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首页> 外文期刊>Journal of Enviromental Quality >Effects of Soil Phosphorus Status on Environmental Risk Assessment of Glyphosate and Glufosinate-Ammonium
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Effects of Soil Phosphorus Status on Environmental Risk Assessment of Glyphosate and Glufosinate-Ammonium

机译:土壤磷素状况对草甘膦和草铵膦环境风险评估的影响

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摘要

The increased use of herbicides poses a risk to the aquatic environment. Easy and economical methods are needed to identify the fields where specific environment protection measures are needed. Phosphorus (P) and organophosphorus herbicides compete for the same adsorption sites in soil. In this study the relationship between P obtained in routine Finnish agronomic tests (acid ammonium acetate [PAC]) and adsorption of glyphosate and glufosinate-ammonium was investigated to determine whether PAC values could be used in the risk assessment. The adsorption of glyphosate ((N-(phosphonomethyl)glycine) and glufosinate-ammonium (2-amino-4-(hydroxymethylphosphinyl)butanoic acid) was studied in a clay and a sandy loam soil enriched with increasing amounts of P added as potassium dihydrogen phosphate. Desorption was also determined for some P-enriched soil samples. The adsorption of both herbicides diminished with increasing PAC value. The correlations between Freundlich adsorption coefficients obtained in the adsorption tests and PAC were nonlinear but significant (r > 0.98) in both soils. The exponential models of the relationship between soil PAC values and glyphosate adsorption were found to fit well to an independent Finnish soil data set (P < 0.1 for glyphosate and P < 0.01 for glufosinate-ammonium). The desorption results showed that glufosinate-ammonium sorption is not inversely related to soil P status, and the high correlation coefficients obtained in the test of the model were thus artifacts caused by an abnormal concentration of exchangeable potassium in soil. The solved equations are a useful tool in assessing the leaching risks of glyphosate, but their use for glufosinate-ammonium is questionable.
机译:除草剂使用的增加对水生环境构成威胁。需要简单而经济的方法来确定需要特定环境保护措施的领域。磷(P)和有机磷除草剂争夺土壤中相同的吸附位点。在这项研究中,研究了在芬兰常规农艺试验中获得的P(酸性乙酸铵[PAC])与草甘膦和草铵膦-铵的吸附之间的关系,以确定PAC值是否可用于风险评估。研究了草甘膦((N-(膦酰基甲基)甘氨酸)和草铵膦-铵盐(2-氨基-4-(羟甲基膦基)丁酸)在粘土和沙质壤土中的吸附情况,该土壤富含作为P的增加的二氢钾在一些富磷土壤样品中也测定了解吸,两种除草剂的吸附随着PAC值的增加而减少,在吸附试验中获得的Freundlich吸附系数与PAC之间的关系是非线性的,但在两种土壤中均具有显着性(r> 0.98)。 。发现土壤PAC值与草甘膦吸附之间关系的指数模型非常适合独立的芬兰土壤数据集(草甘膦为P <0.1,草铵膦为P <0.01),解吸结果为草铵膦-铵吸附与土壤P状况不是反相关的,因此在模型测试中获得的高相关系数是由异常锥度引起的伪影土壤中可交换钾的浓度解出的方程式是评估草甘膦浸出风险的有用工具,但将其用于草铵膦铵盐仍存在疑问。

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