Research Article
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Year 2025, Volume: 14 Issue: 1, 34 - 38, 16.07.2025
https://doi.org/10.21657/soilst.1724341

Abstract

References

  • Adhikari, B., & Nadella, K. (2011). Ecological economics of soil erosion: a review of the current state of knowledge. Annals of the New York Academy of Sciences, 1219(1), 134-152. https://doi.org/10.1111/j.1749-6632.2010.05910.x
  • Anonymous. (2025). Seasonal normals for the provinces. Retrieved April 17, 2025, from https://www.mgm.gov.tr/veridegerlendirme/il-ve-ilceler-istatistik.aspx?m=K.MARAS
  • Arnáez, J., Lana-Renault, N., Lasanta, T., Ruiz-Flaño, P., & Castroviejo, J. (2015). Effects of farming terraces on hydrological and geomorphological processes. A review. Catena, 128, 122-134. https://doi.org/10.1016/j.catena.2015.01.02
  • Artun, O., & Koca, Y. K. (2018). Determination of Soil Losses Using RUSLE Model and Geographical Information Systems (GIS) in a Selected Area in Mediterranean Region of Turkey. Fresenius Environmental Bulletin, 27(5), 3359-3366.
  • Aytop, H., & Pınar, M. Ö. (2024). Evaluation of agricultural productivity loss of vineyards through water erosion in Türkiye. Applied Fruit Science, 66(2), 667-676. https://doi.org/10.1007/s10341-024-01035-6
  • Aytop, H., & Şenol, S. (2022). The effect of different land use planning scenarios on the amount of total soil losses in the Mikail Stream Micro-Basin. Environmental Monitoring and Assessment, 194(5), 321. https://doi.org/10.1007/s10661-022-09937-2
  • Didoné, E. J., Minella, J. P. G., & Piccilli, D. G. A. (2021). How to model the effect of mechanical erosion control practices at a catchment scale? International Soil and Water Conservation Research, 9(3), 370-380. https://doi.org/10.1016/j.iswcr.2021.01.007
  • Ebabu, K., Tsunekawa, A., Haregeweyn, N., Tsubo, M., Adgo, E., Fenta, A. A., ... & Poesen, J. (2022). Global analysis of cover management and support practice factors that control soil erosion and conservation. International Soil and Water Conservation Research, 10(2), 161-176. https://doi.org/10.1016/j.iswcr.2021.12.002
  • FAO. (2016). Global soil partnership endorses guidelines on sustainable soil management. Retrieved April 05, 2025, from http://fao.org/global-soilpartnership/resources/highlights/detail/en/c/416516/
  • FAO. (2000). Manual on Integrated Soil Management and Conservation Practices. Rome, Italy: FAO.
  • FAO. (2003). Soil and Water Conservation with a Focus on Water Harvesting and Soil Moisture Retention. Nairobi, Kenya: Ministry of Agriculture and Rural Development.
  • García-Ruiz, J. M., Beguería, S., Nadal-Romero, E., González-Hidalgo, J. C., Lana-Renault, N., & Sanjuán, Y. (2015). A meta-analysis of soil erosion rates across the world. Geomorphology, 239, 160-173. https://doi.org/10.1016/j.geomorph.2015.03.008
  • Kebede, B., Tsunekawa, A., Haregeweyn, N., Adgo, E., Ebabu, K., Meshesha, D. T., ... & Fenta, A. A. (2021). Determining C-and P-factors of RUSLE for different land uses and management practices across agro-ecologies: case studies from the Upper Blue Nile basin, Ethiopia. Physical Geography, 42(2), 160-182. https://doi.org/10.1080/02723646.2020.1762831
  • La, N., Bergkvist, G., Dahlin, A. S., Mulia, R., Nguyen, V. T., & Öborn, I. (2023). Agroforestry with contour planting of grass contributes to terrace formation and conservation of soil and nutrients on sloping land. Agriculture, Ecosystems & Environment, 345, 108323. https://doi.org/10.1016/j.agee.2022.108323
  • Liu, X., Xin, L., & Lu, Y. (2021). National scale assessment of the soil erosion and conservation function of terraces in China. Ecological Indicators, 129, 107940. https://doi.org/10.1016/j.ecolind.2021.107940
  • Madenoğlu, S., Pınar, M. Ö., Şahin, S., & Erpul, G. (2024). Sustainable land management for mitigating soil erosion at the catchment scale. Turkish Journal of Agricultural Research, 11(2), 176-190. https://doi.org/10.19159/tutad.1434369
  • Panagos, P., Borrelli, P., Meusburger, K., Van Der Zanden, E. H., Poesen, J., & Alewell, C. (2015). Modelling the effect of support practices (P-factor) on the reduction of soil erosion by water at European scale. Environmental science & policy, 51, 23-34. https://doi.org/10.1016/j.envsci.2015.03.012
  • Pınar, M. Ö., & Erpul, G. (2023). Upscaling plot-based measurements of RUSLE C-factor of different leaf-angled crops in semi-arid agroecosystems. Environmental Monitoring and Assessment, 195(11), 1341. https://doi.org/10.1007/s10661-023-11970-8
  • Renard, K. G., Foster, G.A., Weesies, D.A., McCool, D.K., Yoder, D.C., (1997) Predicting soil erosion by water: a guide to conservation planning with the Revised Universal Soil Loss Equation (RUSLE). Agriculture handbook no. 703. USDA, Washington
  • Saygın, F., Aytop, H., & Dengiz, O. (2025). Developing land-use planning scenarios in Türkiye to reduce water-induced soil erosion. Environmental Conservation, 52(1), 31-40. https://doi.org/10.1017/S0376892924000298
  • Sud, A., Sajan, B., Kanga, S., Singh, S. K., Singh, S., Durin, B., ... & Chand, K. (2024). Integrating RUSLE model with cloud-based geospatial analysis: a google earth engine approach for soil erosion assessment in the Satluj watershed. Water, 16(8), 1073. https://doi.org/10.3390/w16081073
  • Tian, P., Zhu, Z., Yue, Q., He, Y., Zhang, Z., Hao, F., ... & Liu, M. (2021). Soil erosion assessment by RUSLE with improved P factor and its validation: Case study on mountainous and hilly areas of Hubei Province, China. International Soil and Water Conservation Research, 9(3), 433-444. https://doi.org/10.1016/j.iswcr.2021.04.007
  • Wischmeier, W. H., & Smith, D. D. (1978). Predicting rainfall erosion losses. USDA Agricultural Handbook, No: 537, USA.

Reducing the Average P Factor Value in Sloping Land Through Scenarios that Incorporate Terracing and Contour Farming Practices

Year 2025, Volume: 14 Issue: 1, 34 - 38, 16.07.2025
https://doi.org/10.21657/soilst.1724341

Abstract

The soil protection (P) factor, one of the components of the Revised Universal Soil Loss Equation (RUSLE) Model, is critical in influencing erosion. It significantly reduces soil erosion by minimizing surface runoff on sloping terrains. The P factor is unitless. In this article, 4 scenarios involving soil conservation practices tailored to the slope percentages of the study area, which features a sloping landscape, were developed. Terracing and contour farming were proposed as soil conservation strategies. Areas with slopes ranging from 6% to 12% were regarded as suitable for contour farming, while those with slopes between 12% and 30% were considered ideal for terracing practices. The study revealed that scenario 4 lowered the average P factor value of the study area from 1 to 0.58. This outcome indicated that the scenarios devised could decrease the average P factor value in the study area by 42%. It is believed that the approach employed in this study can effectively reduce the average P factor value in sloping regions facing erosion issues.

References

  • Adhikari, B., & Nadella, K. (2011). Ecological economics of soil erosion: a review of the current state of knowledge. Annals of the New York Academy of Sciences, 1219(1), 134-152. https://doi.org/10.1111/j.1749-6632.2010.05910.x
  • Anonymous. (2025). Seasonal normals for the provinces. Retrieved April 17, 2025, from https://www.mgm.gov.tr/veridegerlendirme/il-ve-ilceler-istatistik.aspx?m=K.MARAS
  • Arnáez, J., Lana-Renault, N., Lasanta, T., Ruiz-Flaño, P., & Castroviejo, J. (2015). Effects of farming terraces on hydrological and geomorphological processes. A review. Catena, 128, 122-134. https://doi.org/10.1016/j.catena.2015.01.02
  • Artun, O., & Koca, Y. K. (2018). Determination of Soil Losses Using RUSLE Model and Geographical Information Systems (GIS) in a Selected Area in Mediterranean Region of Turkey. Fresenius Environmental Bulletin, 27(5), 3359-3366.
  • Aytop, H., & Pınar, M. Ö. (2024). Evaluation of agricultural productivity loss of vineyards through water erosion in Türkiye. Applied Fruit Science, 66(2), 667-676. https://doi.org/10.1007/s10341-024-01035-6
  • Aytop, H., & Şenol, S. (2022). The effect of different land use planning scenarios on the amount of total soil losses in the Mikail Stream Micro-Basin. Environmental Monitoring and Assessment, 194(5), 321. https://doi.org/10.1007/s10661-022-09937-2
  • Didoné, E. J., Minella, J. P. G., & Piccilli, D. G. A. (2021). How to model the effect of mechanical erosion control practices at a catchment scale? International Soil and Water Conservation Research, 9(3), 370-380. https://doi.org/10.1016/j.iswcr.2021.01.007
  • Ebabu, K., Tsunekawa, A., Haregeweyn, N., Tsubo, M., Adgo, E., Fenta, A. A., ... & Poesen, J. (2022). Global analysis of cover management and support practice factors that control soil erosion and conservation. International Soil and Water Conservation Research, 10(2), 161-176. https://doi.org/10.1016/j.iswcr.2021.12.002
  • FAO. (2016). Global soil partnership endorses guidelines on sustainable soil management. Retrieved April 05, 2025, from http://fao.org/global-soilpartnership/resources/highlights/detail/en/c/416516/
  • FAO. (2000). Manual on Integrated Soil Management and Conservation Practices. Rome, Italy: FAO.
  • FAO. (2003). Soil and Water Conservation with a Focus on Water Harvesting and Soil Moisture Retention. Nairobi, Kenya: Ministry of Agriculture and Rural Development.
  • García-Ruiz, J. M., Beguería, S., Nadal-Romero, E., González-Hidalgo, J. C., Lana-Renault, N., & Sanjuán, Y. (2015). A meta-analysis of soil erosion rates across the world. Geomorphology, 239, 160-173. https://doi.org/10.1016/j.geomorph.2015.03.008
  • Kebede, B., Tsunekawa, A., Haregeweyn, N., Adgo, E., Ebabu, K., Meshesha, D. T., ... & Fenta, A. A. (2021). Determining C-and P-factors of RUSLE for different land uses and management practices across agro-ecologies: case studies from the Upper Blue Nile basin, Ethiopia. Physical Geography, 42(2), 160-182. https://doi.org/10.1080/02723646.2020.1762831
  • La, N., Bergkvist, G., Dahlin, A. S., Mulia, R., Nguyen, V. T., & Öborn, I. (2023). Agroforestry with contour planting of grass contributes to terrace formation and conservation of soil and nutrients on sloping land. Agriculture, Ecosystems & Environment, 345, 108323. https://doi.org/10.1016/j.agee.2022.108323
  • Liu, X., Xin, L., & Lu, Y. (2021). National scale assessment of the soil erosion and conservation function of terraces in China. Ecological Indicators, 129, 107940. https://doi.org/10.1016/j.ecolind.2021.107940
  • Madenoğlu, S., Pınar, M. Ö., Şahin, S., & Erpul, G. (2024). Sustainable land management for mitigating soil erosion at the catchment scale. Turkish Journal of Agricultural Research, 11(2), 176-190. https://doi.org/10.19159/tutad.1434369
  • Panagos, P., Borrelli, P., Meusburger, K., Van Der Zanden, E. H., Poesen, J., & Alewell, C. (2015). Modelling the effect of support practices (P-factor) on the reduction of soil erosion by water at European scale. Environmental science & policy, 51, 23-34. https://doi.org/10.1016/j.envsci.2015.03.012
  • Pınar, M. Ö., & Erpul, G. (2023). Upscaling plot-based measurements of RUSLE C-factor of different leaf-angled crops in semi-arid agroecosystems. Environmental Monitoring and Assessment, 195(11), 1341. https://doi.org/10.1007/s10661-023-11970-8
  • Renard, K. G., Foster, G.A., Weesies, D.A., McCool, D.K., Yoder, D.C., (1997) Predicting soil erosion by water: a guide to conservation planning with the Revised Universal Soil Loss Equation (RUSLE). Agriculture handbook no. 703. USDA, Washington
  • Saygın, F., Aytop, H., & Dengiz, O. (2025). Developing land-use planning scenarios in Türkiye to reduce water-induced soil erosion. Environmental Conservation, 52(1), 31-40. https://doi.org/10.1017/S0376892924000298
  • Sud, A., Sajan, B., Kanga, S., Singh, S. K., Singh, S., Durin, B., ... & Chand, K. (2024). Integrating RUSLE model with cloud-based geospatial analysis: a google earth engine approach for soil erosion assessment in the Satluj watershed. Water, 16(8), 1073. https://doi.org/10.3390/w16081073
  • Tian, P., Zhu, Z., Yue, Q., He, Y., Zhang, Z., Hao, F., ... & Liu, M. (2021). Soil erosion assessment by RUSLE with improved P factor and its validation: Case study on mountainous and hilly areas of Hubei Province, China. International Soil and Water Conservation Research, 9(3), 433-444. https://doi.org/10.1016/j.iswcr.2021.04.007
  • Wischmeier, W. H., & Smith, D. D. (1978). Predicting rainfall erosion losses. USDA Agricultural Handbook, No: 537, USA.
There are 23 citations in total.

Details

Primary Language English
Subjects Agricultural Engineering (Other)
Journal Section Research Articles
Authors

Halil Aytop 0000-0003-0506-3724

Publication Date July 16, 2025
Submission Date April 18, 2025
Acceptance Date May 20, 2025
Published in Issue Year 2025 Volume: 14 Issue: 1

Cite

APA Aytop, H. (2025). Reducing the Average P Factor Value in Sloping Land Through Scenarios that Incorporate Terracing and Contour Farming Practices. Soil Studies, 14(1), 34-38. https://doi.org/10.21657/soilst.1724341