Affiliation:
1. Department of Biosystems Engineering, Faculty of Environmental and Mechanical Engineering, Poznań University of Life Sciences, Wojska Polskiego 50 Street, 60-627 Poznan, Poland
2. Faculty of Materials Science and Ceramics, AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Cracow, Poland
Abstract
In the presented study, ye’elimite-aluminate-calcium (YAC) cement was synthesized. Complete synthesis of crystalline phases was achieved at a temperature of 1300 °C, which is 150 °C lower than the temperature standardly used in the processes of obtaining calcium aluminate cements (CAC). The greatest amount of ye’elimite phase (Klein complex), roughly 87% by mass, was acquired utilizing a sulphur ion transporter derived from artificial dihydrate gypsum obtained in the flue gas desulphurization process (variation I). In the case of anhydrite, the amount of synthesized crystalline ye’elimite in the clinker was 67% by weight (variant II). Depending on the synthesis conditions in the clinkers, the quantity of obtained calcium aluminates (C12A7, CA, and CA2) ranged from 20 to 40% by weight. Studies on the hydration process of YAC cement samples showed that the main products are hydrated calcium aluminates and dodecahydrate calcium alumino-sulphate. In sinters of YAC and OPC, no crystalline ettringite was observed. Hydration analysis of Chinese cement revealed the presence of crystalline ettringite and dodecahydrate calcium alumino-sulphate, as well as hydrated calcium silicates of the CSH type accompanied with pseudo-crystalline Al(OH)3. The obtained clinkers from variants I and II constitute a special binder, which, due to its phase composition after hydration, can be used in the construction of reactors for biogas production in eco-energy applications.
Funder
Department of Biosystems Engineering, Faculty of Environmental and Mechanical Engineering, Poznań University of Life Sciences
Subject
General Materials Science
Reference37 articles.
1. On the future of Chinese cement industry;Xu;Cem. Concr. Res.,2015
2. CemBR (2022, February 21). 2020–2021 Performance, and Supply and Demand to 2025, Global Cement Magazine, Available online: https://www.globalcement.com/pdf/eGCMarch2022ns.pdf.
3. Sustainable development and climate change initiatives;Damtoft;Cem. Concr. Res.,2008
4. Carbon footprint of calcium sulfoaluminate clinker production;Hanein;J. Clean Prod.,2018
5. Manufacture of rich-sulfoaluminate belite cement at low temperature from waste mixture by dry and hydrothermal processes;Kacimi;Constr. Build. Mater.,2022
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