首页> 外文期刊>Journal of Agricultural and Food Chemistry >Volatilization of trifluralin, atrazine, metolachlor, chlorpyrifos, alpha-endosulfan, and beta-endosulfan from freshly tilled soil
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Volatilization of trifluralin, atrazine, metolachlor, chlorpyrifos, alpha-endosulfan, and beta-endosulfan from freshly tilled soil

机译:新鲜耕作土壤中氟乐灵,阿特拉津,异丙甲草胺,毒死rif,α-硫丹和β-硫丹的挥发

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The volatile and soil loss profiles of six agricultural pesticides were measured for 20 days following treatment,to freshly tilled soil at the Beltsville Agricultural Research Center. The volatile fluxes were determined using the Theoretical Profile Shape (TPS) method. Polyurethane foam plugs were used to collect the gas-phase levels of the pesticides at the TPS-defined critical height above a treated field. Surface-soil (0-8 cm) samples were collected on each day of air sampling. The order of the volatile flux losses was trifluralin > alpha-endosulfan > chlorpyrifos > metolachlor > atrazine > beta-enclosulfan. The magnitude of the losses ranged from 14.1% of nominal applied amounts of trifluralin to 2.5% of beta-endosulfan. The daily loss profiles were typical of those observed by others for volatile flux of pesticides from moist soil. Even though heavy rains occurred from the first, to third day,after treatment, the majority of the losses took place within 4 days of treatment, that is, 59% of the total applied atrazine and metolachlor and >78% of the other pesticides. Soil losses generally followed pseudo-first-order kinetics; however, leaching. due to heavy rainfall caused significant errors in these results. The portion of soil losses that were accounted for by the volatile fluxes was ordered as follows: a-endosulfan, 34.5%; trifluralin, 26.5%; chlorpyrifos, 23.3%; beta-endosulfan, 14.5%; metolachlor, 12.4%; and, atrazine, 7.5%. [References: 24]
机译:在贝尔特斯维尔农业研究中心对刚耕种过的土壤进行处理20天后,测量了六种农业农药的挥发性和土壤流失特征。使用理论轮廓形状(TPS)方法确定挥发性通量。聚氨酯泡沫塞用于在TPS定义的高于处理场的临界高度处收集农药的气相水平。每天进行空气采样时收集表面土壤(0-8厘米)样品。挥发性通量损失的顺序为三氟拉林>α-硫丹>毒死rif>甲草胺>阿特拉津>β-环硫丹。损失的幅度从三氟拉林名义应用量的14.1%到β-硫丹的2.5%不等。日损失曲线是其他人观察到的潮湿土壤中农药挥发通量的典型特征。即使从处理后的第一天到第三天出现大雨,大部分损失发生在处理后的4天之内,即,总施用量的59%的and去津和甲草胺和> 78%的其他农药。土壤流失通常遵循拟一阶动力学。但是,浸出。由于暴雨造成这些结果的重大误差。由挥发性通量引起的土壤流失的顺序如下:α-硫丹,占34.5%;三氟拉林,26.5%;毒死rif,23.3%; β-硫丹,14.5%;异丙甲草胺,12.4%;阿特拉津为7.5%。 [参考:24]

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