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Binders and materials XI : selected, peer reviewed papers from the 11th International Conference on Binders and Materials 2013 (ICBM 2013), December 5, 2013, Brno, Czech Republic / / edited by Karel Dvořák [and three others]
Binders and materials XI : selected, peer reviewed papers from the 11th International Conference on Binders and Materials 2013 (ICBM 2013), December 5, 2013, Brno, Czech Republic / / edited by Karel Dvořák [and three others]
Pubbl/distr/stampa Zurich, Switzerland : , : TTP, , 2014
Descrizione fisica 1 online resource (351 p.)
Disciplina 624.18
Collana Advanced Materials Research
Soggetto topico Building materials
Binders (Materials)
Civil engineering - Materials
ISBN 3-03826-407-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Binders and Materials XI; About ICBM and Committees; Table of Contents; Chapter 1: Cement and Binders Based on Cement; Influence of Preparation Parameters on Properties of Belite Clinker; Study of Increasing of Belite Reactivity; Proposal and Testing Masonry Cement; Testing Self-Levelling Floor Screeds on the Basis of Ternary Binder; Thermoanalytical Study of Binders Containing Pozzolanic and Latent Hydraulic Materials; Reduction of CO2 Emissions at Firing of Binders Type Portland Cement; Sodium Hexametaphosphate as Deflocculation Agent for Calcium Aluminate Cements in Porcelain Body
Influence of Different Grinding Types on Granulometry of Cement GrainsChapter 2: Inorganic Binders; Performance of Fiber-Cement Boards in Biogenic Sulphate Environment; Decorative Multi-Component Alkali Activated Cements for Restoration and Finishing Works; Testing of Clay Used for Building a Folk House Replica by Traditional Techniques; Industrial Resources for the Production of Sulphate Binders; Efficiency of Sulphate Paste Liquefaction; Influence of Grinding α-Gypsum on its Final Property; Preparation and Properties of Pressed Metakaolin and Fly Ash Based Alkali-Activated Binders
Thermal Insulating Alkali-Activated Materials with Lightweight AggregateAnalysis of Possibility of Using Geopolymers in Rehabilitation of Reinforced Concrete Structures; Modification of the Raw Mix for Firing of Dicalcium Silicate Using Potassium Sulphate; Chapter 3: Organic Binders; Repair of Composite Structure Using Cold Sleeve with Polymer Filling Material; Properties of Polyurethane and Epoxy Modified Cementitious Hybrids for Flooring Systems; The Behavior of the Advanced Materials for Blast Energy Absorption under Low and High Velocity Load
The Influence of Silane Coupling Agent on Glued Spruce Wood Using Epoxy AdhesiveBitumen Substance Analysis; Chapter 4: Silicate Materials; Determination of Sintering Activity of Sodium-Potassium Feldspar; Development of Advanced Masonry Structures with Utilization of Alternative Thermal Insulating Materials; Physical-Mechanical Aspects of Preparing Thermal Insulation Materials on the Basis of Liquid (Water) Glass; Possibilities of Reducing the Apparent Porosity of Silica Bricks for the Coke Batteries; Pozzolanic Aktivity Increase of Recycled Glass; Chapter 5: Building Materials
Comparison of Impedance Spectra of Concrete Recorded with Utilizing Carbon Transition PasteReactivity of Brick Powder in Lime Mortars; To the Problems of Determination of Dynamic Elasticity Modules of Calcium Silicate Bricks by Means of Resonance Method; Corrosion Inhibitors as a Prevention; The Effect of Concrete Quality on the Acoustic Emission Parameters during Three-Point Bending Fracture Test; Possibilities of Hydrophobization of Thermo-Insulating Materials Based on Natural Resources; Influence of Contact Parameters on Load-Carrying Capacity of Hybrid Composite Cross-Section
Reinforcement Corrosion versus Crack Width
Record Nr. UNINA-9910789104703321
Zurich, Switzerland : , : TTP, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Binders and materials XI : selected, peer reviewed papers from the 11th International Conference on Binders and Materials 2013 (ICBM 2013), December 5, 2013, Brno, Czech Republic / / edited by Karel Dvořák [and three others]
Binders and materials XI : selected, peer reviewed papers from the 11th International Conference on Binders and Materials 2013 (ICBM 2013), December 5, 2013, Brno, Czech Republic / / edited by Karel Dvořák [and three others]
Pubbl/distr/stampa Zurich, Switzerland : , : TTP, , 2014
Descrizione fisica 1 online resource (351 p.)
Disciplina 624.18
Collana Advanced Materials Research
Soggetto topico Building materials
Binders (Materials)
Civil engineering - Materials
ISBN 3-03826-407-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Binders and Materials XI; About ICBM and Committees; Table of Contents; Chapter 1: Cement and Binders Based on Cement; Influence of Preparation Parameters on Properties of Belite Clinker; Study of Increasing of Belite Reactivity; Proposal and Testing Masonry Cement; Testing Self-Levelling Floor Screeds on the Basis of Ternary Binder; Thermoanalytical Study of Binders Containing Pozzolanic and Latent Hydraulic Materials; Reduction of CO2 Emissions at Firing of Binders Type Portland Cement; Sodium Hexametaphosphate as Deflocculation Agent for Calcium Aluminate Cements in Porcelain Body
Influence of Different Grinding Types on Granulometry of Cement GrainsChapter 2: Inorganic Binders; Performance of Fiber-Cement Boards in Biogenic Sulphate Environment; Decorative Multi-Component Alkali Activated Cements for Restoration and Finishing Works; Testing of Clay Used for Building a Folk House Replica by Traditional Techniques; Industrial Resources for the Production of Sulphate Binders; Efficiency of Sulphate Paste Liquefaction; Influence of Grinding α-Gypsum on its Final Property; Preparation and Properties of Pressed Metakaolin and Fly Ash Based Alkali-Activated Binders
Thermal Insulating Alkali-Activated Materials with Lightweight AggregateAnalysis of Possibility of Using Geopolymers in Rehabilitation of Reinforced Concrete Structures; Modification of the Raw Mix for Firing of Dicalcium Silicate Using Potassium Sulphate; Chapter 3: Organic Binders; Repair of Composite Structure Using Cold Sleeve with Polymer Filling Material; Properties of Polyurethane and Epoxy Modified Cementitious Hybrids for Flooring Systems; The Behavior of the Advanced Materials for Blast Energy Absorption under Low and High Velocity Load
The Influence of Silane Coupling Agent on Glued Spruce Wood Using Epoxy AdhesiveBitumen Substance Analysis; Chapter 4: Silicate Materials; Determination of Sintering Activity of Sodium-Potassium Feldspar; Development of Advanced Masonry Structures with Utilization of Alternative Thermal Insulating Materials; Physical-Mechanical Aspects of Preparing Thermal Insulation Materials on the Basis of Liquid (Water) Glass; Possibilities of Reducing the Apparent Porosity of Silica Bricks for the Coke Batteries; Pozzolanic Aktivity Increase of Recycled Glass; Chapter 5: Building Materials
Comparison of Impedance Spectra of Concrete Recorded with Utilizing Carbon Transition PasteReactivity of Brick Powder in Lime Mortars; To the Problems of Determination of Dynamic Elasticity Modules of Calcium Silicate Bricks by Means of Resonance Method; Corrosion Inhibitors as a Prevention; The Effect of Concrete Quality on the Acoustic Emission Parameters during Three-Point Bending Fracture Test; Possibilities of Hydrophobization of Thermo-Insulating Materials Based on Natural Resources; Influence of Contact Parameters on Load-Carrying Capacity of Hybrid Composite Cross-Section
Reinforcement Corrosion versus Crack Width
Record Nr. UNINA-9910820250803321
Zurich, Switzerland : , : TTP, , 2014
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Bio-aggregate-based building materials [[electronic resource] ] : applications to hemp concretes / / edited by Sofiane Amziane, Laurent Arnaud
Bio-aggregate-based building materials [[electronic resource] ] : applications to hemp concretes / / edited by Sofiane Amziane, Laurent Arnaud
Pubbl/distr/stampa London, : ISTE
Descrizione fisica 1 online resource (334 pages)
Disciplina 620.136
Altri autori (Persone) AmzianeSofiane
ArnaudLaurent
Collana Civil engineering and geomechanics series
Soggetto topico Building materials
ISBN 1-118-57680-2
1-118-57704-3
1-118-57706-X
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Title Page; Contents; Foreword; Chapter 1. Environmental, Economic and Social Context of Agro-Concretes; 1.1. Sustainable development, construction and materials; 1.1.1. Environmental impacts of the construction sector; 1.2. Standardization and regulation: toward a global approach; 1.2.1. Standardization and regulation in force; 1.2.2. Limitations of the normative and regulatory framework; 1.3. The materials: an increasingly crucial element; 1.3.1. Role of the materials in energy consumption; 1.3.2. What is a low-environmental-impact material?; 1.3.3. Constantly-changing regulations
1.4. The specific case of concretes made from lignocellular particles 1.4.1. Development of agro-concretes in the context of France; 1.5. What does the term "Agro-concrete" mean?; 1.5.1. General definition; 1.5.2. Lignocellular resources; 1.5.3. General characteristics of lignocellular agro-resources; 1.6. Conclusions; 1.7. Bibliography; Chapter 2. Characterization of Plant-Based Aggregates; 2.1. Microstructure of the shiv particles; 2.1.1. Structure of the stem of fibrous plants; 2.1.2. SEM observation of hemp shiv particles; 2.1.3. Chemistry of the cell walls
2.1.4. Density and porosity, in the case of hemp shiv 2.2. Particle Size Distribution (PSD); 2.2.1. General characteristics of aggregates made from fibrous plants; 2.2.2. Fiber content; 2.2.3. Methods for characterizing the PSD; 2.2.4. PSD analyses; 2.2.5. Comparison of the results obtained by image analysis; 2.2.6. Characterization of the geometry of the particles; 2.2.7. Characterization of the PSD; 2.2.8. Conclusions; 2.3. Compactness and compressibility; 2.4. Water absorption capacity; 2.5. Bibliography; Chapter 3. Binders; 3.1. Portland cements; 3.1.1. General; 3.1.2. Production
3.1.3. Chemical and mineral composition 3.1.4. Properties; 3.1.5. Environmental impacts; 3.2. Lime; 3.2.1. General; 3.2.2. Aerial lime; 3.2.3. Natural hydraulic limes; 3.3. Lime-pozzolan mixtures; 3.3.1. Natural pozzolans; 3.3.2. Calcined natural pozzolans: metakaolin; 3.3.3. Fly ash; 3.3.4. Blast furnace slag; 3.4. Plaster; 3.4.1. General; 3.4.2. Production; 3.4.3. Chemical and mineralogical composition; 3.4.4. Properties; 3.4.5. Environmental impacts; 3.5. Summary; 3.6. Bibliography; Chapter 4. Formulation and Implementation; 4.1. Objectives; 4.1.1. Preamble; 4.1.2. Traditional applications
4.1.3. Constituents and mixture 4.1.4. Methods of implementation; 4.2. Rules of formulation; 4.2.1. Basis of usual formulations; 4.2.2. Influence of the proportion of paste in the mixture; 4.2.3. Quality of the paste and water content; 4.2.4. Homogeneity of the paste; 4.2.5. The relationship between formulation and strength; 4.2.6. The relationship between formulation and thermo-hydric properties; 4.3. Examples of formulations; 4.3.1. Origin of the data; 4.3.2. Walling application; 4.3.3. Flooring application; 4.3.4. Roofing application; 4.3.5. Other applications; 4.4. Installation techniques
4.4.1. Building a wall using formwork
Record Nr. UNINA-9910141602403321
London, : ISTE
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Bio-aggregate-based building materials [[electronic resource] ] : applications to hemp concretes / / edited by Sofiane Amziane, Laurent Arnaud
Bio-aggregate-based building materials [[electronic resource] ] : applications to hemp concretes / / edited by Sofiane Amziane, Laurent Arnaud
Edizione [1st ed.]
Pubbl/distr/stampa London, : ISTE
Descrizione fisica 1 online resource (334 pages)
Disciplina 620.136
Altri autori (Persone) AmzianeSofiane
ArnaudLaurent
Collana Civil engineering and geomechanics series
Soggetto topico Building materials
ISBN 1-118-57680-2
1-118-57704-3
1-118-57706-X
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Title Page; Contents; Foreword; Chapter 1. Environmental, Economic and Social Context of Agro-Concretes; 1.1. Sustainable development, construction and materials; 1.1.1. Environmental impacts of the construction sector; 1.2. Standardization and regulation: toward a global approach; 1.2.1. Standardization and regulation in force; 1.2.2. Limitations of the normative and regulatory framework; 1.3. The materials: an increasingly crucial element; 1.3.1. Role of the materials in energy consumption; 1.3.2. What is a low-environmental-impact material?; 1.3.3. Constantly-changing regulations
1.4. The specific case of concretes made from lignocellular particles 1.4.1. Development of agro-concretes in the context of France; 1.5. What does the term "Agro-concrete" mean?; 1.5.1. General definition; 1.5.2. Lignocellular resources; 1.5.3. General characteristics of lignocellular agro-resources; 1.6. Conclusions; 1.7. Bibliography; Chapter 2. Characterization of Plant-Based Aggregates; 2.1. Microstructure of the shiv particles; 2.1.1. Structure of the stem of fibrous plants; 2.1.2. SEM observation of hemp shiv particles; 2.1.3. Chemistry of the cell walls
2.1.4. Density and porosity, in the case of hemp shiv 2.2. Particle Size Distribution (PSD); 2.2.1. General characteristics of aggregates made from fibrous plants; 2.2.2. Fiber content; 2.2.3. Methods for characterizing the PSD; 2.2.4. PSD analyses; 2.2.5. Comparison of the results obtained by image analysis; 2.2.6. Characterization of the geometry of the particles; 2.2.7. Characterization of the PSD; 2.2.8. Conclusions; 2.3. Compactness and compressibility; 2.4. Water absorption capacity; 2.5. Bibliography; Chapter 3. Binders; 3.1. Portland cements; 3.1.1. General; 3.1.2. Production
3.1.3. Chemical and mineral composition 3.1.4. Properties; 3.1.5. Environmental impacts; 3.2. Lime; 3.2.1. General; 3.2.2. Aerial lime; 3.2.3. Natural hydraulic limes; 3.3. Lime-pozzolan mixtures; 3.3.1. Natural pozzolans; 3.3.2. Calcined natural pozzolans: metakaolin; 3.3.3. Fly ash; 3.3.4. Blast furnace slag; 3.4. Plaster; 3.4.1. General; 3.4.2. Production; 3.4.3. Chemical and mineralogical composition; 3.4.4. Properties; 3.4.5. Environmental impacts; 3.5. Summary; 3.6. Bibliography; Chapter 4. Formulation and Implementation; 4.1. Objectives; 4.1.1. Preamble; 4.1.2. Traditional applications
4.1.3. Constituents and mixture 4.1.4. Methods of implementation; 4.2. Rules of formulation; 4.2.1. Basis of usual formulations; 4.2.2. Influence of the proportion of paste in the mixture; 4.2.3. Quality of the paste and water content; 4.2.4. Homogeneity of the paste; 4.2.5. The relationship between formulation and strength; 4.2.6. The relationship between formulation and thermo-hydric properties; 4.3. Examples of formulations; 4.3.1. Origin of the data; 4.3.2. Walling application; 4.3.3. Flooring application; 4.3.4. Roofing application; 4.3.5. Other applications; 4.4. Installation techniques
4.4.1. Building a wall using formwork
Record Nr. UNINA-9910821107403321
London, : ISTE
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Bio-aggregates Based Building Materials [[electronic resource] ] : State-of-the-Art Report of the RILEM Technical Committee 236-BBM / / edited by Sofiane Amziane, Florence Collet
Bio-aggregates Based Building Materials [[electronic resource] ] : State-of-the-Art Report of the RILEM Technical Committee 236-BBM / / edited by Sofiane Amziane, Florence Collet
Edizione [1st ed. 2017.]
Pubbl/distr/stampa Dordrecht : , : Springer Netherlands : , : Imprint : Springer, , 2017
Descrizione fisica 1 online resource (XXXIII, 263 pages) : illustrations
Disciplina 620.13
Collana RILEM State-of-the-Art Reports
Soggetto topico Building materials
Biomaterials
Mechanics
Mechanics, Applied
Sustainable architecture
Building Materials
Theoretical and Applied Mechanics
Sustainable Architecture/Green Buildings
ISBN 94-024-1031-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Chapter 1. Chemical composition of bioaggregates and their interactions with mineral binders -- 1.0 Introduction -- 1.1 Composition of hemp stem -- 1.2 Processing of hemp stem and microstructure of hemp shiv -- 1.3 Cell wall components -- 1.4 Chemical composition of bioaggregates -- 1.5 Surface characterization of bioaggregates – adhesion between lignocellulosic aggregates and a mineral binder -- 1.6 Chemical interactions between bioaggregates and mineral binders -- 1.7 Conclusion -- References -- Chapter 2. Porosity, pore size distribution, micro-structure -- 2.0 Introduction -- 2.1 Techniques used to measure porosity -- 2.2 Conclusion -- References -- Chapter 3. Water absorption of plant aggregate -- 3.0 Introduction -- 3.1 Wetting of porous, heterogeneous surfaces -- 3.2 Transfer phenomena in a porous medium -- 3.3 Analogy with adhesion of mortars to a porous support -- 3.4 Overview of the processes of binder/wood adhesion -- 3.5 Conclusion -- References -- Chapter 4. Particle Size Distribution -- 4.0 Introduction -- 4.1 General characteristics of shiv particles -- 4.2 Sieving methods -- 4.3 Image-processing methods -- 4.4 Image-analysis -- 4.5 Characterization of the PSD -- 4.6 Conclusions -- References -- Chapter 5. Bulk density and compressibility -- 5.0 Introduction -- 5.1 Density and porosity, case of hemp shiv -- 5.2 Bulk compressibility -- 5.3 Conclusions and perspectives -- References -- Chapter 6. Hygric and thermal properties of bio-aggregate based building materials -- 6.0 Introduction -- 6.1 Hygric properties -- 6.2 Thermal properties -- 6.3 Concluding remarks on hygrothermal behavior of bio-aggregate based building materials -- References -- Chapter 7. Bio-aggregate based building materials exposed to fire7.1 Introduction -- 7.2 Fire reaction -- 7.3 Fire resistance -- 7.4 Real scale fire tests -- 7.5 Other quaint matter fire test -- References -- Chapter 8. Durability of bio-based concretes -- 8.0 Introduction -- 8.1 Accelerated aging protocols for bio-based construction materials -- 8.2 Aging of bio-based concretes -- 8.3 Aging of natural fibres-cement composites -- 8.4 Concluding remarks -- References -- Chapter 9. Effect of testing variables (method of production) -- 9.0 Introduction -- 9.1 Materials and methods -- 9.2 Results -- 9.3 Conclusion -- Acknowledgments -- References -- APPENDIX : Technical Committee Report - Rilem TC 236 BBM - Bio based Building Materials - Round Robin test for hemp shiv Characterisation -- Round Robin Test For Hemp shiv Characterisation -- Part 1 : Evaluation Of Initial Water Content And Water Absorption -- 1 Introduction -- 2 Material -- 52% -- 18% -- 2.1 Microscopical description -- 3 Initial Water Content -- 3.1 Methods -- 3.2 Results -- 3.3 Concluding remarks on initial water content -- 4 Water Absorption -- 4.1 Description of the experimental methods -- 4.2 Results -- 4.3 Concluding remarks -- Summary of Findings -- Round Robin Test For Hemp shiv Characterisation -- Part 2: Bulk Density And Particle Size Distribution -- 5 Introduction -- 6 Material -- 52% -- 18% -- 7 Bulk Density -- 7.1 Methods -- 7.2 Results -- 7.3 Concluding remarks on bulk density -- 8 Particle Size Distribution -- 8.1 Sieving method -- 8.2 Image processing -- 8.3 Comparison between sieving and image analysis results -- 8.4 Concluding remarks on Particle Size Distribution -- Summary Of Findings -- Acknowledgements -- Round Robin Test For Hemp shiv Characterisation -- Part 3 : Thermal Conductivity -- 9 Introduction -- 10 Material -- 52% -- 18% -- 11 Thermal Conductivity -- 11.1 Experimental methods -- 11.2 Results -- 11.3 Concluding remarks -- Summary Of Findings -- Acknowledgements. .
Record Nr. UNINA-9910164136803321
Dordrecht : , : Springer Netherlands : , : Imprint : Springer, , 2017
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Bio-Based Building Materials : Proceedings of ICBBM 2023 / / edited by Sofiane Amziane, Ildiko Merta, Jonathan Page
Bio-Based Building Materials : Proceedings of ICBBM 2023 / / edited by Sofiane Amziane, Ildiko Merta, Jonathan Page
Autore Amziane Sofiane
Edizione [1st ed. 2023.]
Pubbl/distr/stampa Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2023
Descrizione fisica 1 online resource (1057 pages)
Disciplina 624.18
Altri autori (Persone) MertaIldiko
PageJonathan
Collana RILEM Bookseries
Soggetto topico Building materials
Biomaterials
Sustainability
Building Materials
ISBN 3-031-33465-5
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Intro -- Preface ICBBM 2023 -- Organization -- Contents -- RILEM Publications -- Mechanical Properties of Bio-based Building Materials -- Assessing the Mechanical and Durability Properties of Recycled Polyethylene Terephthalate (PET) Plastic Soil -- 1 Introduction -- 2 Materials and Methods -- 2.1 Materials -- 2.2 Soil -- 2.3 Polyethylene Terephthalate (PET) Plastic Waste Bottles -- 3 Methods -- 3.1 Compressive Strength Test -- 3.2 Flexural Strength Test -- 3.3 Water Absorption Test -- 3.4 Young's Modulus Test -- 3.5 Resilience Factor -- 4 Results and Discussion -- 5 Conclusions -- References -- Polyurethane Wood Adhesives from Microbrewery Spent Grains -- 1 Introduction -- 2 Methodology -- 2.1 Materials -- 2.2 Protein Extraction from MSG -- 2.3 Protein Characterization -- 2.4 Preparation of Polyurethane Adhesives -- 2.5 Adhesives Characterization -- 3 Results and Discussion -- 3.1 Protein Characterization -- 4 Conclusion -- References -- Correlation Between Length Change and Mechanical Properties of Mortar Containing Phragmites Australis Ash (PAA) -- 1 Introduction -- 2 Materials -- 2.1 Chemical Composition -- 2.2 Mix Proportions -- 3 Testing -- 3.1 Total Water Absorption -- 3.2 Capillary Water Absorption -- 3.3 Length Change -- 4 Results and Discussion -- 4.1 Total Water Absorption -- 4.2 Capillary Water Absorption -- 4.3 Correlation Between Compressive Strength and Expansion -- 4.4 Correlation Between Compressive Strength and Drying Shrinkage -- 4.5 Correlation Between Compressive Strength and Autogenous Shrinkage -- 4.6 Correlation Between Flexural Strength and Expansion -- 4.7 Correlation Between Flexural Strength and Drying Shrinkage -- 4.8 Correlation Between Flexural Strength and Autogenous Shrinkage -- 5 Conclusion -- References.
Structure and Properties of Portland-Limestone Cements Synthesized with Biologically Architected Calcium Carbonate -- 1 Introduction -- 2 Materials and Methods -- 2.1 CaCO3 Sources -- 2.2 Limestone Characterization -- 2.3 Portland Limestone Cement Paste Studies -- 3 Results -- 3.1 CaCO3 Characterization -- 3.2 Cement Paste Studies -- 4 Discussion -- 5 Conclusions -- References -- Bricks Geopolymer Based on Olive Waste Fly Ash: Mechanical Properties -- 1 Introduction -- 2 Materials and Methods -- 2.1 Sample Preparation -- 2.2 Sample Characterization -- 3 Results and Discussion -- 3.1 Initial Testing of By-Products -- 3.2 Initial Testing of Geopolymer Materials -- 4 Conclusion -- References -- Mechanical and Thermal Properties of an Innovative Bio Based Concrete -- 1 Introduction -- 2 Materials and Methodology -- 2.1 Rape Straws -- 2.2 Rape Straw Concrete: BIP (Load-Bearing Insulating Concrete) -- 2.3 Mechanical Compression Test -- 2.4 Thermal Conductivity Test -- 3 Results -- 3.1 Mechanical Compression Behavior -- 3.2 Thermal Conductivity -- 4 Conclusion -- References -- Evaluation of the Potential of Plant Aggregates from Corn and Sunflower Stalks for the Design of Building Materials -- 1 Introduction -- 2 Materials and Methods -- 2.1 Materials -- 2.2 Methods -- 3 Results and Discussion -- 3.1 Plant Particles Properties -- 3.2 Composites Design and Fabrication -- 3.3 Use Properties -- 4 Conclusion and Perspectives -- References -- A Minimal Invasive Anchoring Technique for the Foundation of Technical Structures in Trees -- 1 Introduction -- 1.1 Motivation for Building with Trees -- 1.2 Anatomy of Trees and Intervention by Fasteners -- 2 Anchoring with Moderately Long Threaded Bolts -- 2.1 Basic Structure -- 2.2 Specification of the Test Body -- 2.3 Specification of the Test Setup -- 2.4 Axial Pull-Out Test -- 2.5 Shear Force Test and Combined Loading.
2.6 Basic Conceptual Design of the Coupling -- 2.7 Specification of the Numerical Load Capacity Tests -- 2.8 Calibration of the Model with Horizontal Loading -- 2.9 Transverse Load -- 3 Summary and Outlook -- References -- Towards Biobased Concretes with Tailored Mechanical Properties -- 1 Introduction -- 2 Material Properties and Mix Proportions -- 2.1 Materials -- 2.2 Specimens Preparation -- 2.3 Experimental Methodology -- 3 Results and Discussion -- 3.1 Mechanical Behavior of Hemp Concrete -- 3.2 Displacement in the Vertical and Horizontal Directions -- 3.3 Strain in the Y Direction -- 4 Conclusion -- References -- Physical Properties of Bio-based Building Materials -- Optimisation of Production Parameters to Develop Innovative Eco-efficient Boards -- 1 Introduction -- 2 Materials -- 2.1 Hazelnut Shells -- 2.2 Sodium Silicate Solution and Sodium Bicarbonate -- 3 Production Parameters -- 4 Results and Discussion -- 5 Conclusions -- References -- Biobased Façade Materials in Europe -- 1 Introduction -- 1.1 Background Information -- 1.2 Goal -- 1.3 Aim -- 1.4 Client -- 1.5 Experts -- 2 Case Study -- 2.1 Requirements -- 3 Methodology -- 3.1 Desk Research -- 3.2 Interviews -- 3.3 Data Analysis -- 4 Biobased Façade Materials -- 5 Discussion -- 6 Conclusion -- 7 Follow-Up Research -- Appendix I -- Appendix II -- Appendix III -- Appendix IV -- References -- Moisture Buffering of Hemp-Lime with Biochar and Rape Straw-Lime as Surface Materials for a Stable Indoor Climate -- 1 Introduction -- 1.1 Hemp-Lime and Rape Straw-Lime -- 1.2 Biochar -- 2 Materials and Methods -- 2.1 Thermal Properties -- 2.2 Moisture Buffering -- 3 Results and Discussion -- 3.1 Thermal Properties -- 3.2 Moisture Buffering -- 4 Conclusions -- References -- Effect of Silane on Physical and Mechanical Properties of Wood Bio-Concrete Exposed to Wetting/Drying Cycles -- 1 Introduction.
2 Materials and Methods -- 2.1 Materials -- 2.2 Wood Bio-Concrete Manufacturing and Curing Conditions -- 2.3 Silane Treatment Procedures -- 2.4 Wetting/Drying Cycles Protocols -- 2.5 Functional Properties -- 3 Results and Discussion -- 3.1 Wetting/Drying Mass Control -- 3.2 Functional Properties -- 4 Conclusions -- References -- Treatment Protocol Efficiency of Plant Aggregates to Their Influence on Swelling and Shrinkage -- 1 Introduction -- 2 Materials and Methods -- 2.1 Materials -- 2.2 Aggregates Treatment -- 2.3 Efficiency of Treatment: Wetting-Drying Cycles -- 2.4 Microscopic Measurement -- 3 Results and Discussion -- 3.1 Impact of Treatment -- 3.2 Rinsing Impact -- 3.3 Wetting and Drying Cycles -- 4 Conclusion -- References -- Hot-Lime-Mixed Hemp Concretes -- 1 Introduction -- 2 Materials and Methods -- 2.1 Materials -- 2.2 Mechanical Properties -- 2.3 Water Vapour Permeability -- 2.4 Water Absorption Coefficient by Capillary Action -- 2.5 Thermal Conductivity -- 2.6 Specific Heat Capacity -- 2.7 Microstructure -- 3 Results -- 3.1 Reactivity of the Quicklime Used for Hot-Lime Mixing -- 3.2 Mixing -- 3.3 Properties of the Hot-Lime Mixed Hemp Concretes -- 3.4 Microstructure -- 4 Conclusion -- References -- Earth Constructions and Building Materials -- Vibration as a Solution to Improve Mechanical Performance of Compressed Earth Blocks -- 1 Introduction -- 2 Scientific Background on Soils Vibration -- 3 Materials -- 4 Methods -- 5 Results and Discussions -- 5.1 Friction Behavior -- 5.2 The Vibrations Characteristics on the Macroscopic Behavior -- 6 Conclusion -- References -- The State of the Art of Cob Construction: A Comprehensive Review of the Optimal Mixtures and Testing Methods -- 1 Introduction and Background -- 2 Methodology -- 3 Cob as a Building Material -- 4 Content of Cob Mixtures -- 5 Cob Mixes in Literature.
5.1 Sub-soil and Binder Ratios and Granulometric Characterisation -- 5.2 Water Content in Mixes -- 5.3 Fibres and Aggregates in Cob Mixtures -- 6 Assessing the Hygrothermal Performance of Cob -- 6.1 Porosity Tests -- 6.2 Bulk Density of Specimens -- 6.3 Thermal Conductivity -- 6.4 Water Vapour Permeability -- 6.5 Moisture Buffering Value (MBV) -- 6.6 Moisture Sorption Isotherm -- 7 Conclusion -- References -- Influence of Aspect Ratio on the Properties of Compressed Earth Cylinders and Compressed Earth Blocks -- 1 Introduction -- 2 Materials and Methods -- 2.1 Materials (Kent Brick Earth and British Standard - BS 8601 Subsoil) -- 2.2 Methods -- 2.3 Mechanical Testing -- 2.4 Statistical Analysis -- 3 Results -- 3.1 Properties of CEC and CEB Samples -- 3.2 Compaction Pressure -- 3.3 Aspect Ratio Factors for Un-Stabilised Compressed Earth -- 4 Conclusion -- References -- Lime Stabilized Rammed Earth - Influence of Curing and Drying Conditions -- 1 Introduction -- 2 Materials and Methods -- 2.1 Characterization of Raw Materials -- 2.2 Production and Testing of Ø60 RE Specimens -- 3 Results and Discussion -- 3.1 Characterization of Raw Materials -- 3.2 Unconfined Compressive Strength -- 4 Conclusion -- References -- The Effect of Natural Filler on Enhancing Strength for Unstabilized Rammed-Earth Walls -- 1 Introduction -- 1.1 Previous Research -- 1.2 Research Question -- 2 Research Methodology -- 2.1 Raw Material -- 2.2 Specimen's Preparation -- 2.3 Specimen's Manufacturing -- 2.4 Testing -- 3 Tests' Discussion -- 4 Conclusions -- References -- Evolutionary Approach Based on Thermoplastic Bio-Based Building Material for 3D Printing Applications: An Insight into a Mix of Clay and Wax -- 1 Introduction -- 2 Materials -- 3 A Proof of Concept for Sustainable 3D Printing Applications -- 3.1 A Thermoplastic Behavior as a Way of Control Material Setting.
3.2 Assessment of Water-Resistance from Mechanical Performances.
Record Nr. UNINA-9910731488103321
Amziane Sofiane  
Cham : , : Springer Nature Switzerland : , : Imprint : Springer, , 2023
Materiale a stampa
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Bio-based Building Skin [[electronic resource] /] / by Anna Sandak, Jakub Sandak, Marcin Brzezicki, Andreja Kutnar
Bio-based Building Skin [[electronic resource] /] / by Anna Sandak, Jakub Sandak, Marcin Brzezicki, Andreja Kutnar
Autore Sandak Anna
Edizione [1st ed. 2019.]
Pubbl/distr/stampa Singapore, : Springer Nature, 2019
Descrizione fisica 1 online resource (183)
Disciplina 720.47
Collana Environmental Footprints and Eco-design of Products and Processes
Soggetto topico Sustainable architecture
Building materials
Biomaterials
Sustainable development
Buildings—Design and construction
Building
Construction
Engineering, Architectural
Structural materials
Sustainable Architecture/Green Buildings
Building Materials
Sustainable Development
Building Construction and Design
Structural Materials
Soggetto non controllato Energy
Sustainable architecture
Building materials
Biomaterials
Sustainable development
Buildings—Design and construction
Building
Construction
Engineering, Architectural
Structural materials
ISBN 981-13-3747-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto State-of-the-art in building facades -- Biomaterials for building skins -- Designing building skins with biomaterials -- Best practices -- Service life performance -- Portfolio of bio-based façade materials -- Future perspectives.
Record Nr. UNINA-9910350319903321
Sandak Anna  
Singapore, : Springer Nature, 2019
Materiale a stampa
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Biofibers and Biopolymers for Biocomposites : Synthesis, Characterization and Properties / / edited by Anish Khan, Sanjay Mavinkere Rangappa, Suchart Siengchin, Abdullah M. Asiri
Biofibers and Biopolymers for Biocomposites : Synthesis, Characterization and Properties / / edited by Anish Khan, Sanjay Mavinkere Rangappa, Suchart Siengchin, Abdullah M. Asiri
Edizione [1st ed. 2020.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Descrizione fisica 1 online resource (XVII, 312 p. 164 illus., 84 illus. in color.)
Disciplina 572.33
Soggetto topico Biomaterials
Mechanics
Mechanics, Applied
Materials science
Building materials
Solid Mechanics
Characterization and Evaluation of Materials
Building Materials
ISBN 3-030-40301-7
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto 1.Introduction to biofibers and biopolymers -- 2.Opportunities and Challenges in biocomposites from Sustainable and Renewable Resources -- 3.Biodegradable polymers and fibers from renewable sources -- 4.Biofibers/biopolymers for manufacture of lightweight materials -- 5.Structure and surface morphology techniques for biopolymers -- 6.Biopolymers and their processing requirements -- 7.Surface Characterization techniques for biofibers as reinforcement material in composites.
Record Nr. UNINA-9910410051403321
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2020
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Biopolymers in the Textile Industry [[electronic resource] ] : Opportunities and Limitations / / edited by Shakeel Ahmed, Mohd Shabbir
Biopolymers in the Textile Industry [[electronic resource] ] : Opportunities and Limitations / / edited by Shakeel Ahmed, Mohd Shabbir
Autore Ahmed Shakeel
Edizione [1st ed. 2024.]
Pubbl/distr/stampa Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2024
Descrizione fisica 1 online resource (321 pages)
Disciplina 620.192
Altri autori (Persone) ShabbirMohd
Soggetto topico Biopolymers
Biomaterials
Building materials
Green chemistry
Sustainability
Composite materials
Wood, fabric, and textiles
Green Chemistry
Composites
ISBN 981-9706-84-X
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto 1. Introduction to biopolymers and their potential in the textile industry -- 2. Properties and performance of biopolymers in textile applications -- 3. Biopolymers in textile finishing and functionalization -- 4. Biopolymers in textile dyeing and printing -- 5. Applications of biopolymers in clothing and fashion -- 6. Biopolymers in technical textiles -- 7. Challenges and limitations of using biopolymers in the textile industry -- 8. Biopolymers in textile recycling and disposal -- 9. Biopolymers in textile-based filter materials -- 10. Biopolymers in textile-based insulation materials -- 11. Biopolymers in textile-based scaffolding and wound healing -- 12. Environmental impact and economic benefits of biopolymers in the textile industry -- 13. Future perspectives and potential areas of research in biopolymers for textile applications.
Record Nr. UNINA-9910847580803321
Ahmed Shakeel  
Singapore : , : Springer Nature Singapore : , : Imprint : Springer, , 2024
Materiale a stampa
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Biotechnologies and Biomimetics for Civil Engineering / / edited by Fernando Pacheco Torgal, J. A. Labrincha, M. V. Diamanti, C.-P. Yu, H. K. Lee
Biotechnologies and Biomimetics for Civil Engineering / / edited by Fernando Pacheco Torgal, J. A. Labrincha, M. V. Diamanti, C.-P. Yu, H. K. Lee
Edizione [1st ed. 2015.]
Pubbl/distr/stampa Cham : , : Springer International Publishing : , : Imprint : Springer, , 2015
Descrizione fisica 1 online resource (441 p.)
Disciplina 628
660.6
Soggetto topico Building materials
Energy efficiency
Environmental engineering
Biotechnology
Building Materials
Energy Efficiency
Environmental Engineering/Biotechnology
ISBN 3-319-09287-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto 1 -- Introduction to biotechnologies and biomimetics for civil engineering 2 -- Basics of construction microbial biotechnology  3 -- General aspects of biomimetic materials 4 -- Bioinspired design for climate change 5 -- Bioinspired building facades 6 -- A green building envelope: a crucial contribution to biophilic cities 7 -- Architectural bio-photo reactors: harvesting micro-algae on the surface of architecture 8 -- Reducing indoor air pollutants through biotechnology 9 -- Bio-inspired self-cleaning materials 10 -- Bio-Inspired strategy for developing innovative bridges 11 -- Bioinspired sensors for structural health monitoring 12 -- Bioinspired flexible construction materials 13 -- Bioinspired concrete 14 -- Production of bacteria for structural concrete 15 -- Bacteria for concrete surface treatment  16 -- Bacteria for surface treatment of normal and lightweight concrete: A case study 17 -- Biotechnological aspects of soil decontamination 18 -- Microbial fuel cells for water treatment.
Record Nr. UNINA-9910299855303321
Cham : , : Springer International Publishing : , : Imprint : Springer, , 2015
Materiale a stampa
Lo trovi qui: Univ. Federico II
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