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首页> 外文期刊>Water, Air, and Soil Pollution >THE ROLE OF SOIL PROPERTIES IN PYRENE SORPTION AND DESORPTION
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THE ROLE OF SOIL PROPERTIES IN PYRENE SORPTION AND DESORPTION

机译:土壤性质在P吸附和脱附中的作用

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摘要

Soil type will greatly affect the sorption and subsequent desorption of hydrophobic contaminants. To gain a better understanding of the impact of soil type on sorptive behavior, the sorption-desorption of pyrene (PYR) with three different soils was studied. The first soil originated from Colombia and is classified as silty sand with 3.54% soil organic matter (SOM) and 18% clay materials (<2 microns). The New Mexico soil is a sandy lean clay comprised of 8.4% SOM and 10% clay. The last soil originated from Ohio and is a silty sand with 1.84% SOM and 9.6% clay. Based on soil mineralogy and sorption-desorption isotherms, the Colombia soil had the greatest binding potential followed by the New Mexico and Ohio soils. The Freundlich model could fit both the Colombia and New Mexico soils. For the Ohio soil, a two-stage Freundlich model was required. For all three soils, PYR desorption was slow and resistant, and depicted an apparent hysteresis. The extent of sorption-desorption for each soil was attributed to its individual classification. For instance, the SOM present in the New Mexico soil (8.4%) enabled a relatively easy desorption in comparison to the other two soils. For the Ohio and Colombia soils, the interaction with the clay fractions rendered a stronger sorptive bond.
机译:土壤类型将极大地影响疏水性污染物的吸附和随后的解吸。为了更好地了解土壤类型对吸附行为的影响,研究了with在三种不同土壤中的吸附-解吸。第一种土壤起源于哥伦比亚,被分类为粉砂,其土壤有机质(SOM)为3.54%,粘土材料为18%(<2微米)。新墨西哥州的土壤是由8.4%的SOM和10%的粘土组成的稀砂质粘土。最后的土壤起源于俄亥俄州,是一种粉沙,含1.84%的SOM和9.6%的粘土。根据土壤矿物学和吸附-解吸等温线,哥伦比亚土壤具有最大的结合潜力,其次是新墨西哥州和俄亥俄州土壤。 Freundlich模型可以同时适合哥伦比亚和新墨西哥州的土壤。对于俄亥俄土壤,需要两阶段的Freundlich模型。对于所有三种土壤,PYR的解吸缓慢且抗性强,并表现出明显的滞后现象。每种土壤的吸附-解吸程度均归因于其各自的分类。例如,与其他两种土壤相比,新墨西哥州土壤中存在的SOM(8.4%)使解吸相对容易。对于俄亥俄州和哥伦比亚的土壤,与粘土级分的相互作用产生了更强的吸附键。

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