Recent Trends in the Sustainability Improvement and Use of Wastes in Cementitious Materials

Utilization of Wastes and Locally Sourced Materials

Paperback Engels 2025 9780443156700
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Recent Trends in the Sustainability Improvement and Use of Wastes in Cementitious Materials: Utilization of Wastes and Locally Sourced Materials delves into modern advancements aimed at enhancing the sustainability of cementitious materials. With increasing awareness in the construction sector about the environmental repercussions of traditional cement, particularly Portland cement, the book explores various sustainable alternatives. By presenting theoretical foundations and practical applications, it outlines how waste products and local materials can be integrated into cementitious materials to mitigate environmental impact.

The book is divided into seven key sections: partial and total replacement of Portland cement as a binder, use of waste products as aggregate and reinforcement, life cycle assessment, numerical analysis, and case studies. It provides a comprehensive reference for academic researchers, materials scientists, engineers, R&D managers, and practitioners focusing on environmental sustainability in construction.

Specificaties

ISBN13:9780443156700
Taal:Engels
Bindwijze:Paperback

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Inhoudsopgave

Introduction Partial Replacement of Portland Cement<br>1. Use of Industrial Wastes<br>2. Use of Agricultural Wastes<br>3. Use of Locally Sourced Non-Waste Materials<br><br>Total Replacement of Portland Cement<br>4. Use of Industrial Wastes without Activator<br>5. Sustainable Alternatives to Portland Cement<br>6. Overview of Alkali-activated Materials<br>7. Use of Industrial Wastes as Precursor<br>8. Use of Agricultural Wastes as Precursors<br>9. Use of Natural Materials as Precursors<br>10. Use of Sustainable Activators in AAMs<br>11. Impact of Precursor and Activator type on<br><br>Sustainability Use of Waste Products as Aggregates<br>12. Use of Industrial Wastes<br>13. Use of Agricultural Wastes<br>14. Use of Construction and Demolition Wastes<br>15. Challenges with the use of waste products as aggregate<br>16. Performance Enhancement of Waste Products Used as Aggregate<br>17. Use of Locally Sourced Non-Waste Materials<br><br>Use of Waste Products as Reinforcement<br>18. Agricultural Wastes<br>19. Industrial Wastes<br>20. Natural Materials<br>21. Hybrid Wastes as Reinforcement<br>22. Improvement/Treatment of Wastes Used as Reinforcement<br><br>Life Cycle Assessment of Sustainable Cementitious Materials<br>23. Methods to evaluate the Life Cycle Assessment of Sustainable Cementitious Materials<br>24. Challenges with the Life Cycle Assessment of Sustainable Cementitious Materials<br><br>Numerical analysis and Prediction of Sustainable Cementitious Materials Properties<br>25. Application of Artificial Intelligence: Challenges and Opportunities<br>26. Numerical methods to Predict and Optimize Properties of Sustainable Cementitious Materials<br>27. Use of Artificial Intelligence to Predict Properties of Sustainable Cementitious Materials<br>28. Optimization and Modelling of Alkali-activated Materials<br><br>Case Studies and Practical Applications of Sustainable Cementitious Materials<br>29. Practical Applications of High-volume Industrial Wastes in Cementitious Materials<br>30. Global Examples of Use of Alkali-activated Materials<br>31. Long term Performance of Sustainable Cementitious Materials

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        Recent Trends in the Sustainability Improvement and Use of Wastes in Cementitious Materials