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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Effects of surface modification Nano-SiO2 and its combination with surfactant on interfacial tension and emulsion stability
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Effects of surface modification Nano-SiO2 and its combination with surfactant on interfacial tension and emulsion stability

机译:表面改性纳米SiO2对界面张力和乳液稳定性的表面活性剂的影响

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Nano-silica (Nano-SiO2) particles have some limitations in their application as an oil displacement agent due to the easy aggregation characteristics. Therefore, it is necessary to modify the particle surface to enhance its dispersibility. A silane coupling agent (KH570) was used to organically modify Nano-silica, the relationship between the dosage of KH570 with the zeta potential, contact angle, particle size, sedimentation rate of modified Nano-SiO2 particles before and after modification was studied. And a displacement system (KH570-G-Nano-SiO2/PS) was fabricated by compounding modified Nano-SiO2 particles with the petroleum sulfonate (PS) molecules, the interfacial tension, emulsification property of the system with crude oil were systematically investigated, finally the synergistic effect of modified particles on the reduction of interfacial tension was explored. Results showed that when the dosage of KH570 was 5 %, the wettability of the particles changed from hydrophilic to hydrophobic, and the dispersion stability was significantly improved. The modified Nano-SiO2 (0.2 %)/PS (0.3 %) system can reduce the oil/water interfacial tension to 5.42x10(-3) mN/ m. At this point, zeta potential of the system was 54.8 mV, and the stability of the emulsion prepared by this system reached its best level. The modification of Nano-SiO2 particles and the mechanism of reducing the oil/water interfacial tension after compounded with petroleum sulfonate (PS) is analyzed. The modification degree of Nano-SiO2 particles has great influence on the interfacial tension of the system compounding with surfactant.
机译:由于易于聚集特性,纳米二氧化硅(纳米-SiO 2)颗粒在其应用中具有一些限制作为油位移剂。因此,有必要改变颗粒表面以增强其分散性。使用硅烷偶联剂(KH570)用于有机氧化纳米二氧化硅,研究了ZETA电位,接触角,粒度,改性纳米SiO2颗粒的沉降率之间的KH570的用量与修饰前后的沉降率。通过将改性的纳米SiO 2颗粒与石油磺酸盐(PS)分子配混,界面张力,系统地进行了系统地进行了界面张力,系统地进行了界面张力,系统地进行了界面张力,液化系统探讨了改性颗粒对界面张力减少的协同效应。结果表明,当KH570的剂量为5%时,从亲水到疏水性改变的颗粒的润湿性显着改善了分散稳定性。改性的纳米SiO 2(0.2%)/ ps(0.3%)系统可以将油/水界面张力降低至5.42×10(-3)Mn / m。此时,系统的Zeta电位为54.8mV,该系统制备的乳液的稳定性达到了其最佳水平。分析了纳米SiO2颗粒的改性和减少用石油磺酸盐(PS)混合后的油/水界面张力的机理。纳米-SiO2颗粒的改性度对系统配合用表面活性剂的界面张力产生了很大影响。

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