Hassein-Bey, A.H.; Belhadj, A.-E.; Tahraoui, H.; Toumi, S.; Sid, A.N.E.H.; Kebir, M.; Chebli, D.; Amrane, A.; Zhang, J.; Mouni, L.
Experimental Investigation of Fluid Flow through Zinc Open-Cell Foams Produced by the Excess Salt Replication Process and Suitable as a Catalyst in Wastewater Treatment. Water 2023, 15, 1405.
https://doi.org/10.3390/w15071405
AMA Style
Hassein-Bey AH, Belhadj A-E, Tahraoui H, Toumi S, Sid ANEH, Kebir M, Chebli D, Amrane A, Zhang J, Mouni L.
Experimental Investigation of Fluid Flow through Zinc Open-Cell Foams Produced by the Excess Salt Replication Process and Suitable as a Catalyst in Wastewater Treatment. Water. 2023; 15(7):1405.
https://doi.org/10.3390/w15071405
Chicago/Turabian Style
Hassein-Bey, Amel Hind, Abd-Elmouneïm Belhadj, Hichem Tahraoui, Selma Toumi, Asma Nour El Houda Sid, Mohammed Kebir, Derradji Chebli, Abdeltif Amrane, Jie Zhang, and Lotfi Mouni.
2023. "Experimental Investigation of Fluid Flow through Zinc Open-Cell Foams Produced by the Excess Salt Replication Process and Suitable as a Catalyst in Wastewater Treatment" Water 15, no. 7: 1405.
https://doi.org/10.3390/w15071405
APA Style
Hassein-Bey, A. H., Belhadj, A.-E., Tahraoui, H., Toumi, S., Sid, A. N. E. H., Kebir, M., Chebli, D., Amrane, A., Zhang, J., & Mouni, L.
(2023). Experimental Investigation of Fluid Flow through Zinc Open-Cell Foams Produced by the Excess Salt Replication Process and Suitable as a Catalyst in Wastewater Treatment. Water, 15(7), 1405.
https://doi.org/10.3390/w15071405