Raccuia, S.G.M.; Zanda, E.; Bretti, C.; Formica, M.; Macedi, E.; Melchior, A.; Tolazzi, M.; Sanadar, M.; Lascari, D.; De Luca, G.;
et al. Multi-Analytical Approach for the Acid-Base, Thermal and Surface Properties Assessment of Waste Biomasses. Molecules 2024, 29, 5735.
https://doi.org/10.3390/molecules29235735
AMA Style
Raccuia SGM, Zanda E, Bretti C, Formica M, Macedi E, Melchior A, Tolazzi M, Sanadar M, Lascari D, De Luca G,
et al. Multi-Analytical Approach for the Acid-Base, Thermal and Surface Properties Assessment of Waste Biomasses. Molecules. 2024; 29(23):5735.
https://doi.org/10.3390/molecules29235735
Chicago/Turabian Style
Raccuia, Salvatore Giovanni Michele, Emanuele Zanda, Clemente Bretti, Mauro Formica, Eleonora Macedi, Andrea Melchior, Marilena Tolazzi, Martina Sanadar, Davide Lascari, Giovanna De Luca,
and et al. 2024. "Multi-Analytical Approach for the Acid-Base, Thermal and Surface Properties Assessment of Waste Biomasses" Molecules 29, no. 23: 5735.
https://doi.org/10.3390/molecules29235735
APA Style
Raccuia, S. G. M., Zanda, E., Bretti, C., Formica, M., Macedi, E., Melchior, A., Tolazzi, M., Sanadar, M., Lascari, D., De Luca, G., Irto, A., De Stefano, C., Cardiano, P., & Lando, G.
(2024). Multi-Analytical Approach for the Acid-Base, Thermal and Surface Properties Assessment of Waste Biomasses. Molecules, 29(23), 5735.
https://doi.org/10.3390/molecules29235735