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April 23, 2026Environments0 citationsOpen Access

Soil Property Monitoring in Africa via Spectroscopy: A Review

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MHMohammed HmimouALAhmed LaamraniSHSoufiane Hajaj

Key Points

  • The aim is to evaluate the effectiveness of soil spectroscopy for monitoring soil properties in Africa and its potential for broad application.
  • Conducted a systematic review of various spectral platforms, including laboratory, field, airborne, and satellite-based methods.
  • Analyzed major data sources such as the Africa Soil Information Service and GEO-CRADLE spectral libraries.
  • Evaluated modeling approaches, particularly the dominance of partial least squares regression and emerging advanced frameworks.
  • Confirmed consistent success in measuring primary soil constituents like organic carbon using spectroscopy.
  • Identified limitations with indirect measurements of properties such as phosphorus and potassium.
  • Highlighted the need for standardized spectral libraries and the adoption of innovative approaches in soil monitoring to address current imbalances.

Abstract

Efficient soil fertility monitoring is essential for sustainable agriculture, food security, and environmental management across Africa, yet conventional laboratory methods remain prohibitively costly and slow for continental-scale applications. Soil spectroscopy is considered as a rapid, non-destructive alternative with transformative potential. This review provides a systematic synthesis of spectroscopic applications across Africa, encompassing laboratory, field, airborne, and satellite-based platforms, while examining major data sources including the Africa Soil Information Service (AfSIS) and GEO-CRADLE spectral libraries. We critically evaluate the evolution of modeling approaches, revealing that Partial Least Squares Regression (PLSR) dominates, but a shift toward advanced frameworks like hybrid physically based models, ensemble learning and deep neural networks is essential. Critically, we identify a pronounced imbalance wherein laboratory spectroscopy prevails while imaging and satellite-based approaches remain comparatively underutilized, despite their unparalleled potential for scaling point measurements to continental extents. The review consolidates findings on key soil properties, demonstrating consistent successes for primary constituents with direct spectral responses (i.e., organic carbon), while revealing relative uncertainty for properties inferred indirectly via covariance (e.g., available phosphorus, potassium). Despite significant local and regional progress, the absence of a standardized pan-African spectral library and the intractable transferability problem remain formidable barriers. Future research must pivot decisively toward imaging spectroscopy and satellite platforms, mitigating PLSR dominance through systematic adoption of ensemble methods, transfer learning, and model harmonization frameworks to fully operationalize these technologies in support of Africa’s sustainable development goals.

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Cite This Study

Hmimou et al. (2026) studied this question.

synapsesocial.com/papers/69e9b8d485696592c86ebe27https://doi.org/10.3390/environments13040228
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