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Rock phosphate application in vermicomposting significantly increased NaHCO3-Po.
Rock phosphate application increased inorganic P extracted with HCl (HCl-Pi) in both organic sources.
To remediate the soils in the CdA Basin, in situ remediation strategies using phosphate application are being considered.
Rock phosphate application had a little effect on this fraction (Table 4), while vermicomposting significantly increased it in all of the treatments.
Rock phosphate application had a little effect on NaHCO3-Po in the absence of vermicomposting but when vermicomposted significantly increased NaHCO3-Po, i.e., vermicomposting of 2%% modified RP treatments caused 54 and 12 mg kg−1 increase of NaHCO3-Po in sheep dung and leaf compost, respectively (Table 3).
Many reasons have been suggested for the legume decline, including reduced phosphate application; other nutrient deficiencies; soil acidity and associated nutrient imbalances; increased nitrogen levels; insect pests; diseases; and increased grazing pressure (Wilson and Simpson, 1993).
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Calcium phosphates applications in bone regeneration include their use as a scaffold in periodontal treatment, healing of bone defects, fracture treatment, total joint replacement, orthopedics, craniomaxillofacial reconstruction, and spinal surgery.
Intensive management associated with phosphate fertiliser application results in exponential declines in native plant diversity, although intermediate levels of livestock grazing often have little impact on plant diversity when nutrient levels are low.
Regarding the other variables, the effect of the more humid treatments (−5 and −30 kPa) and the effect of the higher phosphorus doses (80 and 100 kg ha−1) were statistically equal (P ≤ 0.01) with the lowest NUK and the highest values of all other variables; therefore, irrigation start at soil moisture tension of −30 kPa and phosphate fertilization application of 80 kg ha−1 are recommended.
Aranha et al. [ 30] compared acidulated phosphate gel application to reduce DHS and found an efficacy similar to other potential agents (Gluma Desensitizer, Seal & Protect, Oxa Gel, and Low-level Laser).
We conclude that annual phosphate fertilizer applications leave phosphate concentrations in Prairie soils to the extent that soils have a lesser capacity to retain glyphosate and phosphate that are subsequently applied, but glyphosate residues will not influence phosphate sorption.
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