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Water vapor adsorption by dry soils: A potential link between the water and carbon cycleshttps://doi.org/10.1016/j.scitotenv.2022.153746Lopez-Canfin C., Lázaro R., Sánchez-Cañete E.P.Jun 2022ArticleScience of the Total Environment
Impact of urban aerosols on the cloud condensation activity using a clustering modelhttps://doi.org/10.1016/j.scitotenv.2022.159657Rejano F., Casquero-Vera J.A., Lyamani H., Andrews E., Casans A., Pérez-Ramírez D., Alados-Arboledas L., Titos G., Olmo F.J.Feb 2023ArticleScience of the Total Environment
Phenomenology and geographical gradients of atmospheric deposition in southwestern Europe: Results from a multi-site monitoring networkhttps://doi.org/10.1016/j.scitotenv.2020.140745Pey J., Larrasoaña J.C., Pérez N., Cerro J.C., Castillo S., Tobar M.L., de Vergara A., Vázquez I., Reyes J., Mata M.P., Mochales T., Orellana J.M., Causapé J.Nov 2020ArticleScience of the Total Environment
Corrigendum to “Water vapor adsorption by dry soils: A potential link between the water and carbon cycles” [Sci. Total Environ. volume 824 (2022) 153746] (Science of the Total Environment (2022) 824, (S0048969722008385), (10.1016/j.scitotenv.2022.153746))https://doi.org/10.1016/j.scitotenv.2023.162457Lopez-Canfin C., Lázaro R., Sánchez-Cañete E.P.May 2023ErratumScience of the Total Environment
Diurnal source apportionment of organic and inorganic atmospheric particulate matter at a high-altitude mountain site under summer conditions (Sierra Nevada; Spain)https://doi.org/10.1016/j.scitotenv.2023.167178Jaén C., Titos G., Castillo S., Casans A., Rejano F., Cazorla A., Herrero J., Alados-Arboledas L., Grimalt J.O., van Drooge B.L.Dic 2023ArticleScience of the Total Environment
Unravelling the main mechanism responsible for nocturnal CO2 uptake by dryland soilshttps://doi.org/10.1016/j.scitotenv.2024.171751Kim M., Lopez-Canfin C., Lázaro R., Sánchez-Cañete E.P., Weber B.May 2024ArticleScience of the Total Environment
Determining the impact of new particle formation events on cloud condensation nuclei (CCN) concentrationshttps://doi.org/10.1016/j.scitotenv.2025.179094Casans A., Casquero-Vera J.A., Rejano F., Lyamani H., Cazorla A., Zabala I., Huang W., Agro’ M., Barreto A., Rodríguez S., González Y., Bianchi F., Petäjä T., Olmo F.J., Alados-Arboledas L., Cariñanos P., Gysel-Beer M., Titos G.Abr 2025ArticleScience of the Total Environment
Harmonized aerosol size distribution, cloud condensation nuclei, chemistry and optical properties at 10 siteshttps://doi.org/10.1038/s41597-025-04931-yAndrews E., Zabala I., Carrillo-Cardenas G., Titos G., Casquero-Vera J.A., Hallar A.G.Dic 2025Data PaperScientific Data
Atmospheric new particle formation identifier using longitudinal global particle number size distribution datahttps://doi.org/10.1038/s41597-024-04079-1Kecorius S., Madueño L., Lovric M., Racic N., Schwarz M., Cyrys J., Casquero-Vera J.A., Alados-Arboledas L., Conil S., Sciare J., Ondracek J., Hallar A.G., Gómez-Moreno F.J., Ellul R., Kristensson A., Sorribas M., Kalivitis N., Mihalopoulos N., Peters A., Gini M., Eleftheriadis K., Vratolis S., Jeongeun K., Birmili W., Bergmans B., Nikolova N., Dinoi A., Contini D., Marinoni A., Alastuey A., Petäjä T., Rodriguez S., Picard D., Brem B., Priestman M., Green D.C., Beddows D.C.S., Harrison R.M., O’Dowd C., Ceburnis D., Hyvärinen A., Henzing B., Crumeyrolle S., Putaud J.P., Laj P., Weinhold K., Plauškaitė K., Byčenkienė S.Dic 2024Data PaperScientific Data
A global view on the effect of water uptake on aerosol particle light scatteringhttps://doi.org/10.1038/s41597-019-0158-7Burgos M.A., Andrews E., Titos G., Alados-Arboledas L., Baltensperger U., Day D., Jefferson A., Kalivitis N., Mihalopoulos N., Sherman J., Sun J., Weingartner E., Zieger P.Dic 2019Data PaperScientific Data