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A comparative study of adsorption of an anionic and a non-ionic surfactant by soils based on physicochemical and mineralogical properties of soils

机译:基于土壤理化和矿物学性质的土壤吸附阴离子和非离子表面活性剂的比较研究

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摘要

In the present work we performed a comparative study on the adsorption of the surfactants sodium dodecyl sulphate (SDS) (anionic), and octylphenoxypolyethoxyethanol (Triton X-100) (non-ionic) to 18 soils with organic matter (OM) and clay fraction contents varying over a broad range. The objective of the study was to gain further insight into the influence of the physicochemical and mineralogical properties of soils on the adsorption of surfactants by soils. Adsorption isotherms were obtained using concentrations below the critical micellar concentration (cmc) of the surfactants. The adsorption coefficients, K_f, determined from the Freundlich equation were lower for SDS (range 1.77-82.1, mean value 36.3) than for Triton X-100 (range 0.01-913, mean value 257). Simple and multiple correlation coefficients were obtained between K_f values and soil characteristics. The results obtained indicate the influence of the OM content on the adsorption of SDS (r = 0.64, p < 0.01) and of the clay fraction content on that of Triton X-100 (r = 0.83, p < 0.001). Additionally, we observed a preferential adsorption of SDS by the 1:1 mineral kaolinite (r = 0.54, p < 0.05), while Triton X-100 was adsorbed mainly by the 2:1 minerals, montmorillonite (r = 0.66, p < 0.01) and illite (r - 0.87, p < 0.001). According to the influence of different soil parameters on adsorption, different mechanisms of adsorption are proposed for each surfactant. Our findings point to the interest of considering the physicochemical properties of soils and also the mineralogy of the soil clay fraction when selecting a surfactant in technologies involving enhanced solubilization and removal of contaminants from soils and sediments.
机译:在目前的工作中,我们对表面活性剂十二烷基硫酸钠(SDS)(阴离子型)和辛基苯氧基聚乙氧基乙醇(Triton X-100)(非离子型)在18种有机物(OM)和粘土级分的土壤上的吸附进行了比较研究。内容变化很大。该研究的目的是进一步了解土壤的理化和矿物学性质对土壤吸附表面活性剂的影响。使用低于表面活性剂的临界胶束浓度(cmc)的浓度获得吸附等温线。根据弗氏方程确定的吸附系数K_f对于SDS(范围1.77-82.1,平均值36.3)要比Triton X-100(范围0.01-913,平均值257)低。在K_f值和土壤特性之间获得了简单和多个相关系数。所得结果表明,OM含量对SDS吸附的影响(r = 0.64,p <0.01)和粘土组分含量对Triton X-100吸附的影响(r = 0.83,p <0.001)。此外,我们观察到1:1矿物高岭石对SDS的优先吸附(r = 0.54,p <0.05),而Triton X-100主要被2:1矿物蒙脱石(r = 0.66,p <0.01)吸附。 )和伊利石(r-0.87,p <0.001)。根据不同土壤参数对吸附的影响,对每种表面活性剂提出了不同的吸附机理。我们的发现表明,在涉及增强溶解度和从土壤和沉积物中去除污染物的技术中选择表面活性剂时,应考虑土壤的理化性质以及土壤粘土级分的矿物学。

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