Communications in Soil Science and Plant Analysis · 2016 · 16 citations · 39 references
Effective UseEngineeringSoil AmeliorationAgricultural EconomicsLand DegradationPhosphorus Adsorption IsothermSoil CharacterizationEnvironmental ChemistryChemical EngineeringPublic HealthSoil FertilitySoil Fertility ManagementBiogeochemistryP Fertilizer RequirementsP Fertilizer RatesPhosphorus FertilizersEnvironmental EngineeringSoil ChemistryCrop ResponseNutrient Management
Crop response to the phosphorus (P) application is often erratic in most soil types in the world. In Algeria, there is no information on the P behavior in calcareous soils. The purposes of this work were to investigate the degree of P fixing capacity and to predict P fertilizer requirements of crops according to calcareous levels in the soil. Soil samples (at 0–30 cm depth) were collected and spiked with 0, 25 and 50% of lime (CaCO3). Phosphate sorption curves were well fitted to the Freundlich equation. Results indicated that the calcareous level was predominantly controlled the P sorption indices [sorption capacity (a), and P sorption energy (n)] to affect the estimation of external d P requirement (EPR0.2) and P fertilizer rates. The understanding of P sorption and desorption by soils and extrapolating the developed relationship between soil calcareous contents and P fertilizer rates would be quite promising and accurate approach for the economic and effective use of P fertilizers in calcareous soils of Algeria.
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Phosphorus Uptake by Plants: From Soil to Cell
Daniel P. Schachtman, Robert J. Reid, Sarah M. Ayling · PLANT PHYSIOLOGY · 1998 · 2K citations · Full text