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Antecedent and Post-Application Rain Events Trigger Glyphosate Transport from Runoff-Prone Soils

机译:先发病人和申请后的雨雨事件引发径流易受土壤的草甘膦运输

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Recent environmental surveys report widespread detections of the herbicide glyphosate [N-(phosphonomethyl)glycine] in surface waters, despite its strong immobilization and rapid biodegradation in soils. We performed four high-frequency sampling campaigns (from 2015 to 2017) following controlled spray applications on an experimental perennial grass field site with wetness-prone marginal soils. We monitored dissolved glyphosate concentrations in the outflow (runoff and shallow drainage) using liquid chromatography mass spectrometry and enzyme-linked immunosorbent assays. Rainfall-triggered outflow events occurred between 3 and 13 days following spray application. Outflow concentrations varied widely from nondetectable levels to 90 mu g L-1, peaking during the first significant outflow event in each campaign and diminishing as flows subsided. Subsequent outflow peaks caused concentrations to increase again but to a lesser extent. Cumulative mass efflux in outflow across the different campaigns ranged from 0.06 to 1.0% of applied glyphosate. Cumulative glyphosate losses in the outflow were not during the postspray sampling period, but rather with soil hydrologic conditions at the time of spraying as reflected by the 7 day cumulative prespray rainfall, with wetter antecedent conditions favoring greater cumulative mobilization. Avoiding spraying under such conditions may mitigate potential glyphosate mobilization.
机译:尽管其强烈固定和土壤中快速生物降解,但最近的环境调查在表面水中的除草剂[N-(膦酰基)甘氨酸[N-(膦酰基甲基)甘氨酸]的广泛检测。我们进行了四次高频采样运动(从2015年到2017年),在实验多年生草地现场受控喷涂应用后,易受易受损害的边际土壤。我们使用液相色谱质谱和酶联免疫吸附试验监测流出(径流和浅引流)中的溶解的草甘膦浓度。喷雾触发的流出事件发生在喷涂后3至13天之间。流出浓度广泛地从不可选定的水平差异到90μgl-1,在每个活动中的第一个显着流出事件期间达到峰值,并且随着流量的流动减少。随后的流出峰使浓度再次增加,但在较小程度上增加。跨越不同运动流出的累积质量流出范围从施用的草甘膦的0.06%到1.0%。流出的累积草甘膦损失在后喷雾采样期间,而是在喷涂时的土壤水文条件如7天累积的压降降雨,较潮湿的累计动员。在这种条件下避免喷雾可能会减轻潜在的草甘膦动员。

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