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Projected hydrologic changes over the north of the Iberian Peninsula using a Euro-CORDEX multi-model ensemblehttps://doi.org/10.1016/j.scitotenv.2021.146126Yeste P., Rosa-Cánovas J.J., Romero-Jiménez E., García-Valdecasas Ojeda M., Gámiz-Fortis S.R., Castro-Díez Y., Esteban-Parra M.J.Jul 2021ArticleScience of the Total Environment
Environmental drivers of the seasonal exposure to airborne Alternaria spores in Spainhttps://doi.org/10.1016/j.scitotenv.2022.153596Picornell A., Rojo J., Trigo M.M., Ruiz-Mata R., Lara B., Romero-Morte J., Serrano-García A., Pérez-Badia R., Gutiérrez-Bustillo M., Cervigón-Morales P., Ferencova Z., Morales-González J., Sánchez-Reyes E., Fuentes-Antón S., Sánchez-Sánchez J., Dávila I., Oteros J., Martínez-Bracero M., Galán C., García-Mozo H., Alcázar P., Fernández S., González-Alonso M., Robles E., de Zabalza A.P., Ariño A.H., Recio M.Jun 2022ArticleScience of the Total Environment
How to select the optimal monitoring locations for an aerobiological network: A case of study in central northwest of Spainhttps://doi.org/10.1016/j.scitotenv.2022.154370Rodríguez-Fernández A., Oteros J., Vega-Maray A.M., Valencia-Barrera R.M., Galán C., Fernández-González D.Jun 2022ArticleScience of the Total Environment
A bi-objective mixed-integer linear programming model to optimize thinning schedules in wildfire-prone Pinus canariensis forestshttps://doi.org/10.1016/j.scitotenv.2025.179528Navarro-Cerrillo R.M., Acuna M., Ariza-Salamanca A.J., Martínez M.Á.V., Cedrés E.P.Jun 2025ArticleScience of the Total Environment
Evaluating tourist profiles and nature-based experiences in Biosphere Reserves using Flickr: Matches and mismatches between online social surveys and photo content analysishttps://doi.org/10.1016/j.scitotenv.2020.140067Moreno-Llorca R., F. Méndez P., Ros-Candeira A., Alcaraz-Segura D., Santamaría L., Ramos-Ridao Á.F., Revilla E., Bonet-García F.J., Vaz A.S.Oct 2020ArticleScience of the Total Environment
Towards European automatic bioaerosol monitoring: Comparison of 9 automatic pollen observational instruments with classic Hirst-type trapshttps://doi.org/10.1016/j.scitotenv.2022.161220Maya-Manzano J.M., Tummon F., Abt R., Allan N., Bunderson L., Clot B., Crouzy B., Daunys G., Erb S., Gonzalez-Alonso M., Graf E., Grewling Ł., Haus J., Kadantsev E., Kawashima S., Martinez-Bracero M., Matavulj P., Mills S., Niederberger E., Lieberherr G., Lucas R.W., O'Connor D.J., Oteros J., Palamarchuk J., Pope F.D., Rojo J., Šaulienė I., Schäfer S., Schmidt-Weber C.B., Schnitzler M., Šikoparija B., Skjøth C.A., Sofiev M., Stemmler T., Triviño M., Zeder Y., Buters J.Mar 2023ArticleScience 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
Evaluating the impact of dredging strategies at tidal inlets: Performance assessmenthttps://doi.org/10.1016/j.scitotenv.2018.12.227Zarzuelo C., López-Ruiz A., Ortega-Sánchez M.Mar 2019ArticleScience of the Total Environment
Tracking Montane Mediterranean grasslands: Analysis of the effects of snow with other related hydro-meteorological variables and land-use change on pollen emissionshttps://doi.org/10.1016/j.scitotenv.2018.08.311Algarra J.A., Cariñanos P., Herrero J., Delgado-Capel M., Ramos-Lorente M.M., Díaz de la Guardia C.Feb 2019ArticleScience of the Total Environment
Evaluation of the Semi-Continuous OCEC analyzer performance with the EUSAAR2 protocolhttps://doi.org/10.1016/j.scitotenv.2020.141266Karanasiou A., Panteliadis P., Perez N., Minguillón M.C., Pandolfi M., Titos G., Viana M., Moreno T., Querol X., Alastuey A.Dic 2020ArticleScience of the Total Environment