Multidisciplinary
Soil Erosion: A Growing Threat to the Environment
IJMRB |
Published: August 9, 2026 |
Vol. 5
Issue 4 |
ISSN: 3108-1428
Mst. Shekha Nasrin✉,
Joyenta Das,
Sharmin Rahman,
Md. Mostafijur Rahman,
Md. Kayes Mahmud,
Md. Jaber Chowdhury,
Shaikh Motasim Billah,
Mahmudul Hasan Chowdhury
Abstract
Soil erosion is a major form of land degradation that threatens agricultural productivity, ecosystem stability, and global food security. Accelerated by natural processes and human activities, it removes fertile topsoil, depletes nutrients, reduces soil organic matter, and degrades soil structure. This review summarizes the major drivers, impacts, and management strategies of soil erosion. It examines the key causes of soil loss, including rainfall, wind, topography, soil properties, vegetation cover, and human disturbances such as deforestation, intensive cultivation, overgrazing, and construction. The review highlights the effects of erosion on soil fertility, water availability, nutrient cycling, biodiversity, agricultural productivity, and ecosystem resilience, as well as off-site impacts such as sedimentation, water pollution, greenhouse gas emissions, and economic losses. It also outlines effective conservation measures, including conservation tillage, mulching, crop rotation, contour farming, vegetative barriers, and sustainable land management. Overall, protecting soil through integrated conservation practices, supportive policies, and climate-resilient management is essential for sustaining agricultural productivity, ecosystem services, and long-term global food security.
Keywords: Soil degradation; Environmental sustainability; Agricultural productivity; Soil conservation; Land degradation; Sustainable land management.
References
- Allen, W. (1994). The flood of 1993 may rank as the worst weather disaster in U.S. history. St. Louis Post-Dispatch, p. 01B.
- Allison, F. E. (1973). Soil organic matter and its role in crop production. Elsevier.
- Atlavinyte, O. (1965). The effect of erosion on the population of earthworms (Lumbricidae) in soils under different crops. Pedobiologia, 5, 178–188.
- Bajracharya, R. M., & Lal, R. (1992). Seasonal soil loss and erodibility variation on a Miamian silt loam soil. Soil Science Society of America Journal, 56(5), 1560–1565.
- Carnell, B. (2001). Soil erosion. http://www.overpopulation.com/fag/natural_resources/food/soil_erosion.html
- Dregne, H. E. (1992). Erosion and soil productivity in Asia. Journal of Soil and Water Conservation, 47, 8–13.
- Eekhout, J. P., & de Vente, J. (2022). Global impact of climate change on soil erosion and potential for adaptation through soil conservation. Earth-Science Reviews, 226, 103921. https://doi.org/10.1016/j.earscirev.2022.103921
- Evans, R., Cassel, D. K., & Sneed, R. E. (1997). Soil, water, and crop characteristics important to irrigation scheduling. http://www.bae.ncsu.edu/programs/extension/evans/ag452-1.html
- Faeth, P., & Crosson, P. (1994). Building the case for sustainable agriculture. Environment, 36(1), 16–20.
- Food and Agriculture Organization of the United Nations. (2015). Healthy soils are the basis for healthy food production. FAO.
- Forest Conservation Act. (2002). Riparian forest buffer panel (Bay Area Regulatory Programs). http://www.riparianbuffers.umd.edu/manuals/regulatory.html
- Gholizadeh, M. H., Melesse, A. M., & Fuentes, H. R. (2018). Raindrop-induced erosion and sediment transport modelling in shallow waters: A review. Journal of Soil and Water Science, 1(1), 15–25.
- Haigh, M. J., Rawat, J. S., Bartarya, S. K., & Rai, S. P. (1995). Interactions between forest and landslide activity along new highways in the Kumaun Himalaya. Forest Ecology and Management, 78(1–3), 173–189.
- Heywood, V. H. (1995). Global biodiversity assessment. Cambridge University Press.
- International Erosion Control Association. (1991). Erosion control: A global perspective. Proceedings of Conference XXII. International Erosion Control Association.
- Kendall, H. W., & Pimentel, D. (1994). Constraints on the expansion of the global food supply. Ambio, 23, 198–205.
- Klocke, N. L., Hubbard, K. G., Kranz, W. L., & Watts, D. G. (1996). Evapotranspiration (ET) or crop water use. University of Nebraska Cooperative Extension. http://www.ianr.unl.edu/pubs/irrigation/g992.htm
- Lal, R. (1990). Soil erosion and land degradation: The global risks. Soil degradation (pp. 129–172). Springer.
- Lal, R. (1994). Water management in various crop production systems related to soil tillage. Soil and Tillage Research, 30, 169–185.
- Lal, R. (2002). One answer for cleaner air, water: Better agricultural practices. http://www.acs.ohio-state.edu/units/research/archive/sequest.htm
- Lal, R. (2004). Soil carbon sequestration impacts on global climate change and food security. Science, 304, 1623–1627.
- Lal, R., & Stewart, B. A. (Eds.). (1990). Soil degradation. Springer.
- Lee, K. E. (1985). Earthworms: Their ecology and relationships with soils and land use. Academic Press.
- Libert, B. (1995). The environmental heritage of Soviet agriculture. CAB International.
- Myers, N. (1993). Gaia: An atlas of planet management. Anchor/Doubleday.
- National Academy of Sciences. (2003). Frontiers in agricultural research: Food, health, environment and communities. National Academies Press.
- Oldeman, L. R. (1997). Soil degradation: A threat to food security? Paper presented at the International Conference on Time Ecology: Time for Soil Culture—Temporal Perspectives on Sustainable Use of Soil, Tutzing, Germany.
- Patric, J. H. (2002). Forest erosion rates. http://syllabus.syr.edu/esf/rdbriggs/for345/erosion.htm
- Pimentel, D. (1997). Soil erosion. Environment, 39(10), 4–5.
- Pimentel, D. (2006). World soil erosion and conservation. Cambridge University Press.
- Pimentel, D., Harvey, C., Resosudarmo, P., Sinclair, K., Kurz, D., McNair, M., Crist, S., Sphpritz, L., Fitton, L., Saffouri, R., & Blair, R. (1995). Environmental and economic costs of soil erosion and conservation benefits. Science, 267, 1117–1123.
- Pimentel, D., & Kounang, N. (1998). Ecology of soil erosion in ecosystems. Ecosystems, 1, 416–426.
- Roose, E. (1988). Soil and water conservation lessons from steep-slope farming in French-speaking countries of Africa. In Conservation farming on steep lands (pp. 130–131). Soil and Water Conservation Society.
- Schertz, D. L., Moldenhauer, W. C., Livingston, S. J., Weesies, G. A., & Hintz, E. A. (1989). Effect of past soil erosion on crop productivity in Indiana. Journal of Soil and Water Conservation, 44(6), 604–608.
- Senanayake, S., Pradhan, B., Huete, A., & Brennan, J. (2020). A review on assessing and mapping soil erosion hazard using geo-informatics technology for farming system management. Remote Sensing, 12(20), 4063. https://doi.org/10.3390/rs12244063
- Singh, T. V., & Kaur, J. (1989). Studies in Himalayan ecology and development strategies. Himalayan Books.
- Solliday, L. (1997). Sediment transport of an estuary. http://bellnetweb.brc.tamus.edu/sediment.htm
- Southgate, D., & Whitaker, M. (1992). Promoting resource degradation in Latin America: Tropical deforestation, soil erosion, and coastal ecosystem disturbance in Ecuador. Economic Development and Cultural Change, 40(4), 787–807.
- Speth, J. G. (1994). Towards an effective and operational international convention on desertification. United Nations.
- Trimble, S. W. (1994). Erosional effects of cattle on streambanks in Tennessee, USA. Earth Surface Processes and Landforms, 19, 451–464.
- Trimble, S. W., & Mendel, A. C. (1995). The cow as a geomorphic agent: A critical review. Geomorphology, 13, 233–253.
- Troeh, F. R., Hobbs, J. A., & Donahue, R. L. (1991). Soil and water conservation. Prentice Hall.
- U.S. Department of Agriculture. (1989). The second RCA appraisal: Soil, water, and related resources on nonfederal land in the United States. U.S. Department of Agriculture.
- U.S. Department of Agriculture. (2001). Agricultural statistics. U.S. Department of Agriculture.
- Wen, D. (1993). Soil erosion and conservation in China. In D. Pimentel (Ed.), Soil erosion and conservation (pp. 63–86). Cambridge University Press.
- Wen, D. (1997). Agriculture in China: Water and energy resources. Institute of Applied Ecology, Chinese Academy of Sciences.
- Wendt, R. C., Alberts, E. E., & Helmers, A. T. (1986). Variability of runoff and soil loss from fallow experimental plots. Soil Science Society of America Journal, 50, 730–736.
- World Health Organization. (2004). World health report 2004. http://www.who.int/whr/2004/annex/topic/en/annex_2_en.pdf
- Wood, M. (1989). Soil biology. Chapman & Hall.
- World Resources Institute. (1994). World resources. Oxford University Press.
- World Resources Institute. (1997). World resources. Oxford University Press.
- Young, A. (1989). Agroforestry for soil conservation. CAB International.
- Young, A. (1998). Land resources: Now and for the future. Cambridge University Press.
- Zacharias, T. P., & Grube, A. H. (1984). An economic evaluation of weed control methods used in combination with crop rotations: A stochastic dominance approach. North Central Journal of Agricultural Economics, 6, 113–120.
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