Internal Phosphorus and Nitrogen Loading of a Tropical Lagoon System : Combined Effects of pH, Temperature, and Batch Hydrodynamic Perturbation

Wilfried Ahouassa

Kaba Laboratory for Research in Chemistry and Applications (LaKReCa), Higher Teacher Training College (ENS) of Natitingou, National University of Science, Technology, Engineering and Mathematics (UNSTIM), Benin.

Lyde Arsene Sewedo Tometin *

Kaba Laboratory for Research in Chemistry and Applications (LaKReCa), Higher Teacher Training College (ENS) of Natitingou, National University of Science, Technology, Engineering and Mathematics (UNSTIM), Benin, Research Unit of Inorganic Chemistry, Materials Engineering and Environment, Faculty of Science and Technology, University of Abomey-Calavi, Cotonou, Benin and Laboratory of Applied Hydrology (LHA) of the National Water Institute (INE) of the University of Abomey-Calavi, BP 526 Cotonou, University of Abomey-Calavi, Benin.

Bamikole Jacques Kouazounde

Research Unit of Inorganic Chemistry, Materials Engineering and Environment, Faculty of Science and Technology, University of Abomey-Calavi, Cotonou, Benin and Laboratory of Physical Chemistry, Materials and Molecular Modeling, Faculty of Science and Technology University of Abomey-Calavi, Cotonou, Benin.

Emmanuel Hounkpevi

Kaba Laboratory for Research in Chemistry and Applications (LaKReCa), Higher Teacher Training College (ENS) of Natitingou, National University of Science, Technology, Engineering and Mathematics (UNSTIM), Benin.

Daouda Mama

Research Unit of Inorganic Chemistry, Materials Engineering and Environment, Faculty of Science and Technology, University of Abomey-Calavi, Cotonou, Benin and Laboratory of Applied Hydrology (LHA) of the National Water Institute (INE) of the University of Abomey-Calavi, BP 526 Cotonou, University of Abomey-Calavi, Benin.

*Author to whom correspondence should be addressed.


Abstract

Internal nutrient loading from sediments is a major driver of eutrophication in aquatic environments, particularly in shallow tropical lagoon systems subject to intense anthropogenic pressures. While the individual roles of pH, temperature, and hydrodynamic disturbance on the sedimentary mobilization of phosphorus (P) and nitrogen (N) are well established in temperate ecosystems, their interactions in oxic tropical environments remain poorly documented. This study provides an original experimental quantification of these combined effects through batch incubations (closed system, 168 h) conducted on sediments from Grand Nokoué (southern Benin), using a 3×2×2 factorial design combining three pH levels (5, 7, 10), two temperature levels (ambient 24.02 °C; 33.5 °C), and two disturbance intensities (0 and 50 rpm). Cumulative concentrations of total phosphorus (TP), orthophosphates ( ), total nitrogen (TN), nitrates ( ), nitrites ( ), and ammonium ( ) were determined by UV-Visible spectrophotometry (at t = 0, 6, 24, 120, and 168 h), and net fluxes were calculated by mass balance adapted to batch mode. Sequential fractionation of sedimentary phosphorus (P-exch, P-Fe/Mn, P-Fe, P-Al, P-Ca, P-org, P-res) was performed before and after nutrient release into the water column under selected conditions according to combined method of sequential fractionation of sedimentary phosphorus; a total of 180 samples were obtained from 3 sampling sites. The results establish a pH > Temperature > Perturbation control hierarchy on the batch net fluxes. The highest net TP fluxes are achieved under acidic conditions at room temperature without disturbance (condition 010: 124.4 μg m⁻2 j-1), while the combined action of the three factors accelerates the release kinetics up to 6-fold, reaching the peak as early as 6 h. Fractionation reveals that the P-Fe and P-Fe/Mn fractions govern short-term mobilization and that perturbation enriches the post-incubation P-exch fraction, demonstrating a high potential for recurrent remobilization. These results pave the way for electrochemical recovery of these nutrients to preserve aquatic ecosystems and ensure sustainable agriculture.

Keywords: Internal nutrient release, batch experiment, sequential fractionation, Grand Nokoué, tropical eutrophication.


How to Cite

Ahouassa, Wilfried, Lyde Arsene Sewedo Tometin, Bamikole Jacques Kouazounde, Emmanuel Hounkpevi, and Daouda Mama. 2026. “Internal Phosphorus and Nitrogen Loading of a Tropical Lagoon System : Combined Effects of PH, Temperature, and Batch Hydrodynamic Perturbation”. International Journal of Environment and Climate Change 16 (8):620-39. https://doi.org/10.9734/ijecc/2026/v16i85599.

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