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Chlorine dioxide treatment for the removal of pesticide residues on fresh lettuce and in aqueous solution

机译:二氧化氯处理可去除新鲜生菜和水溶液中的农药残留

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The effectiveness of chlorine dioxide (CD) to remove phorate and diazinon residues on fresh lettuce and in aqueous solution was investigated. The results indicated that CD (20 mg/L) added in tap water can significantly improve the removal of phorate and diazinon on lettuce (p < 0.05), as compared to tap water wash. The study in aqueous solutions suggested that addition of CD could increase the removal rates of phorate and diazinon by 40-80% and 10-20% more than that in tap water without CD, respectively, indicating CD can result in the degradation of the both pesticides. The removal of the both pesticides in aqueous solutions was influenced by concentration of CD, pH value, treatment time, initial concentration and kind of pesticides. The degradation efficiency increased with the concentration of CD and treatment time, and the least removal rates of the both pesticides were obtained in the aqueous solution at pH 4.6. Furthermore, the lower initial concentration of pesticides, the higher degradation rate would be obtained. The degradation kinetics of both pesticides were fitted to the first-order kinetics model well, and the kinetics parameters indicated that phorate was much easier to be degraded than diazinon. The degradation products of both pesticides were identified by GC-MS, phorate and diazinon were oxidized to phorate sulfoxide and phoratoxon sulfoxide, diazoxon, respectively. The present study validates the application of CD treatment as a safe and promising method for the removal of pesticides on fresh fruits and vegetables.
机译:研究了二氧化氯(CD)去除新鲜生菜和水溶液中的磷酸根和二嗪农残留的有效性。结果表明,与自来水洗涤相比,自来水中添加的CD(20 mg / L)可以显着提高生菜上的甲酸酯和二嗪农的去除率(p <0.05)。在水溶液中的研究表明,添加CD可以比不含CD的自来水分别增加40到80%和10到20%的磷酸根和二嗪农的去除率,这表明CD可以导致两者的降解。农药。 CD浓度,pH值,处理时间,初始浓度和农药种类对水溶液中两种农药的去除都有影响。降解效率随CD浓度和处理时间的增加而增加,在pH 4.6的水溶液中两种农药的去除率最低。此外,农药的初始浓度越低,降解率越高。两种农药的降解动力学都很好地拟合了一级动力学模型,动力学参数表明,与二嗪农相比,磷酸酯更易于降解。通过GC-MS鉴定了这两种农药的降解产物,氧化了甲酸酯和二嗪农,分别氧化了甲磺酸亚砜和磷酸亚砜,重氮磷。本研究验证了CD处理作为一种用于去除新鲜水果和蔬菜上的农药的安全且有希望的方法的应用。

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