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Factors affecting the pH and electrical conductivity of MgO-ethylene glycol nanofluids

机译:影响MgO-乙二醇纳米流体的pH和电导率的因素

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The pH and electrical conductivity are important properties of nanofluids that have not been widely studied, especially with regard to temperature and ultrasonication energy. To study the factors that affect the pH and electrical conductivity of magnesium oxide ethylene glycol (MgO-EG) nanofluid, the effects of temperature, volume fraction, particle size and ultrasonication energy were investigated. Two different sizes of MgO were dispersed in EG base fluid up to the volume fraction of 3%, and the pH and electrical conductivity were monitored between the temperatures of 20 and 70 degrees C. Characterization by transmission electron microscopy and size analyses revealed the morphology and sizes of the nanoparticle samples. The pH values dropped consistently with the increase of temperature, while electrical conductivity value increased with the increase of temperature. The experimental result showed that the increase in the MgO volume fraction increased both the pH and electrical conductivity values of the MgO-EG nanofluid. There was no recognizable influence of ultrasonication energy density on the pH and electrical conductivity of the nanofluid; therefore, it was concluded that temperature, volume fraction and particle size are the predominant factors affecting both the pH and electrical conductivity of MgO-EG nanofluid within the present experimental conditions.
机译:pH和电导率是尚未广泛研究的纳米流体的重要属性,尤其是在温度和超声能方面。为了研究影响氧化镁乙二醇(MgO-EG)纳米流体的pH和电导率的因素,研究了温度,体积分数,粒径和超声能量的影响。将两种不同大小的MgO分散到EG基础流体中,直至体积分数达到3%,并在20到70摄氏度的温度之间监控pH和电导率。通过透射电子显微镜和尺寸分析进行表征,发现其形貌和纳米颗粒样品的尺寸。 pH值随温度升高而下降,而电导率值随温度升高而升高。实验结果表明,MgO体积分数的增加同时增加了MgO-EG纳米流体的pH值和电导率值。超声能量密度对纳米流体的pH和电导率没有可识别的影响。因此,可以得出结论,在当前的实验条件下,温度,体积分数和粒径是影响MgO-EG纳米流体的pH和电导率的主要因素。

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