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研究酸非离子纳米乳液与碳酸盐多孔介质的固液相互作用。

Investigating the Fluid-Solid Interaction of Acid Nonionic Nanoemulsion with Carbonate Porous Media.

机构信息

Petroleum Engineering Faculty, Campus Salinópolis, Federal University of Pará-UFPA, Salinópolis 68721-000, Brazil.

Petroleum Science and Engineering Postgraduate Program, Federal University of Rio Grande do Norte-UFRN, Natal 59075-000, Brazil.

出版信息

Molecules. 2020 Mar 24;25(6):1475. doi: 10.3390/molecules25061475.

Abstract

The subject of rock-fluid interaction is important in cases where flow through porous media is occurring. One special case is when the fluid reacts with the porous matrix. In this case, the mass transfer and reaction rate control the dissolution pattern. This article aimed to study the interaction between an acid nanoemulsion system and a carbonate porous media. Nanoemulsions were developed to retard the rock's dissolution and to promote the formation of conductivity channels. Nanoemulsions were prepared using ALK100 (alkyl alcohol ethoxylate) and RNX110 (alkylphenol ethoxylate) (nonionic surfactants), sec-butanol (co-surfactant), xylene isomers (oil phase), and a solution of HCl (aqueous phase). The obtained systems were characterized in terms of surface tension, droplet diameter, and reactivity. X-ray fluorescence/diffraction (XRF/XRD) and X-ray microtomography (microCT) were performed on carbonate porous media samples treated with the acid systems in order to observe the effects of the fluid-rock interaction. The results showed that the acid nanoemulsion, presenting a low oil content formulation, showed the low surface tension and droplet size characteristic of nanoemulsions. It was experimentally verified that the reactivity in the nanoemulsion media was mass-transfer-retarded, and that the wormhole pattern was verified under the studied conditions.

摘要

岩石-流体相互作用是在多孔介质中发生流动的情况下很重要的主题。一种特殊情况是流体与多孔基质发生反应。在这种情况下,传质和反应速率控制着溶解模式。本文旨在研究酸纳米乳液系统与碳酸盐多孔介质之间的相互作用。纳米乳液被开发用于延缓岩石的溶解并促进导电性通道的形成。纳米乳液是使用 ALK100(烷基醇乙氧基化物)和 RNX110(烷基酚乙氧基化物)(非离子表面活性剂)、仲丁醇(助表面活性剂)、二甲苯异构体(油相)和 HCl 溶液(水相)制备的。所得系统的表面张力、液滴直径和反应性进行了表征。对用酸系统处理过的碳酸盐多孔介质样品进行了 X 射线荧光/衍射(XRF/XRD)和 X 射线微断层扫描(microCT),以观察流体-岩石相互作用的影响。结果表明,酸纳米乳液呈现出低油含量配方,表现出纳米乳液的低表面张力和小液滴尺寸特征。实验验证了纳米乳液介质中的反应性是传质延迟的,并且在研究条件下验证了虫孔模式。

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