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Potential of anionic-nonionic surfactant mixtures for oilwell contaminated drillcuttings washing

机译:阴离子-非离子表面活性剂混合物在油井污染的钻屑洗涤中的潜力

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摘要

Surfactant-enhanced washing is being considered with increasing frequency to achieve contaminant removal. However, sorption of nonionic surfactants by soil surfaces such as clay minerals and/or organic matter content and abstraction of anionic surfactant by multivalent cations may negate their contaminant extraction efficiency. In this research anionic (SDS), nonionic (TX100) and their mixtures (1:1, 1:2, 2:1; TX100:SDS volumetric ratios) were evaluated for the washing enhancement of oilwell contaminated drillcuttings. Evaluation of surfactants are based on examining the ability of the surfactant to maintain lower surface tensions (ST), lower interfacial tensions (IFT) between Sarapar l47 and water, satisfying lower critical micelle concentrations (CMCs), and sustaining lower sorption to drillcuttings. Interaction between binary surfactant mixtures were studied by surface and interfacial tensions. The composition of mixed micelles and the interaction parameter, β evaluated from the CMC data obtained by both surface and interfacial tensions for different systems using Rubingh’s theory were discussed. Using IFTs to determine CMCs before and after equilibration with shale (drillcuttings surrogate) gave different results than using ST technique. Considering ST technique, it has been concluded that presence of SDS do not reduce sorption of TX 100 to shale and that the binary mixtures of SDS and TX 100 do not show any synergism. However, IFT technique measurements allow opposite conclusions, i.e., sorption of TX 100 was significantly reduced by addition of SDS at all molar ratios used in this study. Furthermore, SDS: TX100 mixtures showed a strong synergism particularly in CMCs. The estimated interaction parameters indicate an overall attractive interaction in the mixed micelles.
机译:为了提高去除污染物的效率,正在考虑使用表面活性剂增强的清洗方法。但是,土壤表面(如粘土矿物和/或有机物含量)对非离子表面活性剂的吸附以及多价阳离子对阴离子表面活性剂的提取可能会抵消其污染物的提取效率。在这项研究中,对阴离子(SDS),非离子(TX100)及其混合物(1:1、1:2、2:1; TX100:SDS的体积比)进行了评估,以提高油井污染的钻屑的洗涤效果。表面活性剂的评估是基于检查表面活性剂保持较低的表面张力(ST),较低的Sarapar 47和水之间的界面张力(IFT),满足较低的临界胶束浓度(CMC)以及维持对钻屑的较低吸附力的能力。通过表面和界面张力研究了二元表面活性剂混合物之间的相互作用。讨论了混合胶束的组成和相互作用参数,β是通过使用Rubingh的理论对不同系统的表面和界面张力获得的CMC数据进行评估的。与使用页岩技术进行平衡之前和之后,使用IFT确定页岩(钻屑替代物)平衡前后的CMC得出的结果不同。考虑到ST技术,已经得出结论,SDS的存在不会降低TX 100对页岩的吸附,并且SDS和TX 100的二元混合物没有显示出任何协同作用。但是,IFT技术的测量得出相反的结论,即,在本研究中使用的所有摩尔比下,通过添加SDS显着降低TX 100的吸附。此外,SDS:TX100混合物显示出强大的协同作用,尤其是在CMC中。估计的相互作用参数表明混合胶束中的整体吸引力相互作用。

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  • 作者

    Muherei M. A.; Junin Radzuan;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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