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Fabrication, characterization, and measurement of some physicochemical properties of ZnO nanofluids

机译:ZnO纳米流体的某些理化性质的制备,表征和测量

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ZnO nanofluids have been prepared by dispersing ZnO nanoparticles in the ethylene glycol (EG) and glyc-erol (G) as the base fluids. Ammonium citrate, as a dispersant, has been used to improve the dispersion of nanoparticles and suppressing formation of particle clusters to obtain stable suspensions.rnThe thermal conductivity of ZnO nanofluids has been measured as a function of the volume fraction and temperature. The thermal conductivity of ZnO/EG and ZnO/G nanofluids increases nonlinearly up to 10.5% and 7.2%, respectively, as the volume fraction of nanoparticles increases up to 3 vol.%. The thermal conductivity of a ZnO nanofluid increases nonlinearly with increasing the temperature at a constant volume fraction of nanoparticles.rnFor the first time, we have measured the viscosity and surface tension of ZnO nanofluids. The viscosity ratio of nanofluids increases with increasing concentration and decreasing the temperature. The surface tension ratio of suspensions containing solid particles increases with increasing the volume fraction of the solid nanoparticles.rnThe experimental data for thermal conductivity and viscosity have been compared with some existing theoretical models.
机译:ZnO纳米流体是通过将ZnO纳米颗粒分散在乙二醇(EG)和甘油-G(G)中作为基础流体而制备的。柠檬酸铵作为分散剂已被用于改善纳米颗粒的分散和抑制颗粒团簇的形成以获得稳定的悬浮液。ZnO纳米流体的热导率是随体积分数和温度的变化而测量的。 ZnO / EG和ZnO / G纳米流体的热导率分别随着纳米颗粒的体积分数增加到3%(体积)而非线性地增加至10.5%和7.2%。 ZnO纳米流体的导热系数随着温度的升高而非线性地增加,在恒定的纳米颗粒体积分数下。rn我们首次测量了ZnO纳米流体的粘度和表面张力。纳米流体的粘度比随着浓度的增加和温度的降低而增加。含固体颗粒的悬浮液的表面张力比随着固体纳米颗粒的体积分数的增加而增加。导热系数和粘度的实验数据已经与一些现有的理论模型进行了比较。

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