H. Nguyen, V. Carvelli, W. Kunther, M. Illikainen, P. Kinnunen, Phase evolution and mechanical performance of an ettringite-based binder during hydrothermal aging, Cement and Concrete Research. 143 (2021) 106403 |
https://doi.org/10.1016/j.cemconres.2021.106403 |
H. Nguyen, W. Kunther, K. Gijbels, P. Samyn, V. Carvelli, M. Illikainen, P. Kinnunen, On the retardation mechanisms of citric acid in ettringite-based binders, Cement and Concrete Research. 140 (2021) 106315 |
https://doi.org/10.1016/j.cemconres.2020.106315 |
Lancellotti, I.; Piccolo, F.; Traven, K.; Češnovar, M.; Ducman, V.; Leonelli, C. Alkali Activation of Metallurgical Slags: Reactivity, Chemical Behavior, and Environmental Assessment. Materials 2021, 14, 639 |
https://doi.org/10.3390/ma14030639 |
V. Carvelli, A. Veljkovic, H. Nguyen, A. Adediran, P. Kinnunen, N. Ranjbar, M. Illikainen, Low-velocity impact of hot-pressed PVA fiber-reinforced alkali-activated stone wool composites, Cement and Concrete Composites. 114 (2020) 103805 |
https://doi.org/10.1016/j.cemconcomp.2020.103805 |
K. Gijbels, H. Nguyen, P. Kinnunen, P. Samyn, W. Schroeyers, Y. Pontikes, S. Schreurs, M. Illikainen, Radiological and leaching assessment of an ettringite-based mortar from ladle slag and phosphogypsum, Cement and Concrete Research. 128 (2020) 105954 |
https://doi.org/10.1016/j.cemconres.2019.105954
|
H. Nguyen, P. Kinnunen, V. Carvelli, M. Illikainen, Durability of ettringite-based composite reinforced with polypropylene fibers under combined chemical and physical attack, Cement and Concrete Composites. 102 (2019) 157–168 |
https://doi.org/10.1016/j.cemconcomp.2019.04.021
|
H. Nguyen, P. Kinnunen, K. Gijbels, V. Carvelli, H. Sreenivasan, A.M. Kantola, V.-V. Telkki, W. Schroeyers, M. Illikainen, Ettringite-based binder from ladle slag and gypsum – The effect of citric acid on fresh and hardened state properties, Cement and Concrete Research. 123 (2019) 105800 |
https://doi.org/10.1016/j.cemconres.2019.105800
|
K. Gijbels, H. Nguyen, P. Kinnunen, W. Schroeyers, Y. Pontikes, S. Schreurs, M. Illikainen, Feasibility of incorporating phosphogypsum in ettringite-based binder from ladle slag, Journal of Cleaner Production. 237 (2019) 117793 |
https://doi.org/10.1016/j.jclepro.2019.117793
|
M. Mastali, K.M. Shaad, Z. Abdollahnejad, M. Falah, P. Kinnunen, M. Illikainen, Towards sustainable bricks made with fiber-reinforced alkali-activated desulfurization slag mortars incorporating carbonated basic oxygen furnace aggregates, Construction and Building Materials. 232 (2020) 117258 |
https://doi.org/10.1016/j.conbuildmat.2019.117258
|
H. Nguyen, A. Kaas, P. Kinnunen, V. Carvelli, C. Monticelli, J. Yliniemi, M. Illikainen, Fiber reinforced alkali-activated stone wool composites fabricated by hot-pressing technique, Materials & Design. 186 (2020) 108315 |
https://doi.org/10.1016/j.matdes.2019.108315
|
E. Adesanya, M. Karhu, A. Ismailov, K. Ohenoja, P. Kinnunen, M. Illikainen, Thermal behavior of ladle slag mortars containing ferrochrome slag aggregates, Advances in Cement Research (2020) |
https://doi.org/10.1680/jadcr.19.00040
|
ČEŠNOVAR, Mark, TRAVEN, Katja, DUCMAN, Vilma. Microstructural evaluation of fibre-reinforced slag-based foams. Conference proceedings. The third RILEM Spring Convention and Conference, RSCC2020, Guimarães, Portugal (Article in press) |
https://www.rscc2020.civil.uminho.pt/
|
M. Mastali, A. Alzaza, K. Mohammad Shaad, P. Kinnunen, Z. Abdollahnejad, B. Woof, M. Illikainen, Using Carbonated BOF Slag Aggregates in Alkali-Activated Concretes, Materials. 12 (2019) 1288. |
https://doi.org/10.3390/ma12081288 |
A. Alzaza, M. Mastali, P. Kinnunen, L. Korat, Z. Abdollahnejad, V. Ducman, M. Illikainen, Production of Lightweight Alkali Activated Mortars Using Mineral Wools, Materials. 12 (2019) 1695. |
https://doi.org/10.3390/ma12101695 |
H. Nguyen, A. Kaas, P. Kinnunen, V. Carvelli, C. Monticelli, J. Yliniemi, M. Illikainen, Fiber Reinforced Alkali-Activated Stone Wool Composites Fabricated by Hot-Pressing Technique, Materials and Design (Article in press). |
https://doi.org/10.1016/j.matdes.2019.108315 |
Češnovar, M., Traven, K., Horvat, B., and Ducman, V. The Potential of Ladle Slag and Electric Arc Furnace Slag use in Synthesizing Alkali Activated Materials; the Influence of Curing on Mechanical Properties. Materials, 12 (2019), 1-18. |
https://doi.org/10.3390/ma12071173 |
Traven, K., Češnovar, M., Ducman, V. Particle size manipulation as an influential parameter in the development of mechanical properties in electric arc furnace slag-based AAM. Ceramics International, 45 (2019), 22632-22641. |
https://doi.org/10.1016/j.ceramint.2019.07.296 |
Češnovar, M., Traven, K., Ducman, V. (2019). The deformation of alkali activated materials at different curing temperature; Bogataj, M. (ed.), Kravanja, Z. (ed.), Novak-Pintarič, Z. (ed.), Conference proceedings. International Conference on Technologies & Business Models for Circular Economy, Portorož, Slovenia. University of Maribor Press (Article in press). |
http://tbmce.um.si/ |
Češnovar, M., Traven, K., Ducman, V.; Alkali activated foams from slag (FLOW). Malfliet, A. (ed.), Peys, A. (ed.), Di Maria, A. (ed.). Proceedings of the 6th International Slag Valorisation Symposium, 1-5 April 2019, Mechelen, Belgium: Science, innovation & entrepreneurship in pursuit of a sustainable world. Leuven: KU Leuven, Materials Engineering, 2019. pp. 237-240. |
https://slag-valorisation-symposium.eu/
|