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Adsorption-desorption of metalaxyl as affecting dissipation and leaching in soils: Role of mineral and organic components

机译:甲霜灵的吸附-解吸影响土壤的耗散和淋溶:矿物质和有机成分的作用

摘要

Adsorption-desorption studies of metalaxyl in fifteen agricultural soil samples from Southern Portugal and Spain were performed following a batch equilibration method. Very high sorption was observed on a clay soil of high content in altered illite, but, when this soil was excluded from regression analysis, organic matter (OM) was the most important single soil property affecting sorption at low concentrations of metalaxyl. At higher concentrations, no correlation was observed with any soil property. The relevance of OM on sorption was also corroborated by the increase in sorption coefficients when soil OM was increased artificially by the addition of an organic amendment. Sorption studies with the colloidal fraction of selected soils also revealed the importance of mineral surfaces in metalaxyl sorption. Sorption of metalaxyl in most of the soil samples was hysteretic. Selected soil samples were incubated in the dark, sampled periodically and extracted for their fungicide content. Metalaxyl half-lives increased with sorption and OM content of the soil, and were specially high in the amended soil. Leaching studies in hand-packed columns under saturated/unsaturated flow conditions showed an inverse relation between leaching and sorption. Recoveries from the soil columns were close to 80% of the metalaxyl applied, except for the soil which OM was artificially increased, in which recovery was lower and this has been attributed to the much higher irreversibility of metalaxyl sorption in the amended soil.
机译:采用间歇平衡法进行了葡萄牙南部和西班牙的15种农业土壤样品中甲霜灵的吸附-解吸研究。在蚀变伊利石中高含量的粘土土壤上观察到非常高的吸附,但是,当从回归分析中排除这种土壤时,有机物(OM)是影响低浓度甲霜灵吸附的最重要的单一土壤性质。在较高浓度下,未观察到与任何土壤性质的相关性。当通过添加有机改良剂人工增加土壤OM时,吸附系数的增加也证实了OM与吸附的相关性。对选定土壤的胶体部分进行的吸附研究也揭示了矿物表面在甲霜灵吸附中的重要性。大多数土壤样品中甲霜灵的吸附具有滞后性。选定的土壤样品在黑暗中孵育,定期取样并提取其杀菌剂含量。甲霜灵的半衰期随土壤的吸附和OM含量的增加而增加,在改良土壤中特别高。在饱和/不饱和流动条件下,手工填充柱的浸出研究表明,浸出和吸附之间存在反比关系。从土壤柱中回收的甲霜灵接近80%,除了人为增加OM的土壤外,后者的回收率较低,这归因于改良土壤中甲霜灵吸附的不可逆性高得多。

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