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CHEMICAL DEMULSIFICATION OF MODEL WATER-IN-OIL EMULSIONS WITH LOW WATER CONTENT BY MEANS OF IONIC LIQUIDS

机译:通过离子液体用低含水含量模型水包油乳液的化学破乳

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The demulsification of model water-in-oil (w/o) emulsions containing 1% wt. water by [Omim][PF6] and Aliquat (R) 336 ionic liquids (IL) as demulsifiers was investigated in batch mode at different temperatures (30, 45 and 60 degrees C) and demulsifier concentrations (2.5x10(-3), 1.2x10(-2) and 2.9x10(-2) mol L-1). The model oil is a mixture n-heptane/toluene (70/30% wt.) with 1% wt. of Span (R) 83 as a surfactant. Experimental results showed that the main differences in demulsification dynamics between systems containing IL and blank (i.e., in the absence of demulsifier) are detected at 30 degrees C and for short demulsification times (t <= 4 h). In particular, the demulsification efficiency is 8, 21 and 74% for the blank sample, [Omim][PF6] and Aliquat (R) 336 tested under the more concentrated IL condition, respectively. The superior demulsification performances of Aliquat (R) 336 with respect to [Omim][PF6] were related to the greater molecular weight and more hydrophobic character of its cation, likely able to induce a faster desorption of the surfactant at the w/o interface and consequently promoting water droplet coalescence. Moreover, the kinetic demulsification data were successfully interpreted by an empirical pseudo-first order model. In general, the obtained outcomes encourage future research efforts in the use of ionic liquids for the removal of low water fractions from w/o emulsions.
机译:含有1%wt的模型水油(W / O)乳液的破乳。在不同温度(30,45和60℃)和破乳剂浓度(2.5×10(-3),1.2,以分批模式研究了作为破乳剂的水分(r)[PF6]和Aliquat(R)336离子液体(IL)作为破乳剂(2.5×10(-3),1.2 X10(-2)和2.9x10(-2)mol L-1)。模型油是二庚烷/甲苯(70/30%重量)的混合物,1%wt。跨度(r)83作为表面活性剂。实验结果表明,在30℃下检测含有IL和坯料的系统之间的破乳动力学的主要差异,并在30℃下检测到短的破乳时间(T <= 4小时)。特别地,在更浓缩的IL条件下分别在更浓缩的IL条件下测试的空白样品,[OMIM] [PF6]和Aliquat336的破乳效率为8,21和74%。 Aliquat(R)336相对于[OMIM] [PF6]的优异破乳性能与其阳离子的更大的分子量和更疏水性质有关,可能能够在W / O界面处诱导更快的吸附剂因此,促进水滴聚结。此外,通过经验伪第一阶模型成功解释了动力学破坏数据。通常,所获得的结果鼓励将来的研究努力在使用离子液体中以从W / O乳液中去除低水分。

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