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Geoelectrical response of surfactant solutions in a quartzitic sand analog aquifer.

机译:石英砂模拟含水层中表面活性剂溶液的地电响应。

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摘要

In this project, the resistivity and phase shift of ten surfactant aqueous solutions in a sand matrix were measured using spectral induced polarization (SIP). In addition, specific conductivity, pH, dissolved oxygen, and dielectric constant measurements of the solutions were also evaluated. The frequency range assessed was 0.091-12000Hz. The surfactants, which are typically used in the remediation of tetrachloroethylene, were Aerosol MA 80-I, Dowfax 8390, and Steol CS-330. The surfactants were mixed into solutions of both deionized and tap water at varying concentrations and injected into a closed system of silica sand. The surfactant treatments altered resistivity, specific conductivity, and pH to varying degrees. Increased real and specific conductivities associated with surfactant presence support the work of Werkema (2008), and the correlation between real and specific conductivities indicates that the primary electrical conduction mechanism in quartz sand-water environment. A decrease in the pH response associated with high concentration surfactant solutions could impact subsurface organisms, potentially affecting bioremediation. Phase, dissolved oxygen, and dielectric constant response to surfactant showed little change from the control. The positive results suggest that geoelectrical changes may be an applicable property to map and monitor surfactant floods in the subsurface. In order to better understand how the geoelectrical response of surfactant solutions would respond in a field situation, it will be necessary to increase the complexity of the experimental set-up. Increasing the heterogeneity of both the solid materials and pore fluid through the addition of clays and chlorinated solvents are potential avenues to follow.
机译:在该项目中,使用光谱感应极化(SIP)测量了砂基质中十种表面活性剂水溶液的电阻率和相移。此外,还评估了溶液的比电导率,pH,溶解氧和介电常数。评估的频率范围是0.091-12000Hz。通常用于四氯乙烯修复的表面活性剂为Aerosol MA 80-1,Dowfax 8390和Steol CS-330。将表面活性剂以不同的浓度混入去离子水和自来水溶液中,然后注入密闭的硅砂体系中。表面活性剂处理可在不同程度上改变电阻率,比电导率和pH值。与表面活性剂存在相关的真实电导率和比电导率的增加支持了Werkema(2008)的工作,真实电导率和比电导率之间的相关性表明,石英砂-水环境中的主要电导机理。与高浓度表面活性剂溶液相关的pH响应降低可能影响地下生物,从而可能影响生物修复。相,溶解氧和对表面活性剂的介电常数响应与对照相比变化很小。积极的结果表明,地电变化可能是用于绘制和监测地下表面活性剂泛滥的适用属性。为了更好地理解表面活性剂溶液的地电响应在现场情况下将如何响应,有必要增加实验装置的复杂性。通过添加粘土和氯化溶剂来增加固体材料和孔隙流体的不均一性是可能的途径。

著录项

  • 作者

    Magill, Meghan Therese.;

  • 作者单位

    University of Nevada, Las Vegas.;

  • 授予单位 University of Nevada, Las Vegas.;
  • 学科 Geology.Hydrology.Geophysics.
  • 学位 M.S.
  • 年度 2009
  • 页码 185 p.
  • 总页数 185
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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