Pełech, I.; Kusiak-Nejman, E.; Staciwa, P.; Sibera, D.; Kapica-Kozar, J.; Wanag, A.; Latzke, F.; Pawłowska, K.; Michalska, A.; Narkiewicz, U.;
et al. CO2 Sorbents Based on Spherical Carbon and Photoactive Metal Oxides: Insight into Adsorption Capacity, Selectivity and Regenerability. Molecules 2022, 27, 6802.
https://doi.org/10.3390/molecules27206802
AMA Style
Pełech I, Kusiak-Nejman E, Staciwa P, Sibera D, Kapica-Kozar J, Wanag A, Latzke F, Pawłowska K, Michalska A, Narkiewicz U,
et al. CO2 Sorbents Based on Spherical Carbon and Photoactive Metal Oxides: Insight into Adsorption Capacity, Selectivity and Regenerability. Molecules. 2022; 27(20):6802.
https://doi.org/10.3390/molecules27206802
Chicago/Turabian Style
Pełech, Iwona, Ewelina Kusiak-Nejman, Piotr Staciwa, Daniel Sibera, Joanna Kapica-Kozar, Agnieszka Wanag, Filip Latzke, Karolina Pawłowska, Adrianna Michalska, Urszula Narkiewicz,
and et al. 2022. "CO2 Sorbents Based on Spherical Carbon and Photoactive Metal Oxides: Insight into Adsorption Capacity, Selectivity and Regenerability" Molecules 27, no. 20: 6802.
https://doi.org/10.3390/molecules27206802
APA Style
Pełech, I., Kusiak-Nejman, E., Staciwa, P., Sibera, D., Kapica-Kozar, J., Wanag, A., Latzke, F., Pawłowska, K., Michalska, A., Narkiewicz, U., & Morawski, A. W.
(2022). CO2 Sorbents Based on Spherical Carbon and Photoactive Metal Oxides: Insight into Adsorption Capacity, Selectivity and Regenerability. Molecules, 27(20), 6802.
https://doi.org/10.3390/molecules27206802