Environmental Fate and Behavior of the Herbicide Glyphosate in Sandy Soils of Florida Under Citrus Production

Biwek Gairhe, Wenwen Liu, O. Batuman, P. Dittmar, D. Kadyampakeni, Ramdas G. Kanissery
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引用次数: 4

Abstract

Chemical weed control using herbicide glyphosate to manage emerged weeds is an important production practice in Florida citrus. Despite the extensive use of glyphosate in citrus orchards, very limited information is available on its environmental fate and behavior in Florida soils that are predominantly sandy in nature. Hence, the study’s objective was to understand the adsorption-desorption, dissipation dynamics, and vertical movement or leaching of glyphosate in sandy soils in citrus orchards. Laboratory, field, and greenhouse experiments were conducted at Southwest Florida Research and Education Center in Immokalee, Florida. The adsorption-desorption behavior of glyphosate in the soils from three major citrus production areas in Florida was studied utilizing a batch equilibrium method. The dissipation of glyphosate was tracked in the field following its application at the rate of 4.20 kg ae ha−1. Soil leaching columns in greenhouse conditions were used to study the vertical movement of glyphosate. The results suggest that glyphosate has a relatively lower range of adsorption or binding (Kads = 14.28–30.88) in the tested soil types. The field dissipation half-life (DT50) of glyphosate from surface soil was found to be ∼26 days. Glyphosate moved vertically or leached into the soil profile, up to 40 cm in the soil column, when analyzed 40 days after herbicide application. The primary degradation product of glyphosate, i.e., aminomethyl phosphonic acid (AMPA), was also detected up to the depth of 30 cm below the soil surface, indicating the presence of microbial metabolism of glyphosate in the soil.
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除草剂草甘膦在佛罗里达沙质土壤中柑橘生产的环境命运与行为
使用除草剂草甘膦进行化学除草是佛罗里达柑橘重要的生产实践。尽管在柑橘果园中广泛使用草甘膦,但关于其在佛罗里达州主要为沙质土壤中的环境命运和行为的信息非常有限。因此,本研究的目的是了解草甘膦在柑橘园沙质土壤中的吸附-解吸、耗散动力学和垂直运动或淋滤。实验室、田间和温室实验在佛罗里达州伊莫卡利的西南佛罗里达研究和教育中心进行。采用间歇平衡法研究了草甘膦在美国佛罗里达州3个主要柑橘产区土壤中的吸附-解吸行为。在田间以4.20 kg / hm - 1施用草甘膦后,跟踪草甘膦的耗散情况。采用温室土壤淋滤柱研究了草甘膦的垂直运动。结果表明,草甘膦在不同土壤类型中具有较低的吸附或结合范围(Kads = 14.28 ~ 30.88)。草甘膦在土壤表层的田间耗散半衰期(DT50)为~ 26天。除草剂施用40天后,草甘膦垂直或浸出进入土壤剖面,在土壤柱中高达40厘米。草甘膦的初级降解产物氨甲基膦酸(AMPA)也在土壤表面以下30 cm深度检测到,表明土壤中存在草甘膦的微生物代谢。
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