Search results
Results: 211
Number of items: 211
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Hooke, J., Sandercock, P., Cammeraat, L. H., Lesschen, J. P., Borselli, L., Torri, D., Meerkerk, A., van Wesemael, B., Marchamalo, M., Barbera, G., Boix-Fayos, C., Castillo, V., & Navarro-Cano, J. A. (2017). Mechanisms of Degradation and Identification of Connectivity and Erosion Hotspots. In J. Hooke, & P. Sandercock (Eds.), Combating Desertification and Land Degradation: Spatial Stragegies Using Vegetation (pp. 13-37). (SpringerBriefs in Environmental Science ). Springer. https://doi.org/10.1007/978-3-319-44451-2_2 -
López-Vicente, M., Nadal-Romero, E., & Cammeraat, E. L. H. (2017). Hydrological Connectivity Does Change Over 70 Years of Abandonment and Afforestation in the Spanish Pyrenees. Land Degradation & Development, 28(4), 1298–1310. https://doi.org/10.1002/ldr.2531 -
Sandercock, P., Hooke, J., De Baets, S., Poesen, J., Meerkerk, A., van Wesemael, B., & Cammeraat, L. H. (2017). Effectiveness of Plants and Vegetation in Erosion Control and Restoration. In J. Hooke, & P. Sandercock (Eds.), Combating Desertification and Land Degradation: Spatial Strategies Using Vegetation (pp. 79-104). (SpringerBriefs in Environmental Science ). Springer. https://doi.org/10.1007/978-3-319-44451-2_4 -
Hooke, J., Barberá, G., Cammeraat, L. H., Castillo, V., Poesen, J., Torri, D., & van Wesemael, B. (2017). Introduction. In J. Hooke, & P. Sandercock (Eds.), Combating Desertification and Land Degradation: Spatial Strategies Using Vegetation (pp. 1-12). (SpringerBriefs in Environmental Science ). Springer. https://doi.org/10.1007/978-3-319-44451-2_1 -
Nadal-Romero, E., Cammeraat, E., Pérez-Cardiel, E., & Lasanta, T. (2016). Effects of secondary succession and afforestation practices on soil properties after cropland abandonment in humid Mediterranean mountain areas. Agriculture, Ecosystems and Environment, 228, 91-100. https://doi.org/10.1016/j.agee.2016.05.003 -
Nadal-Romero, E., Cammeraat, E., Serrano-Muela, M. P., Lana-Renault, N., & Regüés, D. (2016). Hydrological response of an afforested catchment in a Mediterranean humid mountain area: a comparative study with a natural forest. Hydrological Processes, 30(15), 2717-2733. https://doi.org/10.1002/hyp.10820 -
Nadal-Romero, E., Cammeraat, E., Pérez-Cardiel, E., & Lasanta, T. (2016). How do soil organic carbon stocks change after cropland abandonment in Mediterranean humid mountain areas? Science of the Total Environment, 566-567, 741-752. https://doi.org/10.1016/j.scitotenv.2016.05.031 -
Wang, X., Cammeraat, E. L. H., Díaz López, C., & Kalbitz, K. (2014). Mineralization of Eroded Organic Carbon Transported from a Loess Soil into Water. Soil Science Society of America Journal, 78(4), 1362-1367. https://doi.org/10.2136/sssaj2013.10.0443
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de Vet, S. J., Mittelmeijer-Hazeleger, M. C., Braakhekke, J. J. M., & Cammeraat, L. H. (2014). Physical weathering and modification of a rhyolitic hyaloclastite in Iceland. Bulletin of Volcanology, 76(6), 833. https://doi.org/10.1007/s00445-014-0833-7
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Cammeraat, L. H., Seijmonsbergen, A. C., Sevink, J., Hoogzaad, Y. P. G., Stoops, W. S., de Vet, S. J., de Vries, M. E., van Veelen, M., Weiler, H. A., Weiss, N., Sánchez-Vega, I., Chunga-Castro, F., & Roncal-Rabanal, M. (2014). Calidad del agua en relación con las propiedades del geoecosistema: un estudio de caso de una zona de jalca cerca de Cajamarca, Perú. In F. Cuesta, J. Sevink, L. D. Llambí, B. De Bièvre, & J. Posner (Eds.), Avances en investigación para la conservación de los páramos andinos (pp. 26u-286). CONDESAN.
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