PUBLICACIÓN

Efficient removal of antibiotic ciprofloxacin by catalytic wet air oxidation using sewage sludge-based catalysts: Degradation mechanism by DFT studies

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ACCEDER A LA PUBLICACIÓN: Scopus Orcid

Gutierrez-Sanchez P., Alvarez-Torrellas S., Larriba M., Gil M.V., Garrido-Zoido J.M., Garcia J.

2023 Journal of Environmental Chemical Engineering

Chemical Engineering (miscellaneous) (Q1), Pollution (Q1), Process Chemistry and Technology (Q1), Waste Management and Disposal (Q1)

JCR: 7.4

SJR: 1.355


CITAS

37

DOI

10.1016/j.jece.2023.109344

EID

2-s2.0-85147732742

EISSN

2213-3437

BIBTEX

@article{Guti_rrez_S_nchez_2023, doi = {10.1016/j.jece.2023.109344}, url = {https://doi.org/10.1016%2Fj.jece.2023.109344}, year = 2023, month = {apr}, publisher = {Elsevier {BV}}, volume = {11}, number = {2}, pages = {109344}, author = {Pablo Guti{\'{e}}rrez-S{\'{a}}nchez and Silvia {\'{A}}lvarez-Torrellas and Marcos Larriba and M. Victoria Gil and Juan M. Garrido-Zoido and Juan Garc{\'{\i}}a}, title = {Efficient removal of antibiotic ciprofloxacin by catalytic wet air oxidation using sewage sludge-based catalysts: Degradation mechanism by {DFT} studies}, journal = {Journal of Environmental Chemical Engineering}}


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