potential of Calcined Recycling Kaolin from Silica Sand Processing as Supplementary Cementitious Material
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Chapter title
Potential of Calcined Recycling Kaolin from Silica Sand Processing as Supplementary Cementitious Material
Chapter number 9
Book title
Calcined Clays for Sustainable Concrete
Published by
Springer, Singapore, January 2020
DOI 10.1007/978-981-15-2806-4_9
Book ISBNs
978-9-81-152805-7, 978-9-81-152806-4
Authors

Matthias Maier, Benjamin Forster, Nancy Beuntner, Karl-Christian Thienel, Maier, Matthias, Forster, Benjamin, Beuntner, Nancy, Thienel, Karl-Christian

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 13 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 13 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 3 23%
Professor > Associate Professor 3 23%
Student > Master 2 15%
Professor 1 8%
Unknown 4 31%
Readers by discipline Count As %
Engineering 3 23%
Earth and Planetary Sciences 2 15%
Chemical Engineering 1 8%
Materials Science 1 8%
Design 1 8%
Other 0 0%
Unknown 5 38%