Optimizing Fertilizer Combinations for Enhanced Rice Growth and Yield

Kemoh Bangura

Sierra Leone Agricultural Research Institute (SLARI), Rokupr Agricultural Research Center (RARC), Kambia, Sierra Leone.

Adam Sheka Kanu *

Sierra Leone Agricultural Research Institute (SLARI), Rokupr Agricultural Research Center (RARC), Kambia, Sierra Leone.

Nabieu Kamara

Sierra Leone Agricultural Research Institute (SLARI), Rokupr Agricultural Research Center (RARC), Kambia, Sierra Leone.

*Author to whom correspondence should be addressed.


Abstract

Background: Rice is a major staple crop in Sierra Leone, but its productivity is constrained by poor soil fertility and inadequate nutrient management. Balanced fertilizer application may improve rice growth and yield; however, locally appropriate nutrient combinations require evaluation under field conditions.

Aims: This study evaluated the effects of different fertilizer combinations on rice growth, flowering, and grain yield.

Study Design: The experiment used a Randomized Complete Block Design with three replications.

Place and Duration: The study was conducted at the Rokupr Agricultural Research Center experimental fields from June 2024 to May 2025.

Methodology: Seven treatments were assessed: No fertilizer as control; NPK at 20–20–20 and 40–40–40 kg ha⁻¹; urea, SSP, and MOP; urea, TSP, and MOP; TSP applied by phosphorus dipping; and urea, TSP applied by phosphorus dipping, and MOP. Plant height and tiller number were recorded at 5 weeks after planting, together with days to 50% flowering and grain yield. Data were analysed using analysis of variance, and means were compared using Tukey’s HSD test at p = 0.05.

Results: T-C3 produced the tallest plants, reached 50% flowering earliest, and recorded the highest grain yield (2.33 t ha⁻¹). T-4 was the next-best treatment for grain yield (2.16 t ha⁻¹) and recorded the highest mean tiller count. T-3 produced the fewest tillers and a lower grain yield than the unfertilized control. The observed performance of T-C3 was consistent with a balanced and synchronised supply of nitrogen, phosphorus, and potassium.

Conclusion: Under the conditions of this one-year experiment, balanced NPK application improved rice growth and yield relative to the other treatments, although confirmation across additional seasons and sites is required before a definitive recommendation is made.

Keywords: Rice (Oryza sativa L.), balanced fertilization, NPK fertilizer, nutrient-use efficiency, phosphorus dipping, grain yield, tiller production, flowering time, soil fertility


How to Cite

Bangura, Kemoh, Adam Sheka Kanu, and Nabieu Kamara. 2026. “Optimizing Fertilizer Combinations for Enhanced Rice Growth and Yield ”. Journal of Experimental Agriculture International 48 (8):697-705. https://doi.org/10.9734/jeai/2026/v48i84421.

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