尼日利亚奥孙州Araromi农场住区环境介质中有机磷农药残留评估

Yemisi Tosin Awe, Abimbola Yisau Sangodoyin, Mary Bosede Ogundiran
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摘要

该研究的目的是评估尼日利亚奥孙州Araromi农场定居点土壤、地表水、沉积物和香蕉作物中有机磷化合物残留的发生和分布。采用气相色谱-火焰离子化检测器(GC-FID)对16个可可和香蕉农场的土壤样品、6个水和沉积物样品以及4个农场的8个香蕉样品进行了有机磷农药残留检测。共检测到14种有机磷化合物(甲胺磷、敌敌畏、敌敌畏、敌敌畏、马拉硫磷、毒死蜱、甲胺磷、硫磷、丙烯磷、硫磷、甲基硫磷和吡唑磷)。土壤和底泥样品中均检测到甲基甲苯噻虫啉、甲基吡虫磷和硫虫磷,土壤中浓度范围分别为1.9 ~ 12.9、2.25 ~ 6.98和3.38 ~ 9.89 mg/kg,底泥中浓度范围分别为8.13 ~ 9.83、2.82 ~ 25.1和3.70 ~ 19.5 mg/kg。水样中最多检出的化合物浓度范围分别为0.06 ~ 0.28、0.09 ~ 0.18和0.16 ~ 6.11 mg/L的乐果、甲基溴硫磷、马拉硫磷、甲基硫磷、硫磷和甲基硫磷,浓度范围分别为3.40 ~ 12.0、1.82 ~ 6.26、5.73 ~ 9.48、29.7 ~ 145、8.24 ~ 20.1、3.87 ~ 9.35和3.66 ~ 12.2 mg/kg。有机磷平均残留浓度大多显著高于最大残留限量
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Assessment of organophosphate pesticide residues in environmental media of Araromi farm settlement, Osun State, Nigeria.

The aim of the study was to assess the occurrence and distribution of organophosphate compounds residue in soil, surface water, sediment, and banana crops in Araromi farm settlement, Osun State, Nigeria. Organophosphate pesticide residues were determined using a gas chromatography equipped with Flame-Ionization Detection (GC-FID) in 16 soil samples from cocoa and banana farms, 6 water and sediment samples each, and 8 banana samples from 4 farms in the study site. Fourteen organophosphate compounds were detected (acephate, omethoate, dementon-s-methyl, dimethoate, tolcofos-methyl, pirimiphos-methyl, malathion, chlorpyrifos, methidathion, prothiofos, profenofos, ethion, azinphos-methyl and pyrazophos). Tolclofos-methyl, pirimiphos-methyl and prothiofos were detected in all the soil and sediment samples with concentration ranges of 1.9-12.9, 2.25-6.98 and 3.38-9.89 mg/kg respectively in soil and 8.13-9.83, 2.82-25.1 and 3.70-19.5 mg/kg respectively in sediment. Dimethoate, pirimiphos-methyl and prothiofos with concentration ranges, 0.06-0.28, 0.09-0.18 and 0.16-6.11 mg/L respectively were mostly detected in water samples while dimethoate, tolcofos-methyl, malathion, methidathion, prothiofos, ethion and azinphos-methyl compounds were detected in all the banana samples with concentration ranges, 3.40-12.0, 1.82-6.26, 5.73-9.48, 29.7-145, 8.24-20.1, 3.87-9.35 and 3.66-12.2 mg/kg respectively. The organophosphate mean residue concentrations were mostly significantly higher than the Maximum Residue Limits (MRL) at p<0.05. Across the three samples, only pirimiphos-methyl was significantly higher in water samples, omethoate in sediment; acephate, dementon-s-methyl and chlorpyrifos in banana were also not significantly higher at p<0.05. A strong positive significant correlation was observed between the organophosphate compounds in the banana and water samples (R=0.77, p=0.002) at p<0.05. The occurrence of organophosphate compounds in concentrations above MRLs may pose serious environmental and health risks.

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