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International RILEM Conference on Synergising Expertise towards Sustainability and Robustness of Cement-based Materials and Concrete Structures

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Table of Contents

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    Book Overview
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    Chapter 1 Harvest Residues Ash and Ceramic Powder as Pozzolanic Materials for Developing Sustainable Building Materials
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    Chapter 2 Chemical and Mechanical Characterization of a Novel CSA Blended Cement Based on CDW Inorganic Fractions
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    Chapter 3 Study on Properties and Performance of Green Concrete
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    Chapter 4 Optimizing the Flexural Strength of Cement Mortar Incorporating Natural Pozzolan Using Taguchi Method
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    Chapter 5 Influence of Aggregate Type on the Properties on SCC with Fly Ash
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    Chapter 6 R 3 -Test for Pozzolanic Reactivity: Experimental Issues and Practical Recommendations for Hydration Stoppage with Isopropanol
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    Chapter 7 Reduction of CO 2 Emission by Using Low Carbon Concretes with Accelerating Admixtures
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    Chapter 8 The Effect of Ladle Furnace Slag (LFS) Content Replacement as a Supplementary Cementitious Material in Portland Cement-Based Systems
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    Chapter 9 Micromechanical Properties Assessment of Slag Blended Cements Using Nanoindentation and Scanning Electron Microscopy
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    Chapter 10 Characterizing Sewage Sludge Ashes in Dry and Wet States for Use as SCM
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    Chapter 11 Properties of Belite-Rich Cement with Supplementary Cementitious Materials
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    Chapter 12 Development of Eco-cement from Recycled Low-Carbon Footprint By-product
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    Chapter 13 Recycling Potential of Cellular Lightweight Concrete Insulation as Supplementary Cementitious Material
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    Chapter 14 Clay Brick Powder as Partial Cement Replacement
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    Chapter 15 Mineral Residues and By-Products Upcycled into Reactive Binder Components for Cementitious Materials
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    Chapter 16 Study of Hydration Properties for Blast Furnace Slag-Blended Cement: Prediction of Slag Hydration Kinetics
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    Chapter 17 Binary and Ternary Shale Binders with High Replacement Levels
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    Chapter 18 Influence of Rice Husk Ash on Rheology of Conventional Concrete
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    Chapter 19 The Influence of Gypsum Content on the Hydration and Properties of Belite-Ye’elimite-Ferrite (BYF) Clinker
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    Chapter 20 Possibilities for Application of Modified Solidified Water Treatment Sludge as Supplementary Cementitious Material
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    Chapter 21 Alternative Cementitious Binders Using Mineral Wastes
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    Chapter 22 Characterization of Pozzolans to Use as Supplementary Cementitious Material in Concrete Through X-ray Diffraction
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    Chapter 23 Development of Low Carbon Textile Reinforced Concrete from Composite Cements
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    Chapter 24 Evaluation of the Pozzolanic Activity of Copper Slag through Paste and Mortar Studies
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    Chapter 25 Exploration of Waste Glass Powder as Partial Replacement of Cement in Concrete
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    Chapter 26 Interfacial Transition Zone Formed on Wet-On-Wet Cast Between Ultra–High–Performance Fiber Reinforcement Concrete – Blast Furnace Slag Concrete
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    Chapter 27 Development of Low-Carbon Lightweight Concrete Using Pumice as Aggregate and Cement Replacement
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    Chapter 28 Hourly-Repeated Three-Minutes Creep Testing of a Limestone Calcined Clay Cement Paste (LC3)
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    Chapter 29 Reactivity of Mixed Layer Clays – The Effect of Polycarboxylate Based Superplasticizers on Effective Particle Size Distributions
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    Chapter 30 Using Non-standard Concretes in a Major Infrastructure Project: A Multidisciplinary Approach for Implementation
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    Chapter 31 Effect of Activator Solutions on the Thixotropic Behavior of Alkali-Activated Slag Concrete
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    Chapter 32 Investigation of the Properties of Geopolymer Mortars Produced with the Construction and Demolition Waste
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    Chapter 33 Effect of Internal and External Factors on the Volume Changes of Slag Binder Activated by Sodium Hydroxide at Early-Age
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    Chapter 34 Taguchi Method for Optimizing Alkali-Activated Mortar Mixtures Using Waste Perlite Powder and Granulated Blast Furnace Slag
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    Chapter 35 Evaluation of the Cracking Risk in Alkali Activated Materials by Means of Restrained Shrinkage
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    Chapter 36 Strength and Durability Assessment of Geopolymer Mortars Based on Non-calcined Dredged Sediments
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    Chapter 37 Monitoring and Modeling of Visco-Elastic Strains of Alkali-Activated Slag Mortar Since the Earliest Age
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    Chapter 38 Delayed Deformations of Na- and K- Sulphates Activated Blast-Furnace Slag Mortars
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    Chapter 39 Effect of Aggregate Skeleton and Admixtures on Fresh and Hardened Properties of High-Strength Geopolymer Mortars
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    Chapter 40 Effect of Organic Retarders on Fluid-State and Strength Development of Rock-Based Geopolymer
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    Chapter 41 Effect of SiO 2 /Na 2 O Ratio on the Fresh and Mechanical Properties of Binary Blend Alkali Activated Mortar Incorporating Copper and Blast Furnace Slags
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    Chapter 42 Influence of Slag Chemistry on the Carbonation of Sodium Sulfate-Activated Slag Cements
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    Chapter 43 Long-Term Mechanical and Durability Behaviour of Two Alkali-Activated Types of Concrete
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    Chapter 44 Characterization and Prediction of Clinker Phase Assemblage in Low-CO 2 Iron-Rich Calcium Sulfo-Aluminate Cements Incorporating High Volumes of Bauxite Residue
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    Chapter 45 Early-Age Hydration of an EAF Slag Based Alite–Ferrite Cement Clinker in the Presence of Na 2 CO 3
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    Chapter 46 Development of Self-sensing Cementitious Composites with Improved Water and Chloride Resistance
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    Chapter 47 Resistivity and Capacitance-Based Strain Sensing of CNT and GNP Reinforced Concrete
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    Chapter 48 Influence of Carbon Nanotubes Dispersion Degree on the Piezo-Resistive Behavior of Self-sensing Cementitious Composites
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    Chapter 49 Hierarchical CNT-Coated Basalt Fiber Yarns as Smart and Ultrasensitive Reinforcements of Cementitious Matrices for Crack Detection and Structural Health Monitoring
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    Chapter 50 Effect of Carbon Nanomaterials on the Microstructural and Mechanical Properties of Geopolymer Binders
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    Chapter 51 Effect of Carbonates on the Formation of Magnesium Silicate Hydrates (M-S-H) and Magnesium Alumino Silicate Hydrates (M-A-S-H)
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    Chapter 52 Carbonation of Concrete Slurry Waste and Its Use as Supplementary Cementitious Material
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    Chapter 53 Accelerated Carbonation of Recycled Concrete Aggregates and Model Materials
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    Chapter 54 Direct Aqueous Mineralization of Industrial Waste for the Production of Carbonated Supplementary Cementitious Materials
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    Chapter 55 Performance and Hydration of Composite Cements with Carbonated, Recycled Concrete Paste
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    Chapter 56 Potential of CO 2 -Storage in Recycled Concrete Aggregates by Accelerated Carbonation
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    Chapter 57 Effect of Selected Process Parameters During Carbonation Hardening on the CO 2 -Binding Potential of Cementitious Materials
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    Chapter 58 Two-Step Carbonation of Pervious Concrete Prepared with Recycled Concrete Aggregates: Aggregate Property, Experimental Setup and Preliminary Results
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    Chapter 59 Development of an Innovative 3D-Printing Process for Reinforced Concrete – AMoRC Method
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    Chapter 60 Investigations to Improve the Carbon Footprint of Thin Walled Concrete Structures by 3D Printing Prefabricated Elements
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    Chapter 61 An Optimum Mix Design Method for 3D Concrete Printing Applications
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    Chapter 62 3BUILD – First 3D Printed Structure in Greece
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    Chapter 63 Natural Fibers for a 3D Printable eco-ECC Material
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    Chapter 64 Performance of Data Driven Algorithms to Predict Concrete Strength Using Production Raw Data
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    Chapter 65 Prediction of Mechanical Properties of Steel Fibre-Reinforced Self-compacting Concrete by Machine Learning Algorithms
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    Chapter 66 Generalization Capability in Machine Learning Approaches for Hammering Test Method
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    Chapter 67 Comparison of Machine Learning Algorithms for the Prediction of the External Sulphate Attack Resistance of Blended Cements
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    Chapter 68 Leaching Characteristics of Cs from the Decomposed Cu Ferrocyanide Adsorbent Solidified by Portland Cement and Geopolymer
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    Chapter 69 Development of High-Performance Fiber-Reinforced Cementitious Composite (HPFRCC) Using Titanium Dioxide and Nylon Fiber
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    Chapter 70 Rheology, Mechanical Properties and Durability of Self-compacting Concrete Using Sustainable Expanded Perlite Microspheres
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    Chapter 71 Length Change and Water Uptake Characteristics of Synthesized Calcium Silicate Hydrates
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    Chapter 72 Development of a Framework to Provide Concrete with a Low Carbon Footprint and Enhanced Resistance Against ASR-Induced Development
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    Chapter 73 Evolution of Air Permeability of Concrete due to Expansion Caused by Internal Swelling Reactions (ISR)
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    Chapter 74 The Effect of Heat Curing on the Early-Strength Development of Low-Carbon Concrete
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    Chapter 75 PVME as a Sustainable Alternative to Improve Performance of Dense Mortar at Elevated Temperature
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    Chapter 76 Evaluation of the Correlation Between ASR Expansion and Pozzolanic Reactivity of Ternary Concrete Systems Containing Glass Powder
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    Chapter 77 Experimental Investigation on the Novel Self-healing Properties of Concrete Mixed with Commercial Bacteria-Based Healing Agent and Crystalline Admixtures
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    Chapter 78 Incorporation of Hybrid Biopolymer/Silicate-Based Microcapsules in Cementitious Mixtures for Potential Uses in Self-healing Technology with Renewable Materials
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    Chapter 79 Towards Development of Sustainable Ultra High Performance Fiber Reinforced Concrete (UHPFRC)
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    Chapter 80 Investigation of the Mechanical Properties and Durability of Concretes Produced with Microsilica and Crystalline Admixtures
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    Chapter 81 A New Class of Hybrid Self-healing Cementitious Materials Combining Shape Memory Alloy Wires and Super Absorbent Polymers
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    Chapter 82 Carbonation or Chloride Ingress? Which One is the Durability Key Factor in Low Reactivity Clay and Limestone Blended Concrete
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    Chapter 83 Effect of Chloride Concentration on the Freeze-Thaw Resistance of Concrete
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    Chapter 84 Restoration of Degraded Calcium-Silicate-Hydrate in Calcium-Leached Cement Paste
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    Chapter 85 Reaching Beyond Internal Curing: The Effects of Superabsorbent Polymers on the Durability of Reinforced Concrete Structures
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    Chapter 86 The Effect of Temperature and Ageing on the Behaviour of Self-compacting Concrete Containing Supplementary Cementitious Materials
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    Chapter 87 Study on Performance of Self-healing and Water Leakage Channel-Blocking Admixture for Mortar and Concrete
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    Chapter 88 Exposure of Portland-Limestone Cement – Metakaolin Paste to Cold Chloride-Sulfate Environment: NMR Spectroscopy Assessment of Structural Changes in Hydrated Phases and Relation to Chloride Ingress
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    Chapter 89 A Literature Review of Shrinkage in Repair Materials with Fine Materials
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    Chapter 90 Effect of Elevated Temperature on the Strength of Date Palm Fiber Reinforced Concrete Containing Silica Fume
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    Chapter 91 New Repair Approach Using Ultra-high Performance Fibre Reinforced Concrete for Structures Affected by Alkali-Aggregate Reaction
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    Chapter 92 Toward Sustainable Strengthening Systems for RC Structures
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    Chapter 93 Carbonation Performance of Hybrid Ternary Binders Containing Low-Calcium Fly Ash and Sodium Sulfate
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    Chapter 94 Carbonation Rate of Alkali-Activated Concretes: Effects of Compositional Parameters and Carbonation Conditions
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    Chapter 95 Insight from Modeling Service Life of Low-Clinker Cements at Moderate Relative Humidity Under Carbonation Attack
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    Chapter 96 Influence of Blended Cements on the Service Life of Reinforced Concrete Structures against Carbonation Induced Corrosion
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    Chapter 97 Corrosion Kinetics of Steel in Carbonated Pore Solutions Containing Chlorides and Sulphates
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    Chapter 98 Carbonation Resistance of Recycled Aggregate Concrete Using Different Cement Types
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    Chapter 99 On the Carbonation Dilemma and How to Escape from It
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    Chapter 100 Study on Properties of UFC Cured by Autoclaving
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    Chapter 101 The Impact of Chloride Binding on the Resistance to Carbonation: From Single Cycle Degradation Towards the Complexity of Multi Cycle Degradation
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    Chapter 102 Influence of Curing Type and Duration on the Resistance to Accelerated Carbonation and Its Relation to Natural Indoor and Outdoor Sheltered Carbonation
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    Chapter 103 Comparing the Carbonation Performances of a Low-Clinker Blended Slag Cement with an Alkali-Activated Slag via Thermodynamic Modelling
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    Chapter 104 New Insights into the Carbonation Process of Mortars and Concretes
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    Chapter 105 Long-Term Natural Carbonation in Concretes with Fly Ash and Limestone Calcined Clay Systems
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    Chapter 106 Influence of Fly Ash as Cement Substitution on Accelerated and Natural Carbonation of Concrete
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    Chapter 107 Carbonation of Concretes with Different Binder Chemistry – A Comparative Analysis
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    Chapter 108 Influence of Humidity and Loading on Carbonation and 4-Point Bending Strength of Slag Cement Mortar
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    Chapter 109 Effect of the Carbonate Source on the Carbonation Performance of Blended Binders Containing Calcined Clays
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    Chapter 110 Microstructure and Performance of Three Silicate Binders in the Range CSH-CASH-NAS
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    Chapter 111 Testing Geopolymer Concrete Performance in Chloride Environment
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    Chapter 112 Correlation Between Chloride Ions’ Migration and Diffusion Coefficients of Alkali-Activated Concrete
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Title
International RILEM Conference on Synergising Expertise towards Sustainability and Robustness of Cement-based Materials and Concrete Structures
Published by
Springer Nature Switzerland, June 2023
DOI 10.1007/978-3-031-33187-9
ISBNs
978-3-03-133186-2, 978-3-03-133187-9
Editors

Jędrzejewska, Agnieszka, Kanavaris, Fragkoulis, Azenha, Miguel, Benboudjema, Farid, Schlicke, Dirk

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