Use of blast furnace slag in cementitious materials for pavements-Systematic literature review and eco-efficiency

被引:17
作者
Silva, Lucas Henrique Pereira [1 ,2 ]
Nehring, Victor [1 ]
de Paiva, Fabio Friol Guedes [1 ]
Tamashiro, Jacqueline Roberta [1 ]
Galvin, Adela P. [3 ]
Lopez-Uceda, Antonio [4 ]
Kinoshita, Angela [1 ]
机构
[1] Univ Western Sao Paulo UNOESTE, Raposo Tavares Km 572, BR-19067175 Presidente Epitacio, SP, Brazil
[2] Fed Inst Educ Sci & Technol IFSP, Jose Ramos Jr St 27-50, BR-19470000 Presidente Epitacio, SP, Brazil
[3] Univ Cordoba, Construct Engn, Campus Rabanales, Cordoba 14071, Spain
[4] Univ Cordoba, Mat Sci & Met Engn, Campus Rabanales, Cordoba 14071, Spain
关键词
Blast furnace slag; Concrete pavement; Portland cement; Pozzolanic additions; Supplementary cement; COMPRESSIVE STRENGTH; ENGINEERING PROPERTIES; THERMAL-CONDUCTIVITY; INCORPORATING GGBS; CONCRETE PAVEMENT; STEEL SLAG; FLY-ASH; PERFORMANCE; ADMIXTURES; RESISTANCE;
D O I
10.1016/j.scp.2023.101030
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
To reduce the environmental impact of Portland cement manufacturing and increase profits, the industry has been using some waste in cement composition; and blast furnace slag is one of the most used for this purpose. Thus, this work aims to carry out a systematic review of recent scien-tific literature focusing on applications of the use of this residue in pavements. The keywords: "Blast Furnace Slag" and "Cement replacement"; were used in the search using the Web of Science database. A total of 3731 articles published in the last five years were found, in which 33, with the word "pavement", were selected. After applying the exclusion criteria, 20 articles were se-lected and analyzed for the present work. The main results published in the last five years that ad-dress the use of blast furnace slag in pavements, the effects on composites, the chemical composi-tion and physical properties of the waste are summarized in this work. The highly cited articles, with more than 200 citations to date, dealing with the use of this residue in cementitious compos-ites are also summarized. Additionally, based on the collected data, the life cycle assessment (LCA) was performed and showed that cement replacement by BFS reduces 48% CO2 emissions, saves 37% of energy, and provides 16.28% of cost economy in process. Therefore, this work demonstrates the high potential of this residue in contributing to the reduction of environmental impacts by reducing the extraction of raw materials, as well as by reducing the emission of pollut-ing gases.
引用
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页数:9
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