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Hydrolytic Activation Kinetics of the Herbicide Benzobicyclon in Simulated Aquatic Systems

机译:模拟水生系统中除草剂苯并双环的水解活化动力学。

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Herbicide resistance is a growing concern for weeds in California rice fields. Benzobicyclon (BZB; 3-(2-chloro-4-(methylsulfonyl)benzoyl)-2-phenylthiobicyclo[3.2.1]oct-2-en-4-one) has proven successful against resistant rice field weeds in Asia. A pro-herbicide, BZB forms the active agent, benzobicyclon hydrolysate (BH), in water; however, the transformation kinetics are not understood for aquatic systems, particularly flooded California rice fields. A quantitative experiment was performed to assess the primary mechanism and kinetics of BZB hydrolysis to BH. Complete conversion to BH was observed for all treatments. Basic conditions (pH 9) enhanced the reaction, with half-lives ranging from 5 to 28 h. Dissolved organic carbon (DOC) hindered transformation, which is consistent with other base-catalyzed hydrolysis reactions. BH was relatively hydrolytically stable, with 18% maximum loss after 5 days. Results indicate BZB is an efficient pro-herbicide under aqueous conditions such as those of a California rice field, although application may be best suited for fields with recirculating tailwater systems.
机译:抗除草剂性是加利福尼亚稻田中杂草日益引起关注的问题。苯并双环酮(BZB; 3-(2-氯-4-(甲基磺酰基)苯甲酰基)-2-苯基硫代双环[3.2.1] oct-2-en-4-one)已被证明能成功抵抗亚洲的稻田杂草。前除草剂BZB在水中形成活性剂苯并双环水解物(BH);但是,对于水生系统,特别是水淹的加利福尼亚稻田,尚不了解转化动力学。进行了定量实验,以评估BZB水解为BH的主要机理和动力学。在所有处理中均观察到完全转化为BH。碱性条件(pH 9)可增强反应,半衰期为5至28小时。溶解的有机碳(DOC)阻碍了转化,这与其他碱催化的水解反应一致。 BH相对水解稳定,5天后最大损失为18%。结果表明,在含水条件下,例如加利福尼亚稻田,BZB是一种有效的除草剂,尽管该应用可能最适合于带循环尾水系统的田地。

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