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2021 | OriginalPaper | Buchkapitel

Interrelations Between Soil Erosion Conditioning Factors in Basins of Ecuador: Contributions to the Spatial Model Construction

verfasst von : Daniel Delgado, Mahrez Sadaoui, Henry Pacheco, Williams Méndez, Wolfgang Ludwig

Erschienen in: Proceedings of the 1st International Conference on Water Energy Food and Sustainability (ICoWEFS 2021)

Verlag: Springer International Publishing

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Abstract

Soil erosion due to the effect of surface runoff is one of the main environmental concerns inherent in the management plans of the hydrographic basins in Ecuador. The objective of this work was to analyze the interrelationships between the conditioning factors of soil erosion in hydrographic basins of the Ecuadorian territory, as an input for the construction of a spatial model of soil loss. The methodology considered the delimitation of the hydrographic basins, the calculation of elevations and slopes, the classification of land cover, lithology and R factor in Ecuador. The basins delimitation, calculation of elevations and slopes, were carried out from a DEM of 4 km of resolution; the land cover information was obtained from the Global Land Cover Database; the lithology factor was retrieved from the World Global Lithological Map Database; and the R factor were processed from the Global Rainfall Erosivity Database. The results indicated that the average elevation of the Ecuadorian basins ranges between 57 m and 2200 m. The average of the slopes decreases the greater the distance to the Andes Mountain, showing a greater variation in the basins that drain towards the Pacific. Most of the vegetation cover of the ground corresponds to closed forests and herbaceous vegetation. There is a great variety of lithological outcrops of different natures, which gives them different levels of erodibility. The R factor showed a similar behavior in the areas close to the Andes while, in the sectors close to the Pacific Ocean, the values were more dispersed.

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Literatur
1.
Zurück zum Zitat Panagos, P., Borrelli, P., Meusburger, K., Bofu, Y., Klik, A., Lim, K., Yang, J., Ni, J., Miao, C., Chattopadhyay, N., Sadeghi, S., Hazbavi, Z., Zabihi, M., Larionov, G., Krasnov, S., Gorobets, A., Levi, Y., Erpul, G., Birkel, C., Hoyos, N., Naipal, V., Paulo, T., Oliveira, C., Bonilla, M., Nel, W., Dashti, H., Boni, M., Diodato, N., Van Oost, K., Nearing, M., Ballabio, C.: Global rainfall erosivity assessment based on high-temporal resolution rainfall records. Sci. Rep. 7, 4175 (2017). https://doi.org/10.1038/s41598-017-04282-8CrossRef Panagos, P., Borrelli, P., Meusburger, K., Bofu, Y., Klik, A., Lim, K., Yang, J., Ni, J., Miao, C., Chattopadhyay, N., Sadeghi, S., Hazbavi, Z., Zabihi, M., Larionov, G., Krasnov, S., Gorobets, A., Levi, Y., Erpul, G., Birkel, C., Hoyos, N., Naipal, V., Paulo, T., Oliveira, C., Bonilla, M., Nel, W., Dashti, H., Boni, M., Diodato, N., Van Oost, K., Nearing, M., Ballabio, C.: Global rainfall erosivity assessment based on high-temporal resolution rainfall records. Sci. Rep. 7, 4175 (2017). https://​doi.​org/​10.​1038/​s41598-017-04282-8CrossRef
2.
Zurück zum Zitat Borrelli, P., Robinson, D.A., Fleischer, L.R., Lugato, E., Ballabio, C., Alewell, C., Meusburger, K., Modugno, S., Schutt, B., Ferro, V., Bagarello, V., Van Oost, K., Montanarella, L., Panagos, P.: An assessment of the global impact of 21st century land use change on soil erosion. Nat. Commun. 8 (2017) Borrelli, P., Robinson, D.A., Fleischer, L.R., Lugato, E., Ballabio, C., Alewell, C., Meusburger, K., Modugno, S., Schutt, B., Ferro, V., Bagarello, V., Van Oost, K., Montanarella, L., Panagos, P.: An assessment of the global impact of 21st century land use change on soil erosion. Nat. Commun. 8 (2017)
3.
Zurück zum Zitat Panagos, P., Borrelli, P., Poesen, J., Ballabio, C., Lugato, E., Meusburger, K., Montanarella, L., Alewell, C.: The new assessment of soil loss by water erosion in Europe. Environ. Sci. Policy 54, 438–447 (2015)CrossRef Panagos, P., Borrelli, P., Poesen, J., Ballabio, C., Lugato, E., Meusburger, K., Montanarella, L., Alewell, C.: The new assessment of soil loss by water erosion in Europe. Environ. Sci. Policy 54, 438–447 (2015)CrossRef
4.
Zurück zum Zitat Eswaran, H., Lal, R., Reich, P.F.: Land degradation: an overview. response to land degradation. In: Bridges, E.M., Hannam, I.D., Oldeman, L.R., Pening de Vries, F.W.T., Scherr, S.J., Sompatpanit, S. (eds.) Proceedings of the 2nd International Conference on Land Degradation and Desertification, Thailand, pp. 25–29 (1999) Eswaran, H., Lal, R., Reich, P.F.: Land degradation: an overview. response to land degradation. In: Bridges, E.M., Hannam, I.D., Oldeman, L.R., Pening de Vries, F.W.T., Scherr, S.J., Sompatpanit, S. (eds.) Proceedings of the 2nd International Conference on Land Degradation and Desertification, Thailand, pp. 25–29 (1999)
5.
Zurück zum Zitat Rellini, I., Scopesi, C., Olivari, S., Firpo, M., Maerker, M.: Assessment of soil erosion risk in a typical Mediterranean environment using a high-resolution RUSLE approach (Portofino promontory, NW-Italy). J. Maps 15(2), 356–362 (2019)CrossRef Rellini, I., Scopesi, C., Olivari, S., Firpo, M., Maerker, M.: Assessment of soil erosion risk in a typical Mediterranean environment using a high-resolution RUSLE approach (Portofino promontory, NW-Italy). J. Maps 15(2), 356–362 (2019)CrossRef
6.
Zurück zum Zitat Teng, H.F., Hu, J., Zhou, Y., Zhou, L.Q., Shi, Z.: Modelling and mapping soil erosion potential in China. J. Integr. Agric. 18(2), 251–264 (2019)CrossRef Teng, H.F., Hu, J., Zhou, Y., Zhou, L.Q., Shi, Z.: Modelling and mapping soil erosion potential in China. J. Integr. Agric. 18(2), 251–264 (2019)CrossRef
7.
Zurück zum Zitat Pacheco, H.A., Mendez, W., Moro, A.: Soil erosion risk zoning in the Ecuadorian coastal region using geo-technological tools. Earth Sci. Res. J. 23(4), 293–302 (2019)CrossRef Pacheco, H.A., Mendez, W., Moro, A.: Soil erosion risk zoning in the Ecuadorian coastal region using geo-technological tools. Earth Sci. Res. J. 23(4), 293–302 (2019)CrossRef
8.
Zurück zum Zitat Wischmeier, W.H., Smith, D.: Predicting rainfall erosion losses: a guide to conservation planning. Department of Agriculture, Science and Education Administration, p. 537 (1978) Wischmeier, W.H., Smith, D.: Predicting rainfall erosion losses: a guide to conservation planning. Department of Agriculture, Science and Education Administration, p. 537 (1978)
9.
Zurück zum Zitat Lehner, B., Verdin, K., Jarvis, A.: New global hydrography derived from spaceborne elevation data. Eos, Trans. Am. Geophys. Union 89(10), 93–94 (2008)CrossRef Lehner, B., Verdin, K., Jarvis, A.: New global hydrography derived from spaceborne elevation data. Eos, Trans. Am. Geophys. Union 89(10), 93–94 (2008)CrossRef
10.
Zurück zum Zitat Holmgren, P.: Multiple flow direction algorithms for runoff modelling in grid-based elevation models: an empirical evaluation. Hydrol. Process. 8(4), 327–334 (1994)CrossRef Holmgren, P.: Multiple flow direction algorithms for runoff modelling in grid-based elevation models: an empirical evaluation. Hydrol. Process. 8(4), 327–334 (1994)CrossRef
11.
Zurück zum Zitat Tarboton, D.G.: A new method for the determination of flow directions and upslope areas in grid digital elevation models. Water Resour. Res. 33(2), 309–319 (1997)CrossRef Tarboton, D.G.: A new method for the determination of flow directions and upslope areas in grid digital elevation models. Water Resour. Res. 33(2), 309–319 (1997)CrossRef
12.
Zurück zum Zitat Buchhorn, M., Smets, B., Bertels, L., Lesiv, M., Tsendbazar, N.-E., Herold, M., Fritz, S.: Copernicus global land service: land cover 100m, epoch, 2015, Globe (Version V2.0.2), [Dataset] Zenodo (2019) Buchhorn, M., Smets, B., Bertels, L., Lesiv, M., Tsendbazar, N.-E., Herold, M., Fritz, S.: Copernicus global land service: land cover 100m, epoch, 2015, Globe (Version V2.0.2), [Dataset] Zenodo (2019)
13.
Zurück zum Zitat Hartmann, J., Moosdorf, N.: The new global lithological map database GLiM: a representation of rock properties at the Earth surface. Geochem. Geophys. Geosyst. 13 (2012) Hartmann, J., Moosdorf, N.: The new global lithological map database GLiM: a representation of rock properties at the Earth surface. Geochem. Geophys. Geosyst. 13 (2012)
14.
Zurück zum Zitat Rivera, J., Gómez, A.: Erosividad de las lluvias en la zona cafetera central colombiana (Caldas, Quindío y Risaralda). Cenicafé 42(2), 37–52 (1991) Rivera, J., Gómez, A.: Erosividad de las lluvias en la zona cafetera central colombiana (Caldas, Quindío y Risaralda). Cenicafé 42(2), 37–52 (1991)
15.
Zurück zum Zitat Peña-Cortés, F., Limpert, C., Andrade, E., Hauenstein, E., Tapia, J., Bertrán, C., Vargas-Chacoff, L.: Dinámica geomorfológica de la costa de La Araucanía. Revista de Geografía Norte Grande 58, 241–260 (2014)CrossRef Peña-Cortés, F., Limpert, C., Andrade, E., Hauenstein, E., Tapia, J., Bertrán, C., Vargas-Chacoff, L.: Dinámica geomorfológica de la costa de La Araucanía. Revista de Geografía Norte Grande 58, 241–260 (2014)CrossRef
16.
Zurück zum Zitat Food and Agriculture Organization of the United Nations: Evaluación de Recursos Forestales: Aportes de la información del Inventario Forestal Nacional a las políticas que involucran el sector forestal de Guatemala (2004) Food and Agriculture Organization of the United Nations: Evaluación de Recursos Forestales: Aportes de la información del Inventario Forestal Nacional a las políticas que involucran el sector forestal de Guatemala (2004)
Metadaten
Titel
Interrelations Between Soil Erosion Conditioning Factors in Basins of Ecuador: Contributions to the Spatial Model Construction
verfasst von
Daniel Delgado
Mahrez Sadaoui
Henry Pacheco
Williams Méndez
Wolfgang Ludwig
Copyright-Jahr
2021
DOI
https://doi.org/10.1007/978-3-030-75315-3_94