Wei Jia, Li Jun, Huang Guohe, Wang Xiujie, Chen Guanghui, Zhao Baihang
Key Laboratory of Beijing for Water Quality Science and Water Environment Recovery Engineering, Beijing University of Technology, Beijing, 100124, China.
Faculty of Engineering and Applied Science, University of Regina, Regina, Saskatchewan, S4S 0A2, Canada.
Environ Sci Pollut Res Int. 2016 Sep;23(18):18034-42. doi: 10.1007/s11356-016-6966-9. Epub 2016 Jun 3.
A new generation of surfactant, Gemini surfactants, have been synthesized and have attracted the attention of various industrial and academic research groups. This study focused on the use of symmetric and dissymmetric quaternary ammonium Gemini surfactants to immobilize naphthalene onto soil particles, and is used as an example of an innovative application to remove HOC in situ using the surfactant-enhanced sorption zone. The sorption capacity of modified soils by Gemini surfactant and natural soils was compared and the naphthalene sorption efficiency, in the absence and presence of Gemini surfactants with different alkyl chain lengths, was investigated in the soil-water system. The results have shown that the increased added Gemini surfactant formed admicelles at the interface of soil/water having superior capability to retard contaminant. Symmetric and dissymmetric Gemini surfactants have opposite effect on the aspect of removing of PAH attributing to their solubilization and sorption behavior in soil-water system. Compared with the natural soil, sorption of naphthalene by Gemini-modified soil is noticeably enhanced following the order of C12-2-16 < C12-2-12 < C12-2-8. However, the symmetric Gemini surfactant C12-2-12 is the optimized one for in situ barrier remediation, which is not only has relative high retention ability but also low dosage.
新一代表面活性剂——双子表面活性剂已经合成出来,并引起了各工业和学术研究团体的关注。本研究聚焦于使用对称和不对称季铵盐双子表面活性剂将萘固定在土壤颗粒上,并作为利用表面活性剂增强吸附区原位去除疏水性有机化合物的创新应用实例。比较了双子表面活性剂改性土壤和天然土壤的吸附能力,并研究了在有无不同烷基链长度双子表面活性剂存在的情况下,土壤 - 水体系中萘的吸附效率。结果表明,增加双子表面活性剂的添加量会在土壤/水界面形成吸附胶束,其具有更强的阻滞污染物的能力。对称和不对称双子表面活性剂在去除多环芳烃方面具有相反的效果,这归因于它们在土壤 - 水体系中的增溶和吸附行为。与天然土壤相比,双子表面活性剂改性土壤对萘的吸附明显增强,顺序为C12 - 2 - 16 < C12 - 2 - 12 < C12 - 2 - 8。然而,对称双子表面活性剂C12 - 2 - 12是原位屏障修复的最佳选择,它不仅具有较高的保留能力,而且用量低。