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Chlorpyrifos decline curves and residue levels from different commercial formulations applied to oranges.

机译:来自应用于橙子的不同商业配方的毒死rif下降曲线和残留水平。

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Residue levels and degradation rates of chlorpyrifos in orange fruits, orange leaves, and soil were investigated by using three different formulation types, that is, emulsifiable concentrate (EC), wettable granules (WG), and microencapsulates (ME). The pesticide degradation was studied for a period 131 days in orange fruits and for 161 days in orange leaves and soil. The experimental data were used to establish a mathematical model for the decline curves of chlorpyrifos residues as a function of time and to determine the relevant parameters describing such a process. Field trials showed a different degradation rate for EC and WG formulations as compared to ME formulation. For the first two formulations, the dissipation of chlorpyrifos in orange fruits was fast during the first phase and became much slower during the later period. Residue levels of chlorpyrifos from ME remained almost constant for approximately 65 days and then began to decrease. A similar behavior was observed for the three chlorpyrifos formulations on orange leaves and soil. Although microencapsulation of pesticides leads to improved handling safety, additional risks for the consumers, the agriculture workers, and the environment should be taken into account due to prolonged persistence of high residue levels in fruits as well as in leaves and soil.
机译:通过使用三种不同的制剂类型,即乳油(EC),可湿性颗粒(WG)和微囊剂(ME),研究了橙果,橙叶和土壤中毒死rif的残留水平和降解速率。在橙色水果中研究了131天农药降解,在橙色叶片和土壤中研究了161天农药降解。实验数据用于建立毒死rif残留量随时间的下降曲线的数学模型,并确定描述该过程的相关参数。现场试验表明,与ME配方相比,EC和WG配方的降解率不同。对于前两种配方,毒死rif在橙色水果中的消散在第一阶段很快,而在后期则慢得多。来自ME的毒死rif残留水平在大约65天保持几乎恒定,然后开始下降。在橙叶和土壤上观察到三种毒死formulation制剂的相似行为。尽管农药的微胶囊化可以提高处理安全性,但由于水果,树叶和土壤中的高残留水平的持续存在,对消费者,农业工人和环境的额外风险也应考虑在内。

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