Profil

Prochon Piotr

Main Referenced Co-authors
Piotrowski, Tomasz (10)
Garbacz, Andrzej (3)
Courard, Luc  (2)
Michel, Frédéric  (2)
Zhao, Zengfeng  (2)
Main Referenced Keywords
geopolymers (3); biomass (2); eurocodes (2); Geopolymers (2); Mortars (2);
Main Referenced Unit & Research Centers
Faculty of Civil Engineering, WUT (1)
Main Referenced Disciplines
Materials science & engineering (9)
Civil engineering (5)

Publications (total 14)

The most downloaded
999 downloads
Prochon, P., & Piotrowski, T. (2016). Bound water content measurement in cement pastes by stoichiometric and gravimetric analyses. Journal of Building Chemistry, 1 (1), 18-25. doi:10.17461/j.buildchem.2016.103 https://hdl.handle.net/2268/232592

The most cited

27 citations (Scopus®)

Prochon, P., Zhao, Z., Courard, L., Piotrowski, T., Michel, F., & Garbacz, A. (25 February 2020). Influence of Activators on Mechanical Properties of Modified Fly Ash Based Geopolymer Mortars. Materials, 13 (5). doi:10.3390/ma13051033 https://hdl.handle.net/2268/245538

Prochon, P., & Piotrowski, T. (20 December 2020). The effect of cement and aggregate type and w/c ratio on the bound water content and neutron shielding efficiency of concretes. Construction and Building Materials, 264 (120210). doi:10.1016/j.conbuildmat.2020.120210
Peer Reviewed verified by ORBi

Prochon, P., Zhao, Z., Courard, L., Piotrowski, T., Michel, F., & Garbacz, A. (25 February 2020). Influence of Activators on Mechanical Properties of Modified Fly Ash Based Geopolymer Mortars. Materials, 13 (5). doi:10.3390/ma13051033
Peer Reviewed verified by ORBi

Prochon, P. (2020). Geopolymer composites based on fly Ash from co-combustion of coal and biomass [Doctoral thesis, ULiège - Université de Liège]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/251571

Prochon, P. (11 February 2019). Fly Ash Geopolymer - a new type of alternative, sustainable binder. The influence of calcium compound on geopolymerization process [Poster presentation]. 2019 UEE day.

Piotrowski, T., Glinicka, J., Glinicki, M. A., & Prochon, P. (2019). Influence of gadolinium oxide and ulexite on cement hydration and technical properties of mortars for neutron radiation shielding purposes. Construction and Building Materials, 195, 583-589. doi:10.1016/j.conbuildmat.2018.11.076
Peer Reviewed verified by ORBi

Prochon, P. (21 November 2018). Wpływ rodzaju aktywatora na wytrzymałość zapraw geopolimerowych z granulowanego żużlu wielkopiecowego [Paper presentation]. VIII National Science Confernece Young Researchers In Poland "Research and Developement", Wroclaw, Poland.

Prochon, P., Zhao, Z., Piotrowski, T., Michel, F., Garbacz, A., & Courard, L. (08 November 2018). Influence of alkali activator on fly ash based geopolymer formation [Paper presentation]. III Francophone International Conference NoMaD 2018.

Prochon, P. (2018). Effect of Alkali activator type on strength of geopolymer mortars.

Piotrowski, T., Prochon, P., & Capuana, A. (2018). Mechanical Properties of Polymer Cement-Fiber-Reinforced Concrete (PC-FRC): Comparison Based on Experimental Studies. In International Congress on Polymers in Concrete (ICPIC 2018) (pp. 227-233). Springer International Publishing. doi:10.1007/978-3-319-78175-4_27
Peer reviewed

Piotrowski, T., & Prochon, P. (2018). Influence of water to solid ratio on mechanical properties of GBFS-based geopolymer foam concrete. MATEC Web of Conferences, 163, 06003. doi:10.1051/matecconf/201816306003
Peer reviewed

Prochon, P., & Piotrowski, T. (January 2018). Wymagania dla konstrukcji z betonu w obiektach specjalnych na przykładzie wytycznych do budowy elektrowni jądrowej. Izolacje, 23, 78-80.

Piotrowski, T., & Prochon, P. (December 2017). Przykłady stosowania wymagań dotyczących budowy obiektów energetyki jądrowej. Materialy Budowlane, 544 (12), 84-85. doi:10.15199/33.2017.12.25

Piotrowski, T., Garbacz, A., & Prochon, P. (2017). Konstrukcje z betonu w obiektach energetyki jądrowej. Warszawa, Poland: Politechnika Warszawska WIL.

Prochon, P., & Piotrowski, T. (2016). Bound water content measurement in cement pastes by stoichiometric and gravimetric analyses. Journal of Building Chemistry, 1 (1), 18-25. doi:10.17461/j.buildchem.2016.103
Peer reviewed

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