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Degradation of [C-14]carfentrazone-ethyl under aerobic aquatic conditions

机译:有氧水生条件下[C-14] Carfentrazone-乙基的降解

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Carfentrazone-ethyl (CF-E) is an aryl triazolinone reduced-risk herbicide for use on corn, wheat, and soybean. As part of the assessment of its metabolic fate, the aerobic aquatic metabolism of [C-14]CF-E at a concentration of 0.22 mug/g was investigated. Two separate aquatic sediments (silty clay loam and clay loam soils, flooded with water) were used in the study. At each of eight samplings throughout the 30-day study, the distribution of radioactivity between surface water, sediment, and volatile fractions was assessed. At zero time, the majority of the applied radioactivity was contained in the water layer (83-90%), declining to 70-80% after 30 days. This was coupled with an increase in the percent radioactivity in the soil layer from 4-6% at day 0 to 13-19% after 30 days. Nonextractable soil residues and volatile degradation products were formed in negligible amounts. Analysis of the incubation extracts from either aquatic sediment indicated a rapid conversion (<2 days) of the parent CF-E ester to carfentrazone-chloropropionic acid. Over time, increasing amounts of a cascade of acidic degradation products comprising > 90% of the applied radioactivity were formed. Identification of these degradation products was initially achieved through chromatographic comparison with reference synthetic standards and subsequently confirmed using LC-MS analysis. A degradation pathway for CF-E under aerobic aquatic conditions is proposed.
机译:Carfentrazone-ethyl(CF-E)是一种芳基三唑啉酮降低风险的除草剂,用于玉米,小麦和大豆。作为其代谢命运评估的一部分,研究了浓度为0.22杯/克的[C-14] CF-E有氧水生代谢。在研究中使用了两种独立的水生沉积物(粉质粘土壤土和粘土壤土,被水淹没)。在整个30天的研究中的八个采样中,每个采样都评估了地表水,沉积物和挥发性组分之间的放射性分布。在零时,施加的大部分放射性都包含在水层中(83-90%),在30天后下降到70-80%。这与土壤层放射性百分比从第0天的4-6%增加到30天后的13-19%结合在一起。难以处理的土壤残留物和挥发性降解产物的形成量可以忽略不计。对来自任一水生沉积物的温育提取物的分析表明,母体CF-E酯可快速转化(<2天),转化为克芬特拉酮-氯丙酸。随着时间的流逝,形成了逐渐增加的包括> 90%所施加放射性的酸性降解产物的级联反应。这些降解产物的鉴定最初是通过与参考合成标准品进行色谱比较来实现的,随后使用LC-MS分析进行确认。提出了有氧水生条件下CF-E的降解途径。

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