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2. A Lab-Scale Evaluation of Parameters Influencing the Mechanical Activation of Kaolin Using the Design of Experiments

4. Assessment of Industrial Large-Volume Wastes with High Potential to Be Used as Emerging Alkali-Activated Precursors: A Review

6. Research evolution of limestone calcined clay cement (LC3), a promising low-carbon binder – A comprehensive overview

13. Alkali-activated binders based on the coarse fraction of municipal solid waste incineration bottom ash

16. A Lab-Scale Evaluation of Parameters Influencing the Mechanical Activation of Kaolin Using the Design of Experiments.

23. Opportunities and Barriers for Valorizing Waste Incineration Bottom Ash: Iberian Countries as a Case Study

24. Analysing the potential use of a low-grade magnesium carbonate by-product as a filler in hot asphalt mixtures.

25. Magnesium phosphate cement incorporating sheep wool fibre for thermal insulation applications

26. Analysing the potential use of a low-grade magnesium carbonate by-product as a filler in hot asphalt mixtures

27. High-porosity alkali-activated binders based on glass and aluminium recycling industry waste

28. Evaluation of mechanically activated kaolin as alkali-activated material precursor

30. Pyroclastic volcanic ash as a potential precursor of alkali-activated binders - A case study from Tajogaite (La Palma, Canary Islands) volcano eruption

31. Preliminary Study of New Sustainable, Alkali-Activated Cements Using the Residual Fraction of the Glass Cullet Recycling as Precursor

32. Alkali-Activated Binders Using Bottom Ash from Waste-to-Energy Plants and Aluminium Recycling Waste

33. Eco-toxicity assessment of industrial by-product-based alkali-activated binders using the sea urchin embryogenesis bioassay

36. Municipal Solid Waste Incineration Bottom Ash as Sole Precursor in the Alkali-Activated Binder Formulation

38. Potential reactivity assessment of mechanically activated kaolin as alternative cement precursor

39. Magnesium phosphate cements formulated with low grade magnesium oxide incorporating phase change materials for thermal energy storage

40. Alkali-Activated Cements for TES Materials in Buildings’ Envelops Formulated With Glass Cullet Recycling Waste and Microencapsulated Phase Change Materials

42. Analysing the potential use of a low-grade magnesium carbonate by-product as a filler in hot asphalt mixtures

43. Potential reactivity assessment of mechanically activated kaolin as alternative cement precursor

44. Effect of Temperature and Humidity on the Synthesis of Alkali-Activated Binders Based on Bottom Ash from Municipal Waste Incineration

45. Development of Animal Fibres Composites for Construction Applications

49. Alkali-activated binders based on the coarse fraction of municipal solid waste incineration bottom ash

50. Preliminary study of new sustainable, alkali-activated cements using the residual fraction of the glass cullet recycling as precursor

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