selected publications
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academic article
- Synthesis and application of calcium silicate hydrate (C-S-H) nanoparticles for early strength enhancement by eco-friendly low carbon binders. Zeitschrift für Naturforschung B. 78:215-221. 2023
- Performance of sustainable mortar using calcined clay, fly ash, limestone powder and reinforced with hybrid fibers. Case Studies in Construction Materials. 16:e00849-e00849. 2022
- Use of celesto-barite mine waste in the production of eco-friendly white cement. European Journal of Environmental and Civil Engineering. 27:239-262. 2022
- C–S–H–Polycondensate nanocomposites as effective seeding materials for Portland composite cements. Cement and Concrete Composites. 125:104278-104278. 2022
- New insights into the effects of aging on Portland cement hydration and on retarder performance. Construction and Building Materials. 274:122104-122104. 2021
- β-Naphthalene sulfonate formaldehyde-based nanocomposites as new seeding materials for Portland cement. Construction and Building Materials. 264:120240-120240. 2020
- Effect of non-ionic auxiliary dispersants on the rheological properties of mortars and concretes of low water-to-cement ratio. Construction and Building Materials. 259:119780-119780. 2020
- Blending of mining wastes from the Hammam Zriba mine (Northeast Tunisia) with the primary ingredients of clinkers: an evaluation of effects on gray Portland clinker properties. Arabian Journal of Geosciences. 13. 2020
- On the correct chemical nomenclature of C3S, tricalcium oxy silicate. Cement and Concrete Research. 130:105957-105957. 2020
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chapter
- Cements for CO2Capture and Storage Wells. Acs Symposium Series. 369-410. 2022
- Influence of Calcined Clays on Workability of Low Carbon Composite Cements. Lecture notes in civil engineering. 677-685. 2021
- Effectiveness of Amphoteric PCE Superplasticizers in Calcined Clay Blended Cements. Rilem bookseries. 2020
- Use of a Nano Clay for Early Strength Enhancement of Portland Cement. Springer eBooks. 199-206. 2015