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Wettability Alteration of Clay in Solid-Stabilized Emulsions

机译:固体稳定乳液中粘土的润湿性变化

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摘要

Processing of bitumen froth obtained from surface mining process of Athabasca oil sands yields stable water-in-diluted bitumen emulsions. Even with a demulsifier, a "rag layer" forms between the oil and free water layers when clay solids are present. Experiments reveal that wettability of day solids has a significant effect on emulsion stability. Kaolinite in toluene-brine mixture was chosen as model system to study clay wettability alteration related to emulsion separation in bitumen froth treatment Sodium naphthenate was added to simulate the presence of naphthenic acid in diluted bitumen. The fraction of the kaolinite that settled to the bottom of the aqueous phase was measured, and was referred to as "water-wet fraction", to characterize the wettability of kaolinite. Without any additives, 96% of the kaolinite was water-wet. Addition of only 100 ppm sodium naphthenate reduced the water-wet fraction to only 18%. Wettability of kaolinite was altered by pH control, silicate, and surfactant under different mechanisms. Addition of 366 ppm silicate at pH 10 resulted in 80% of kaolinite being water-wet To prevent emulsion formation at high pH, cationic and amphoteric surfactants were evaluated as an alternative to alkali. Over 90% of kaolinite became water-wet when adding alkyl quaternary ammonium bromide, betaine, or amine oxide with optimal dosages.
机译:从Athabasca油砂的露天开采过程中获得的沥青泡沫的处理可产生稳定的稀释水包油沥青乳液。即使存在破乳剂,当存在粘土固体时,在油层和自由水层之间也会形成“抹布层”。实验表明,日固体的润湿性对乳液稳定性有重要影响。选择甲苯-盐水混合物中的高岭石作为模型系统,以研究与沥青泡沫处理中乳液分离有关的黏土润湿性改变。添加环烷酸钠以模拟稀释沥青中环烷酸的存在。测量沉降到水相底部的高岭石的分数,并称为“水湿分数”,以表征高岭石的润湿性。在没有任何添加剂的情况下,96%的高岭石是水润湿的。仅添加100 ppm的环烷酸钠可将水湿分数降至仅18%。 pH控制,硅酸盐和表面活性剂在不同机理下改变了高岭石的润湿性。在pH 10下添加366 ppm硅酸盐会导致80%的高岭石被水润湿。为防止在高pH下形成乳液,我们评估了阳离子和两性表面活性剂作为碱的替代品。当以最佳剂量添加烷基季铵溴化物,甜菜碱或氧化胺时,超过90%的高岭石变成水润湿的。

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  • 来源
    《Energy & fuels》 |2011年第mayajuna期|p.2551-2558|共8页
  • 作者单位

    Rice University, Houston, Texas, United States,Schlumberger Technology Corporation, 1325 S. Dairy Ashford St., Houston, Texas 77077, United States;

    Rice University, Houston, Texas, United States;

    Rice University, Houston, Texas, United States;

    Syncrude Canada Ltd., Edmonton Research Center, Edmonton, Alberta, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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