Recent Developments and Innovations in the Sustainable Production of Concrete

Recent Developments and Innovations in the Sustainable Production of Concrete

Bani-Hani, Khaldoon A.; Khan, Afzal Husain; Akhtar, Mohammad Nadeem

Elsevier - Health Sciences Division

11/2024

712

Mole

9780443238956

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Section A - Sources, materials, and waste products in concrete production 1. Valorization of industrial and agro-waste materials for production of green construction materials 2. A comprehensive study of concrete performance by using bacterial calcite precipitation 3. Self-compacting recycled aggregate concrete: future scope and challenges 4. Recent advances in microbiology in producing self-healing concrete 5 Geopolymer concrete: an innovative approach for sustainable infrastructure and advancement in circular economy 6. Ultrahigh-performance concrete: a new additive material in construction industry 7. Silica fume as sustainable supplementary cementitious materials in concrete 8. Cement replacement using pozzolanic materials: a sustainable approach 9. Mechanical and durability properties of bacteria-based admixed self-healing concrete under different exposures Section B - Economy, energy, and environment aspects in concrete production 10. Eco-efficient pavement construction materials 11. Crumb rubber as an eco-friendly aggregate in sustainable concrete: properties, integration, and future perspectives 12. Sustainability measurement of developed concrete by incorporating solid waste 13. Economic feasibility of a large-scale adoption of silica fume in construction 14. Circular economy in the construction sector: current trends and future outlook 15. Use of stabilized waste soil in the construction of sustainable concrete 16. Recycled aggregate concrete: a sustainable approach to concrete production 17. Circular economy in the construction sector in relation to brownfield redevelopment of a mining site: a case study of a mine in Ebonyi State, Nigeria 18. An experimental approach toward sustainable and eco-friendly sandcrete block using sawdust as a partial replacement for cement 19. Paving the future: breakthroughs in sustainable approaches to pavement 20. Strength behavior of ferrocement panel under the two-point loading system: a case study 21. Case studies of successful circular economy initiatives in the construction sector Section C - Machine learning approach in concrete construction 22. Machine learning in concrete construction: applications, challenges, and future aspects 23. Digital fabrication processes for cementitious materials using three-dimensional printing technologies 24. Internet of things in sustainable concrete production 25. Advancements in optimizing the quality assurance and crack detection by leveraging the application of emerging artificial intelligence (AI) trends for enrichment of civil infrastructure-a recapitulation
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3D printing; Agro-waste; Aluminosilicate materials; Artificial intelligence; Bacillus; Bacillus paramycoides; Bacteria; Bacterial encapsulation; Benefit-cost ratio; Biomineralization; Brownfield redevelopment; CNN; CO2 emission; Calcium carbonate precipitation; Carbon footprints; Case studies; Cement; Cement replacement; Ceramic wastes; Circular economy; Civil engineering; Composite materials; Compressive strength; Computational intelligence; Computer in society; Computer systems organization; Computer-aided engineering; Concrete; Concrete technology; Construction; Construction engineering; Construction materials; Cost-benefit analysis; Crack; Culture heritage; Deep learning; Durability; Durability properties; Eco-efficient materials; Energy efficiency; Energy engineering; Energy sustainability; Engineering; Engineering material; Engineering materials; Environment; Environmental chemical engineering; Environmental engineering; Environmental management; Environmental policy; Environmental protection; Exposure condition; Ferrocement panel; Fiber immobilization; Flexural strength; Fresh properties; Future outlook; Geopolymer concrete; Glass wastes; Global sustainability goals; Industrial waste; Innovation; Life cycle analysis; Machine learning; Materials characterization; Materials science; Materials science engineering; Materials structure; Materials synthesis; Mechanical performance; Mechanical properties; Metakaolin; Microstructural arrangement; Microstructure; Microstructure property; Mortar; Nanomaterials; Nanotechnological innovations; Nanotechnology; Natural fibers; Natural resources; Open mining site; Pavement construction; Pavements; Pozzolana; Pozzolanic reaction; Pozzolans; Printibale cements; Programing languages; Property and application; Quality control; Recycled aggregate concrete; Recycled aggregates; Rice husk ash; Robotics; SEM; Sandcrete blocks; Sawdust ash; Self-compacting concrete; Self-healing