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Sorption of Pesticides in Tropical and Temperate Soils from Australia and the Philippines

机译:来自澳大利亚和菲律宾的热带和温带土壤中的农药吸附

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The sorption behavior of diuron,imidacloprid,and thiacloprid was investigated using 22 soils collected in triplicate from temperate environments in Australia and tropical environments in Australia and the Philippines.Within the temperate environment in Australia,the soils were selected from a range of land uses.The average K_(OC)values(L/kg)for imidacloprid were 326,322,and 336;for thiacloprid,the values were 915,743,and 842;and for diuron,the values were 579,536,and 618 for the Ord(tropical),Mt.Lofty(temperate),and Philippines(tropical)soils,respectively.For all soils,the sorption coefficients decreased in the following order:thiacloprid > diuron > imidacloprid.There were no significant differences in sorption behavior between the tropical soils from the Philippines and the temperate soils from Australia.Sorption was also not significantly related with soil characteristics,namely,organic carbon(OC)content,clay content,and pH,for any of the three chemicals studied.When the data were sorted into separate land uses,the sorption of all three chemicals was highly correlated(P < 0.001)with OC for the rice soils from the Philippines.Sorption coefficients for all three chemicals were highly correlated with OC in temperate,native soils only when one extreme value was removed.The relationships between sorption of all three chemicals and OC in temperate,pasture soils were best described by a polynomial.Sorption coefficients for imidacloprid and thiacloprid determined in the temperate pasture soils remained fairly consistent as the OC content increased from 3.3 to 5.3%,indicating that,although the total OC in the pasture soils was increasing,the component of OC involved with sorption of these two compounds may have been remaining constant.This study demonstrated that the origin of the soils(i.e.,temperate vs tropical)had no significant effect on the sorption behavior,but in some cases,land use significantly affected the sorption behavior of the three pesticides studied.The impact of land use on the nature of soil OC will be further investigated by NMR analysis.
机译:使用从澳大利亚温带环境和澳大利亚和菲律宾的热带环境一式三份收集的22种土壤,研究了敌草隆,吡虫啉和噻虫啉的吸附行为。在澳大利亚的温带环境中,从多种土地用途中选择了土壤。吡虫啉的平均K_(OC)值(L / kg)为326,322和336;噻虫啉的平均K_(OC)值为915,743和842;敌草隆的平均K_(OC)值为579,536和618,Ord(热带的)为Mt分别为轻度(温带)土壤和菲律宾(热带)土壤。在所有土壤中,吸附系数按以下顺序降低:噻虫啉>敌草隆>吡虫啉。菲律宾和菲律宾的热带土壤之间的吸附行为没有显着差异。对于三种被研究的化学物质中的任何一种,吸附也与土壤特性(即有机碳(OC)含量,粘土含量和pH)没有显着相关。根据不同的土地用途,菲律宾稻米土壤中三种化学物质的吸附与OC高度相关(P <0.001)。仅在一种极端温度下,这三种化学物质的吸附系数与温带,天然土壤中的OC高度相关。最好用多项式描述这三种化学物质在温带草场土壤中的吸附与OC的关系。随着OC含量从3.3增加到5.3,在温带草场土壤中测定的吡虫啉和噻虫啉的吸附系数保持一致。 %,表明尽管牧场土壤中的总OC不断增加,但与这两种化合物的吸附有关的OC成分可能一直保持不变。这项研究表明,土壤的起源(即温带与热带)对吸附行为无明显影响,但在某些情况下,土地利用会显着影响所研究的三种农药的吸附行为。 NMR分析将进一步研究土地利用对土壤OC性质的影响。

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