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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Influence of humic acid on adsorption and desorption of atrazine, hydroxyatrazine, deethylatrazine, and deisopropylatrazine onto a clay-rich soil sample
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Influence of humic acid on adsorption and desorption of atrazine, hydroxyatrazine, deethylatrazine, and deisopropylatrazine onto a clay-rich soil sample

机译:腐殖酸对富含粘土的土壤样品上阿特拉津,羟基阿特拉津,脱乙基阿特拉津和去异丙基阿特拉津的吸附和解吸的影响

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摘要

Adsorption and desorption properties of atrazine and some of its metabolites, hydroxyatrazine (AT-OH), deethylatrazine (DEA), and deisopropylatrazine (DIA), were studied with a clay-rich soil sample (clay content of 53%). A part of this soil was treated with humic acid (Soil-HA) to assess the influence of this important component of natural organic matter on adsorption and desorption processes. This study was performed using the batch approach with 1.0 g of soil, or Soil-HA, in 5.0 mL of 0.010 mol L(-)(1) CaCl(2) solution containing the herbicide and the metabolites in a concentration range between 0.010 and 5.0 mg L(-)(1). After 24 h of contact time, the suspensions were centrifuged and the four compounds were quantified in the supernatant phases by high-performance liquid chromatography. The adsorption and desorption data of both Soil and Soil-HA were properly fitted by the linearized Freundlich equation. For the untreated soil, the adsorption affinity order evaluated as a function of the K(f) values was AT-OH > AT > DIA > DEA, while desorption followed the order DEA > DIA approximately AT > AT-OH. The presence of humic acid increased significantly the adsorption of all compounds, following the same affinity order observed for the untreated soil. Increase in adsorption was especially high for AT-OH and AT. On the other hand, the dealkylated metabolites, DEA and DIA, were more easily desorbed from the Soil-HA sample, suggesting that natural organic matter facilitates the leaching of these compounds. Desorption order in the presence of humic acid was DEA > DIA > AT > AT-OH.
机译:用富含粘土的土壤样品(粘土含量为53%)研究了r去津及其某些代谢物羟基去去津(AT-OH),去乙基去津(DEA)和去异丙基去去津(DIA)的吸附和解吸特性。用腐殖酸(Soil-HA)处理了土壤的一部分,以评估天然有机物这一重要成分对吸附和解吸过程的影响。这项研究是使用批处理方法,在1.0mL的土壤中,或在1.0mL的0.010 mol L(-)(1)CaCl(2)溶液中,加入0.010 mol的L(-)(1)CaCl(2)溶液,其代谢物的浓度范围为0.010至5.0毫克L(-)(1)。接触24小时后,将悬浮液离心,并通过高效液相色谱对上清相中的四种化合物进行定量。土壤和土壤HA的吸附和解吸数据均通过线性Freundlich方程进行了拟合。对于未经处理的土壤,根据K(f)值评估的吸附亲和力顺序为AT-OH> AT> DIA> DEA,而解吸遵循DEA> DIA近似为AT> AT-OH。腐殖酸的存在显着增加了所有化合物的吸附,遵循未处理土壤观察到的相同亲和力顺序。对于AT-OH和AT,吸附的增加特别高。另一方面,脱烷基的代谢物DEA和DIA更易于从土壤HA样品中解吸,这表明天然有机物有助于这些化合物的浸出。腐殖酸存在下的解吸顺序为DEA> DIA> AT> AT-OH。

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