Synthesis and Dispersion Stability Test of Seawater-based Nano-Smart Fluids

Jihwan Kim, Jong-Seop Lee
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引用次数: 1

Abstract

In this study, nano-smart fluids available in high-temperature and high-salinity reservoirs were synthesized with surface-modified nanoparticles and potential determining ion(PDI)-controlled seawater to maximize oil production in carbonate reservoirs. Phase behavior observation and particle size analysis were also carried out to evaluate the dispersion stability of synthesized nano-smart fluids. Seawater was prepared based on the seawater composition of the Persian Gulf region and PDIs(K+, Mg2+, and SO4 2–) were added to the seawater. In addition, 0.05-3 wt% of surface-modified SiO2 nanoparticles were dispersed in the smart water prepared as aforementioned. As a result of the dispersion stability test, it was confirmed that stable fluids without agglomeration and precipitation could be synthesized at the condition with room temperature of 25°C and high temperature of 80°C as well as in the salinity range of seawater when the nanoparticle concentration was 0.5 wt% or more.
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海水基纳米智能流体的合成及分散稳定性试验
在本研究中,采用表面改性纳米颗粒和电位决定离子(PDI)控制的海水合成了适用于高温高矿化度油藏的纳米智能流体,以最大限度地提高碳酸盐岩油藏的产油量。通过相行为观察和粒径分析来评价合成的纳米智能流体的分散稳定性。根据波斯湾地区的海水组成配制海水,在海水中加入PDIs(K+, Mg2+, SO4 2 -)。此外,在上述制备的智能水中分散了0.05-3 wt%的表面改性SiO2纳米颗粒。分散稳定性试验证实,在室温25℃和高温80℃条件下,在纳米颗粒浓度为0.5 wt%及以上的海水盐度范围内,均可合成无团聚、无沉淀的稳定流体。
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