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March 3, 2026Tanzania Journal of Science0 citationsOpen Access

Phosphorus sorption in relation to soil grain size and geochemical composition in the Simiyu and Kagera river basins, Tanzania

RTR. A. Tamatamah

Key Points

  • Phosphorus sorption capacity correlates positively with clay content, aluminium, and iron, highlighting key soil characteristics.
  • Cmax values range from 109 to 802 mg kg-1, while K values vary from 59 to 736 mg L-1, indicating variation across samples.
  • Stepwise regression revealed that aluminium, iron, clay, and calcium explain over 94% of phosphorus sorption variation.
  • The method can potentially enable quick tests for predicting phosphorus sorption capacity in similar soils.

Abstract

The phosphorus sorption characteristics of eight surface soil samples representative of the land use and landscape in the Simiyu and Kagera River basins were determined using the Langmuir equation. The Langmuir P adsorption maximum (Cmax) ranged from 109 to 802 mg kg-1, while Langmuir coefficient (K) ranged from 59 to 736 mg L-1. Cmax and were positively correlated to clay content, aluminium (Al), and iron (Fe) and negatively correlated to calcium (Ca). By using stepwise regression, the combination of Al, Fe, clay and Ca predicted more than 94% of the variation in the P sorption capacity of soils samples from Simiyu and Kagera basins. These four soil properties, which are strongly related to P sorption, could therefore be used as quick tests for predicting the P sorption capacity of soils in the two basins.

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Cite This Study

R. A. Tamatamah (2005) studied this question.

synapsesocial.com/papers/69a75a78c6e9836116a20505https://doi.org/10.65085/2507-7961.2013
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