Robayo-Salazar, R.; MartÃnez, F.; Vargas, A.; MejÃa de Gutiérrez, R.
3D Printing of Hybrid Cements Based on High Contents of Powders from Concrete, Ceramic and Brick Waste Chemically Activated with Sodium Sulphate (Na2SO4). Sustainability 2023, 15, 9900.
https://doi.org/10.3390/su15139900
AMA Style
Robayo-Salazar R, MartÃnez F, Vargas A, MejÃa de Gutiérrez R.
3D Printing of Hybrid Cements Based on High Contents of Powders from Concrete, Ceramic and Brick Waste Chemically Activated with Sodium Sulphate (Na2SO4). Sustainability. 2023; 15(13):9900.
https://doi.org/10.3390/su15139900
Chicago/Turabian Style
Robayo-Salazar, Rafael, Fabio MartÃnez, Armando Vargas, and Ruby MejÃa de Gutiérrez.
2023. "3D Printing of Hybrid Cements Based on High Contents of Powders from Concrete, Ceramic and Brick Waste Chemically Activated with Sodium Sulphate (Na2SO4)" Sustainability 15, no. 13: 9900.
https://doi.org/10.3390/su15139900
APA Style
Robayo-Salazar, R., MartÃnez, F., Vargas, A., & MejÃa de Gutiérrez, R.
(2023). 3D Printing of Hybrid Cements Based on High Contents of Powders from Concrete, Ceramic and Brick Waste Chemically Activated with Sodium Sulphate (Na2SO4). Sustainability, 15(13), 9900.
https://doi.org/10.3390/su15139900