da Silveira, A.R.; Freire, A.L.; Elyseu, F.; de Fátima Peralta Muniz Moreira, R.; Peterson, M.; Doyle, A.; Pergher, S.B.C.; Hotza, D.; De Noni, A., Jr.
Synthesis of Waste-Derived Geopolymer–Zeolite Composite with Enhanced CO2 Adsorption Capacity. Eng 2024, 5, 3439-3450.
https://doi.org/10.3390/eng5040179
AMA Style
da Silveira AR, Freire AL, Elyseu F, de Fátima Peralta Muniz Moreira R, Peterson M, Doyle A, Pergher SBC, Hotza D, De Noni A Jr.
Synthesis of Waste-Derived Geopolymer–Zeolite Composite with Enhanced CO2 Adsorption Capacity. Eng. 2024; 5(4):3439-3450.
https://doi.org/10.3390/eng5040179
Chicago/Turabian Style
da Silveira, Andresa Rodrigues, Alisson Lopes Freire, Fábio Elyseu, Regina de Fátima Peralta Muniz Moreira, Michael Peterson, Aidan Doyle, Sibele Berenice Castella Pergher, Dachamir Hotza, and Agenor De Noni, Jr.
2024. "Synthesis of Waste-Derived Geopolymer–Zeolite Composite with Enhanced CO2 Adsorption Capacity" Eng 5, no. 4: 3439-3450.
https://doi.org/10.3390/eng5040179
APA Style
da Silveira, A. R., Freire, A. L., Elyseu, F., de Fátima Peralta Muniz Moreira, R., Peterson, M., Doyle, A., Pergher, S. B. C., Hotza, D., & De Noni, A., Jr.
(2024). Synthesis of Waste-Derived Geopolymer–Zeolite Composite with Enhanced CO2 Adsorption Capacity. Eng, 5(4), 3439-3450.
https://doi.org/10.3390/eng5040179