Active Climate, Earth & Environment Food & Agriculture

Sustainable Geotechnical Solutions to Gully Erosion and Mass Wasting Geohazards in South-Eastern Nigeria

In plain English

AI plain-English summary

Gully erosion is carving deep channels—sometimes more than 2 metres deep—across the landscape of south-eastern Nigeria, stripping away topsoil and subsoil as runoff carries them off. This matters because the factors that trigger and accelerate gully erosion in tropical soils, particularly the problematic lateritic soils common in Nigeria, remain poorly understood. Without that knowledge, efforts to slow or stop the erosion have made little progress. The research will use physical and numerical modelling, combined with machine learning, to uncover the mechanisms behind gully initiation and development in these soils. If successful, the work could lead to practical, sustainable geotechnical solutions for stabilising vulnerable land. That would directly protect farmland and rural communities from losing productive soil—a critical issue for food security. It would also help preserve roads, buildings, and other infrastructure that are undermined when gullies expand. On a broader scale, the findings could inform soil conservation strategies across other tropical regions facing similar erosion problems, supporting environmental protection and the sustainable development goals tied to land degradation.

View original technical description
Land degradation crisis is a major challenge globally. In Nigeria, this can be manifested by widespread gully erosion, which could be a result of the presence in abundance of problematic lateritic and other erodible soils characteristic of the tropical region. Gully erosion is soil-destructive, and goes with rapid detachment of topsoil and subsoil by runoff, and their transportation. This process results in the formation of deep, steep-sided channels (gullies) sometimes exceeding 2 metres in depth. Unfortunately, the factors accelerating gully erosion, and its mechanisms are less understood and hence there is little advancement in the approaches to reduce or combat it. This research aims to utilize physical and numerical modelling, as well as machine learning approaches to investigate mechanisms and factors of gully erosion initiation and development in Nigeria and tropical soils generally. The research will hugely contribute scientific knowledge and sustainable development goals through environmental protection, and soil conservation and protection - the soil being probably the most important natural resource.

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Researchers

Obinna Ubani (Student)

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Studentship

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