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首页> 外文期刊>Paddy and Water Environment >Fate and transport of bensulfuron-methyl and imazosulfuron in paddy fields: experiments and model simulation
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Fate and transport of bensulfuron-methyl and imazosulfuron in paddy fields: experiments and model simulation

机译:苄嘧磺隆和咪唑磺隆在稻田中的命运和运输:实验和模型模拟

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Experiments were conducted to determine the fate of bensulfuron-methyl (BSM) and imazosulfuron (IMS) under paddy conditions. Initially, laboratory experiments were conducted and the photolysis half-lives of the two herbicides were found to be much shorter than their hydrolysis half-lives in aqueous solutions. In the aerobic water–soil system, dissipation followed first-order kinetics with water half-lives of 9.1 and 11.0 days and soil half-lives of 12.4 and 18.5 days (first phase) and 35.0 and 44.1 days (second phase) for bensulfuron-methyl and imazosulfuron, respectively. However, the anaerobic soil half-lives were only 12.7 and 9.8 days for BSM and IMS, respectively. The values of K d were determined to be 16.0 and 13.8 for BSM and IMS, respectively. Subsequent field measurements for the two herbicides revealed that dissipation of both herbicides in paddy water involved biphasic first-order kinetics, with the dissipation rates in the first phase being much faster than those in the second phase. The dissipation of bensulfuron-methyl and imazosulfuron in the paddy surface soil were also followed biphasic first-order kinetics. These results were then used as input parameters for the PCPF-1 model to simulate the fate and transport of BSM and IMS in the paddy environment (water and 1-cm surface soil layer). The measured and simulated values agreed well and the mass balance error during the simulation period was −1.2 and 2.8% of applied pesticide, respectively, for BSM and IMS.
机译:进行实验以确定在稻田条件下甲基苯磺隆(BSM)和咪唑磺隆(IMS)的命运。最初,进行了实验室实验,发现两种除草剂的光解半衰期比其在水溶液中的水解半衰期短得多。在好氧水土系统中,耗散遵循一级动力学,苯磺隆的水半衰期分别为9.1和11.0天,水半衰期分别为12.4和18.5天(第一阶段)和35.0和44.1天(第二阶段)。甲基和咪唑磺隆。然而,BSM和IMS的厌氧土壤半衰期分别仅为12.7和9.8天。对于BSM和IMS,K d 的值分别确定为16.0和13.8。随后对这两种除草剂的实地测量表明,两种除草剂在稻田水中的消散涉及双相一阶动力学,第一阶段的消散速率远快于第二阶段的消散速率。稻田表层土壤中苄嘧磺隆和咪唑磺隆的消散也遵循两相一阶动力学。然后将这些结果用作PCPF-1模型的输入参数,以模拟BSM和IMS在稻田环境(水和1厘米表层土壤层)中的命运和运输。 BSM和IMS的测量值和模拟值吻合得很好,模拟期间的质量平衡误差分别为施药量的-1.2和2.8%。

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