
pmid: 28840262
The role of soil moisture, light and pH on imidacloprid dissipation was investigated. A high performance liquid chromatography (HPLC) based method was developed to quantify imidacloprid present in soil with a recovery of more than 82%. Rate of dissipation of imidacloprid from soil was faster in submerged condition compared to field capacity and air dried condition. Imidacloprid dissipated non-significantly between sterile and non-sterile soils, but at field capacity, the dissipation was faster in non-sterile soil compared to sterile soil after 60 days of incubation. Similarly, under submergence, the dissipation of imidacloprid was 66.2% and 79.8% of the initial in sterile and non-sterile soils, respectively. Imidacloprid was rather stable in acidic and neutral water but was prone to photo-degradation. Therefore, imidacloprid degradation will be faster under direct sunlight and at higher soil moisture.
Photolysis, Water, Hydrogen-Ion Concentration, Models, Theoretical, Nitro Compounds, Neonicotinoids, Soil, Sunlight, Soil Pollutants, Chromatography, High Pressure Liquid, Environmental Restoration and Remediation
Photolysis, Water, Hydrogen-Ion Concentration, Models, Theoretical, Nitro Compounds, Neonicotinoids, Soil, Sunlight, Soil Pollutants, Chromatography, High Pressure Liquid, Environmental Restoration and Remediation
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