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首页> 外文期刊>Journal of porous media >IMPROVEMENT OF WATER DISPLACEMENT EFFICIENCY IN SANDSTONE RESERVOIRS USING BUFFERED SODIUM SILICATE
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IMPROVEMENT OF WATER DISPLACEMENT EFFICIENCY IN SANDSTONE RESERVOIRS USING BUFFERED SODIUM SILICATE

机译:使用缓冲硅酸钠改善砂岩储层中的水分效率

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This work addresses the influence of buffered sodium silicate, (SiO2)(3.35)Na2O, on water-oil displacement efficiency in quartz media using static and flooding experiments. Interfacial tension (IFT) measurements reveal that sodium silicate-oil interfacial tension is a function of the solution pH. At a given pH, sodium silicate has considerably lower IFT compared to NaOH, which is a strong alkali. Modified quartz chunks with silicate solution show a lower water contact angle in oil compared to unmodified ones, which may be explained by quartz surface charge modification due to alkalinity of sodium silicate, as well as increased number of hydroxyl groups on the mineral surface due to silicate chemiadsorption. Spontaneous imbibition tests at micro and macroscale using glass micromodel and sandstone cores show that sodium silicate effectively enhances the water imbibition rate and final oil recovery factor. This is more evident in the case of asphaltenic oils, first because sodium silicate reduction of IFT is considerably higher in the presence of asphaltene (IFT < 1 dyne/cm). On the other hand, sodium silicate diminishes the rigid film of asphaltene, which resists waterflooding. Sodium silicate also affects the water-oil relative permeability curves by shifting their cross section to higher water saturations, indicating wettability alteration to more hydrophilic.
机译:这项工作解决了使用静电和洪水实验的石英介质中缓冲硅酸钠,(SiO2)(3.35)Na2O对石油排水效率的影响。界面张力(IFT)测量揭示硅酸钠 - 油界面张力是溶液pH的函数。在给定的pH下,与NaOH相比,硅酸钠相比具有很大的IFT,这是一个强碱的碱。具有硅酸盐溶液的改性石英块显示出与未修饰的较低的水接触角,其可以通过硅酸钠的碱度来解释石英表面电荷改性,以及由于硅酸盐而增加的矿物表面上的羟基数量增加化学造币。使用玻璃微仪和砂岩芯的微型和宏观的自发性吸收试验表明硅酸钠有效提高了水的吸收率和最终的储油因子。这在沥青质油的情况下更明显,首先是因为在沥青质(IFT <1达因/ cm)存在下,IFT的硅酸钠降低相当高。另一方面,硅酸钠减少了沥青质的刚性薄膜,其抵抗了水上的。硅酸钠也通过将它们的横截面转移到更高的水饱和性来影响水 - 油相对渗透率曲线,表明更亲水的润湿性改变。

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