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Water Hyacinth Control by Glyphosate Herbicide and Its Impact on Water Quality

机译:草甘膦除草剂的水葫芦控制及其对水质的影响

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The aim of this study was to evaluate the herbicide glyphosate under aquatic environment conditions, in a controlled and closed experimental field, in the management of water hyacinth (Eichhornia crassipes) in reservoirs. Twenty reservoirs (polyethylene water tanks) with storage capacity of 1000 liters were used, without water flow and without evapotranspired water replacement (worst case), being 04 for each treatment. The adult plants were placed in the water tanks to provide 90% surface occupation of the reservoir. Five treatments with four repetitions were considered, being: 1) Reservoir colonized by water hyacinth without control;2) Reservoir colonized by water hyacinth, controlled by glyphosate;3) Reservoir colonized by water hyacinth, controlled by freezing;4) Reservoir without water hyacinth and glyphosate application and 5) Reservoir without water hyacinth and no glyphosate application. The glyphosate herbicide was used at the highest recommended dose, 7.0 L·ha-1 or 3360 g of acid equivalent per ha, applied using carbon dioxide precision equipment (backpack sprayer), providing a flow rate of 200 L·ha-1. The water samples were collected at the time of application, 6, 12, 18 and 24 hours after application and also at 2, 4, 8, 16, 32 and 64 days after application, in the morning, always at the same time, also between 8 and 9 h. The method used for determination of residues was by high performance liquid chromatography (HPLC) and mass spectrometry with a mass selective detector. Low concentrations of glyphosate and aminomethylphosphonic acid (AMPA) were found in both reservoirs that received application of the product. The half-life of glyphosate in water to the reservoirs with water hyacinth was 11 days and in the reservoirs without water hyacinth was 21 days. The results show a low potential of environmental impact of glyphosate use in the control of water hyacinth in reservoirs.
机译:本研究的目的是在水生环境条件下,在一个受控和封闭的实验领域中评估除草剂草甘膦,在水库中的水合风信(Eichhornia Crassipes)的管理中。使用20升储存容量的二十个储层(聚乙烯水箱),无水流动,没有蒸发的水更换(最坏情况),每次治疗都是04。将成年植物置于水箱中,以提供90%的储层表面占用。被认为是:1)储层通过水凝集而没有控制的储层; 2)由水葫芦,由草甘膦控制的水留沉淀的储层; 3)通过水葫芦殖民的储层,通过冷冻控制; 4)储层无水风信和草甘膦的应用和5)储层没有水葫芦和没有草甘膦的应用。使用二氧化碳精密设备(背包喷雾器)施加的每公顷的最高推荐剂量,7.0L·HA-1或3360g酸等当量,使用甘氨酸除草剂,提供200L·HA-1的流速。在施用后6,12,18和24小时内收集水样,在申请后的2,4,8,16,32和64天,早晨,始终同时,也是如此在8到9小时之间。用于测定残基的方法是通过高效液相色谱(HPLC)和具有质量选择性检测器的质谱法。在接受产品应用的两个储存器中发现了低浓度的草甘膦和氨基甲基膦酸(AMPA)。将草甘膦在水中的半衰期与水风信花的水库为11天,在没有水葫芦的储层中为21天。结果表明,草甘膦在水库中的水葫芦控制中使用对草甘膦的环境影响的低潜力。

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