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Movement and Fate of 2,4-D in Urban Soils: A Potential Environmental Health Concern

机译:2,4-D在城市土壤中的运动和命运:潜在的环境健康问题

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The fate and movement of 2,4-dichlorophenoxyacetic acid (2,4-D), in terms of sorption–desorption and leaching potential, were evaluated in urban soils following the batch experimental method. The sorption kinetics of 2,4-D in soils followed both “fast” and “slow” sorption processes that could be well described by a pseudo-second-order kinetics model, suggesting that 2,4-D was partitioned into soil organic matter and clay surfaces, and eventually diffused into soil micropores. The sorption isotherms were linear, following both Langmuir and Freundlich models. Partially decomposed or undecomposed organic matter present in urban soils decreased sorption and increased desorption of 2,4-D. Also, sorption of 2,4-D increased with an increase in the contents of clay and Al and Fe oxides, whereas sand and alkaline pH increased the desorption process. The lower calculated K _(d) values suggest that 2,4-D is highly mobile in urban soils than in agricultural soils. The calculated values of groundwater ubiquity score, leachability index, and hysteresis index indicated that the herbicide is highly prone to leach out from surface soil to groundwater which might affect the quality of potable water. The present study clearly suggests that 2,4-D must be judiciously applied in the urban areas in order to minimize the potential health and environmental risks.
机译:在批量实验方法后,在城市土壤中评估了2,4-二氯苯乙烯酸乙酸(2,4-D)的命运和运动,在城市土壤中评价。土壤中2,4-D的吸附动力学伴随着伪二阶动力学模型可以很好地描述的“快速”和“慢”吸附过程,表明将2,4d分配到土壤有机物中和粘土表面,最终扩散到土壤微孔中。在Langmuir和Freundlich模型之后,吸附等温线是线性的。城市土壤中存在的部分分解或未分解的有机物质降低了吸附和增加了2,4-D的解吸。而且,2,4-D的吸附随着粘土和Al和Fe氧化物的含量增加而增加,而砂和碱性pH增加解吸过程。下部计算的 k _(d)值表明,在城市土壤中,2,4-D在城市土壤中高于农业土壤。地下水悬雍度得分,可浸出性指数和滞后指数的计算值表明除草剂高度易于从地表土壤中浸出到地下水中,这可能会影响饮用水的质量。本研究明确表明,2,4-D必须明智地应用于城市地区,以尽量减少潜在的健康和环境风险。

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