Effect of Portland Cement on the Selected Properties of Flue Gas Desulfurization Gypsum-Based Plasters

Author:

Baran Edyta1,Hynowski Mariusz1,Kotwica Łukasz2,Rogowski Jacek3ORCID

Affiliation:

1. Research and Development Center, Branch Leszcze, Atlas sp. z o.o., Leszcze 15, 28-400 Pińczów, Poland

2. Department of Building Materials Technology, Faculty of Materials Science and Ceramics, AGH University of Science and Technology, al. Adama Mickiewicza 30, 30-059 Kraków, Poland

3. Institute of General and Ecological Chemistry, Łódź University of Technology, ul. Żeromskiego 116, 90-924 Łódź, Poland

Abstract

The introduction of the European Union’s climate change legislation and the intended use of renewable energy sources instead of fossil fuels will significantly reduce the production of flue gas desulfurization (FGD) gypsum used as the raw material for gypsum mortar plasters’ production. This has forced mortar producers to look for alternative materials, including gypsum–cement composites. This work investigated the mechanical strength and linear extension of four gypsum–cement mortars with the gypsum content reduced to 30%. The authors showed that the cement admixture of 6 to 12% introduced into the prepared mortars resulted in the formation of gypsum–cement mortars, which fulfill the requirements of the EN 13279-1:2008 standard concerning mechanical strength. This publication took into account the use of scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), and X-ray diffractometry to characterize the chemical and phase composition of the mortars up to 180 days of dry air curing and increased relative humidity (RH) conditions. The formation of thaumasite, ettringite, and mixed ettringite–thaumasite phases was interesting because of their deleterious effect on the durability of plaster mortars.

Funder

European Union

Publisher

MDPI AG

Subject

General Materials Science

Reference53 articles.

1. (2023, March 10). Główny Urząd Statystyczny, Available online: https://stat.gov.pl/obszary-tematyczne/przemysl-budownictwo-srodki-trwale/przemysl/produkcja-wazniejszych-wyrobow-przemyslowych-w-marcu-2022-roku,2,120.html.

2. Galos, K., and Lewicka, E. (2021). Gospodarka Surowcami Mineralnymi w Polsce w Latach 2011–2020, IGSMiE PAN.

3. Szuflicki, M., Malon, A., and Tymiński, M. (2022). Gips i Anhydryt, Bilans Zasobów Złóż Kopalin w Polsce wg Stanu na 31 XII 2021 r.

4. Analysis of the Changes in Polish Gypsum Resources in the Context of Flue Gas Desulfurization in Conventional Power Plant;Szlugaj;Gospod. Surowcami Miner.,2015

5. Mikoś, J. (2000, January 29). Budowlany gips syntetyczny z odsiarczania spalin. Proceedings of the Konferencja Naukowo-Techniczna Procesy Budowlane, Gliwice-Kokotek, Poland.

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