Abstract
The cement industry is one of the most developed industries in the world. However, it consumes excessive amounts of natural resources and can negatively impact the environment through its by-products: carbon dioxide (CO2), cement clinker dust (CKD) and cement bypass dust (CBPD). The amount of dust generated in the cement clinker production process depends largely on the technology used. It typically ranges from 0 to 25% by weight of the clinker, and a single cement plant is capable of producing 1000 tons of CBPD per day. Despite practical applications in many areas, such as soil stabilisation, concrete mix production, chemical processing or ceramic and brick production, the dust is still stored in heaps. This poses an environmental challenge, so new ways of managing it are being sought. Due to the significant content of free lime (>30%) in CBPD, this paper uses cement bypass dust as a binder replacement in autoclaved silica–lime products. Indeed, the basic composition of silicate bricks includes 92% sand, 8% lime and water. The investigation shows that it is possible to completely replace the binder with CBPD dust in the autoclaved products. The obtained results showed that all properties of produced bricks were satisfactory. The study concluded that many benefits could be achieved by using cement bypass dust in the production of bricks, including economic bricks for building, reducing the dependency on natural resources, reducing pollution and reducing negative impacts on the environment.
Funder
Kielce University of Technology
Subject
General Materials Science
Reference49 articles.
1. Statistics Poland (2020). Statistical Analyses. Market of Construction Products Manufactures in 2015–2018, Zakład Wydawnictw Statystycznych.
2. (2022, October 14). The Science in Poland. Available online: https://naukawpolsce.pl/aktualnosci.
3. A framework for systematic assessment of human error in construction sites—A sustainable approach;Ajith;Civil Eng. Arch.,2022
4. Borek, K., and Czapik, P. (2022). Utilization of waste glass in autoclaved silica–lime materials. Materials, 15.
5. Borek, K., Czapik, P., and Dachowski, R. (2020). Recycled glass as a substitute for quartz sand in silicate products. Materials, 13.
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献