Characterizing of Ferric Ion interaction with Viscoelastic Surfactant VES-Based Acidizing Fluid

S. Afra, H. Samouei, H. Nasr-El-Din
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Abstract

Viscoelastic surfactant (VES) have been successfully applied as acid-diversion fluids. However, high temperature, interaction of VES and Fe(III), addition of alcohol-based additives, and chelating agents all interfere with the apparent viscosity of the VES-based acid and reduce its efficiency. In the present study, the interactions of Fe(III) with a new type of VES-based acid system, which can be applied effectively for diversion at high temperatures, were characterized in a wide range of pH. The physical behavior of the VES solutions after addition of iron at various pH values were observed visually to determine any change in the viscoelasticity of the solutions. In the present study, because of the similarity between chemical structures, 3-sulfopropyldimethyl-3-methacryl -amidopropylammonium (SMA) was used as a model compound of VES to characterize the nature of the interaction between VES and Fe(III). IR spectroscopy was employed to understand the nature of the SMA interactions with Fe(III) in different pH values. Also, UV-vis spectroscopy was conducted to determine stoichiometry of the interactions as well. Single X-ray crystallography was also utilized to further understand the nature of interaction between SMA and Fe(III). Bottle test results show the formation of a viscoelastic gel at different pH in the presence of Fe(III)and VES. IR results express that the interaction of SMA and Fe(III) occurs through the amide group in the SMA which is existed in the headgroup of tested VES too. These results confirms previous observations that the interaction of amide part of the VES with Fe(III) results in screening the repulsion forces between surfactant head groups and formation of wormlike micelles that is the primary reason for increase in the viscosity. Results of continuous variation method on SMA and Fe(III) also confirm the 1:1 stoichiometry in their interaction which are in agreement with the results of our previous study on stoichiometry of VES and Fe(III) interaction. The present paper is the first mechanistic attempt to characterize and understand the nature of a VES-based system interaction with Fe(III) by using a model compound that has the same headgroup as tested VES. The findings of the present study can be utilized to further investigations of the effects of additives on the performance of VES- based systems.
粘弹性表面活性剂vs基酸化液中铁离子相互作用的表征
粘弹性表面活性剂(VES)已成功地应用于酸液分流。然而,高温、VES与Fe(III)的相互作用、醇基添加剂的加入以及螯合剂的加入都会影响VES基酸的表观粘度,降低其效率。在本研究中,Fe(III)与一种新型的基于VES的酸体系的相互作用,可以有效地用于高温导流,在广泛的pH范围内进行了表征。在不同的pH值下,添加铁后的VES溶液的物理行为被直观地观察到,以确定溶液的粘弹性的任何变化。在本研究中,由于化学结构的相似性,我们以3-磺基丙基二甲基-3-甲基丙基-氨基丙基铵(SMA)作为VES的模型化合物来表征VES与Fe(III)之间相互作用的性质。利用红外光谱研究了不同pH值下SMA与Fe(III)相互作用的性质。同时,采用紫外-可见光谱法测定相互作用的化学计量学。单x射线晶体学也被用来进一步了解SMA和Fe(III)之间相互作用的性质。瓶试结果表明,在不同pH值下,Fe(III)和VES存在下,形成粘弹性凝胶。红外光谱结果表明,SMA与Fe(III)的相互作用是通过SMA中的酰胺基团发生的,该酰胺基团也存在于所测VES的头部基团中。这些结果证实了先前的观察结果,即VES的酰胺部分与Fe(III)的相互作用导致表面活性剂头基团之间的排斥力和虫状胶束的形成,这是粘度增加的主要原因。SMA和Fe(III)的连续变分法结果也证实了它们相互作用的1:1的化学计量,这与我们之前对VES和Fe(III)相互作用的化学计量的研究结果一致。本文是第一个通过使用与测试的VES具有相同头组的模型化合物来表征和理解基于VES的系统与Fe(III)相互作用的性质的机制尝试。本研究的结果可用于进一步研究添加剂对基于VES的系统性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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