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Sorption-desorption behavior of pesticides and their degradation products in volcanic and nonvolcanic soils: interpretation of interactions through two-way principal component analysis

机译:火山和非火山土壤中农药及其降解产物的吸附-解吸行为:通过双向主成分分析解释相互作用

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Sorption-desorption behavior of six pesticides and some degradation products was assessed on seven agricultural volcanic and nonvolcanic soils belonging to Andisol, Ultisol, Mollisol, and Alfisol orders. The global interpretation of sorption data was performed by principal component analysis. Results showed exceptionally high sorption of glyphosate and aminomethylphosphonic acid (AMPA) (the breakdown product) on volcanic soils (K (f) > 1500 mu g(1 - 1 / n) mL(1 / n) g(-1)) related mainly to contents of amorphous aluminum oxides (Andisols) and crystalline minerals (Ultisols). The lower sorption on nonvolcanic soils was associated to low organic matter contents and lack of significant minerals. Metsulfuron-methyl and 3,5,6-trichloro-2-pyridinol (metabolite of chlorpyrifos) were weakly to substantially sorbed on Andisols and Ultisols, but the first one was not sorbed at pH > 6.4, including nonvolcanic soils. The metabolite of diazinon, 2-isopropyl-4-methyl-6-hydroxypyrimidine, was weakly sorbed on all soils (K (f) = 0.4 to 3.6 mu g(1 - 1 / n) mL(1 / n) g(-1)). Acidic compounds would be lixiviated in Mollisols and Alfisols, but they could leach also in Andisols and Ultisols if they reach greater depths. Atrazine and deethylatrazine sorption was related to organic carbon content; therefore, they were weakly retained on nonvolcanic soils (K (f) = 0.7 to 2.2 mu g(1 - 1 / n) mL(1 / n) g(-1)). Chlorpyrifos was highly sorbed on all soils reaching K (OC) values of > 8000. Finally, the significant retention of chlorothalonil and diazinon on Mollisols and Alfisols in spite of their low OC contents showed the contribution of clay minerals in the sorption process.
机译:在Andisol,Ultisol,Mollisol和Alfisol等级的7种农业火山和非火山土壤上评估了6种农药和一些降解产物的吸附-解吸行为。吸附数据的整体解释是通过主成分分析进行的。结果表明,在火山土壤上草甘膦和氨基甲基膦酸(分解产物)的吸附异常高(K(f)> 1500μg(1-1 / n)mL(1 / n)g(-1))主要涉及无定形氧化铝(Andisols)和晶体矿物(Ultisols)的含量。非火山土壤上的较低吸附与有机物含量低和缺乏重要矿物质有关。甲硫磺隆和3,5,6-三氯-2-吡啶醇(毒死rif的代谢产物)几乎不被Andisols和Ultisols吸附,但第一个在非火山土壤上的pH> 6.4时不被吸附。二嗪农的代谢产物2-异丙基-4-甲基-6-羟基嘧啶在所有土壤上均被弱吸收(K(f)= 0.4至3.6μg(1-1 / n)mL(1 / n)g(- 1))。酸性化合物可以溶解在Mollisols和Alfisols中,但是如果到达更深的地方,它们也可以在Andisols和Ultisols中浸出。阿特拉津和去乙基阿特拉津的吸附与有机碳含量有关。因此,它们被弱地保留在非火山土壤上(K(f)= 0.7至2.2μg(1-1 / n)mL(1 / n)g(-1))。毒死rif在K(OC)值> 8000的所有土壤上均被高度吸附。最后,尽管百菌清和二嗪农的OC含量低,但它们在Mollisol和Alfisol上的显着保留表明黏土矿物在吸附过程中的贡献。

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