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Cloud condensation nuclei phenomenology: predictions based on aerosol chemical and optical propertieshttps://doi.org/10.5194/acp-26-3697-2026Zabala I., Casquero-Vera J.A., Andrews E., Casans A., Carrillo-Cardenas G., Gannet Hallar A., Titos G.Mar 2026ArticleAtmospheric Chemistry and Physics
Changes in black carbon emissions over Europe due to COVID-19 lockdownshttps://doi.org/10.5194/acp-21-2675-2021Evangeliou N., Platt S.M., Eckhardt S., Lund Myhre C., Laj P., Alados-Arboledas L., Backman J., Brem B.T., Fiebig M., Flentje H., Marinoni A., Pandolfi M., Yus-Dìez J., Prats N., Putaud J.P., Sellegri K., Sorribas M., Eleftheriadis K., Vratolis S., Wiedensohler A., Stohl A.Feb 2021ArticleAtmospheric Chemistry and Physics
Statistical validation of Aeolus L2A particle backscatter coefficient retrievals over ACTRIS/EARLINET stations on the Iberian Peninsulahttps://doi.org/10.5194/acp-22-1425-2022Abril-Gago J., Guerrero-Rascado J.L., Costa M.J., Bravo-Aranda J.A., Sicard M., Bermejo-Pantaleón D., Bortoli D., Granados-Muñoz M.J., Rodríguez-Gómez A., Muñoz-Porcar C., Comerón A., Ortiz-Amezcua P., Salgueiro V., Jiménez-Martín M.M., Alados-Arboledas L.Ene 2022ArticleAtmospheric Chemistry and Physics
Phase matrix characterization of long-range-Transported Saharan dust using multiwavelength-polarized polar imaging nephelometryhttps://doi.org/10.5194/acp-25-6325-2025Bazo E., Pérez-Ramírez D., Valenzuela A., Martins J.V., Titos G., Cazorla A., Rejano F., Patrón D., Díaz-Zurita A., García-Izquierdo F.J., Fuertes D., Alados-Arboledas L., Olmo F.J.Jun 2025ArticleAtmospheric Chemistry and Physics
New particle formation at urban and high-altitude remote sites in the south-eastern Iberian Peninsulahttps://doi.org/10.5194/acp-20-14253-2020Casquero-Vera J.A., Lyamani H., Dada L., Hakala S., Paasonen P., Román R., Fraile R., Petäjä T., Olmo-Reyes F.J., Alados-Arboledas L.Nov 2020ArticleAtmospheric Chemistry and Physics
Long-term aerosol optical hygroscopicity study at the ACTRIS SIRTA observatory: Synergy between ceilometer and in situ measurementshttps://doi.org/10.5194/acp-19-7883-2019Bedoya-Velásquez A.E., Titos G., Antonio Bravo-Aranda J., Haeffelin M., Favez O., Petit J.E., Andrés Casquero-Vera J., José Olmo-Reyes F., Montilla-Rosero E., Hoyos C.D., Alados-Arboledas L., Luis Guerrero-Rascado J.Jun 2019ArticleAtmospheric Chemistry and Physics
Measured and modelled air quality related effects of a noise barrier near a busy highwayhttps://doi.org/10.5194/acp-25-18719-2025Harni S.D., Johansson L., Niemi J.V., Silvonen V., Casquero-Vera J.A., Kousa A., Luoma K., Le V., Brus D., Doulgeris K., Rönkkö T., Manninen H.E., Petäjä T., Timonen H.Dic 2025ArticleAtmospheric Chemistry and Physics
Multidecadal trend analysis of in situ aerosol radiative properties around the worldhttps://doi.org/10.5194/acp-20-8867-2020Collaud Coen M., Andrews E., Lastuey A., Petkov Arsov T., Backman J., Brem B.T., Bukowiecki N., Couret C., Eleftheriadis K., Flentje H., Fiebig M., Gysel-Beer M., Hand J.L., Hoffer A., Hooda R., Hueglin C., Joubert W., Keywood M., Eun Kim J., Kim S.W., Labuschagne C., Lin N.H., Lin Y., Lund Myhre C., Luoma K., Lyamani H., Marinoni A., Mayol-Bracero O.L., Mihalopoulos N., Pandolfi M., Prats N., Prenni A.J., Putaud J.P., Ries L., Reisen F., Sellegri K., Sharma S., Sheridan P., Patrick Sherman J., Sun J., Titos G., Torres E., Tuch T., Weller R., Wiedensohler A., Zieger P., Laj P.Jul 2020ArticleAtmospheric Chemistry and Physics
A global model-measurement evaluation of particle light scattering coefficients at elevated relative humidityhttps://doi.org/10.5194/acp-20-10231-2020Burgos M.A., Andrews E., Titos G., Benedetti A., Bian H., Buchard V., Curci G., Kipling Z., Kirkeväg A., Kokkola H., Laakso A., Letertre-Danczak J., T. Lund M., Matsui H., Myhre G., Randles C., Schulz M., Van Noije T., Zhang K., Alados-Arboledas L., Baltensperger U., Jefferson A., Sherman J., Sun J., Weingartner E., Zieger P.Sep 2020ArticleAtmospheric Chemistry and Physics
The unprecedented 2017-2018 stratospheric smoke event: Decay phase and aerosol properties observed with the EARLINEThttps://doi.org/10.5194/acp-19-15183-2019Baars H., Ansmann A., Ohneiser K., Haarig M., Engelmann R., Althausen D., Hanssen I., Gausa M., Pietruczuk A., Szkop A., Stachlewska I.S., Wang D., Reichardt J., Skupin A., Mattis I., Trickl T., Vogelmann H., Navas-Guzmán F., Haefele A., Acheson K., Ruth A.A., Tatarov B., Müller D., Hu Q., Podvin T., Goloub P., Veselovskii I., Pietras C., Haeffelin M., Fréville P., Sicard M., Comerón A., García A.J.F., Menéndez F.M., Córdoba-Jabonero C., Guerrero-Rascado J.L., Alados-Arboledas L., Bortoli D., Costa M.J., Dionisi D., Liberti G.L., Wang X., Sannino A., Papagiannopoulos N., Boselli A., Mona L., D'Amico G., Romano S., Perrone M.R., Belegante L., Nicolae D., Grigorov I., Gialitaki A., Amiridis V., Soupiona O., Papayannis A., Mamouri R.E., Nisantzi A., Heese B., Hofer J., Schechner Y.Y., Wandinger U., Pappalardo G.Dic 2019ArticleAtmospheric Chemistry and Physics