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Mixing effect of NaCl and surfactant on the remediation of TCB contaminated soil

机译:NaCl和表面活性剂混合对TCB污染土壤的修复作用。

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In order to evaluate the mixing effect of NaCl and surfactant on the remediation of TCB contaminated soil, column experiments were performed. Selected soils for this study were two Iowa field soils (Fruitfield, and Webster) and one Korea field soil (Pyeongtaek). We used four nontoxic, water-soluble anionic (DOSL, SLS) and nonionic surfactants (POE20, POE4). 1, 2, 4-trichlorobenzene (TCB) was chosen as the model contaminant. Selected electrolyte for this study was NaCl. The TCB contaminated soils were leached with surfactant solution of 4% (v/v) or 4% (w/v) with or without 5% (w/v) and 10% (w/v) NaCl. As controls, TCB contaminated soils were also leached with deionized water. For the nonionic surfactants (POE20, POE4), the mixing effect of NaCl on the solubilization of contaminant was insignificant. However, much greater mixing effectiveness was observed using anionic surfactant (SLS, single head structure) solutions containing electrolyte (NaCl) from two Iowa soils and one Korea soil. In contrast, another anionic surfactant (DOSL, double head structure) had little mixing effectiveness on the solubilization of TCB from three soils. However, the NaCl mixing effect of DOSL anionic surfactant was found after leaching of 2500 ml solution with Pyeongtaek soil. The effect of NaCl in changing effectiveness was due to Na+ (counterion) effects. The maximum recovery of added TCB in column tests was 97% for 4% (w/v) aqueous SLS anionic surfactant + 10% (w/v) NaCl. A little effectiveness of 4% (v/v) DOSL (anionic surfactant) with electrolytes may be due to small adsorption of the double-head sulfate polar heads onto soil particles. Therefore, these results showed that the key factor in the variation of TCB removal effect due to surfactant + NaCl leaching was not surfactant types but surfactant structure. Also, results of this study suggest that the anionic surfactant (SLS) solutions containing electrolyte (NaCl) is a good candidate for surfactant-assisted remediation of TCB contaminated soil.
机译:为了评估NaCl和表面活性剂对TCB污染土壤的修复效果,进行了柱实验。本研究选择的土壤是两种爱荷华州田间土壤(Fruitfield和Webster)和一种韩国田间土壤(平泽)。我们使用了四种无毒的水溶性阴离子(DOSL,SLS)和非离子表面活性剂(POE20,POE4)。选择1,2,4-三氯苯(TCB)作为模型污染物。本研究选择的电解质为NaCl。用4%(v / v)或4%(w / v)的表面活性剂溶液(含或不含5%(w / v)和10%(w / v)NaCl)浸出TCB污染的土壤。作为对照,TCB污染的土壤也用去离子水浸出。对于非离子表面活性剂(POE20,POE4),NaCl对污染物溶解的混合作用微不足道。但是,使用包含两种爱荷华州土壤和一种韩国土壤中的电解质(NaCl)的阴离子表面活性剂(SLS,单头结构)溶液观察到了更大的混合效果。相反,另一种阴离子表面活性剂(DOSL,双头结构)对从三种土壤中溶解TCB的混合效果很小。然而,在平泽土壤中浸出2500 ml溶液后,发现了DOSL阴离子表面活性剂的NaCl混合作用。 NaCl改变效果的作用是由于Na + (抗衡)作用。对于4%(w / v)的SLS阴离子表面活性剂+ 10%(w / v)的NaCl,柱测试中添加的TCB的最大回收率为97%。电解质中4%(v / v)DOSL(阴离子表面活性剂)的有效性可能是由于双头硫酸盐极性头在土壤颗粒上的少量吸附。因此,这些结果表明,由于表面活性剂+ NaCl浸出而导致TCB去除效果变化的关键因素不是表面活性剂类型而是表面活性剂结构。此外,这项研究的结果表明,含有电解质(NaCl)的阴离子表面活性剂(SLS)溶液是表面活性剂辅助修复TCB污染土壤的良好选择。

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