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Development of ceramic membranes from low-cost clays for the separation of oil-water emulsion

机译:利用低成本粘土开发陶瓷膜以分离油水乳液

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This work addresses the fabrication of ceramic microfiltration membranes by uniaxial dry compaction method. Four membranes, namely SP1, SP2, SP3, and SP4 were prepared with various compositions of fly ash and titanium dioxide (TiO2) followed by sintering at 1,100 degrees C. The raw materials and the prepared membranes were characterized by particle size distribution, X-ray diffraction and field emission scanning electron microscope, porosity, pore size, and chemical and mechanical stabilities. As the TiO2 content increases in the precursor formulations, the porosity and mechanical stability of the membranes also increase while the average pore size reduces from 2.97 to 1.32m. The chemical stability of all the membranes demonstrates to be better in both acidic and basic medium. The performance of the membrane (SP4) is examined for the separation of oil-water emulsion and the membrane exhibits a maximum oil rejection of 99.2%.
机译:这项工作致力于通过单轴干压法制造陶瓷微滤膜。用不同组成的粉煤灰和二氧化钛(TiO2)制备四种膜,即SP1,SP2,SP3和SP4,然后在1100摄氏度下烧结。原料和制得的膜的特征在于粒径分布,X-射线衍射和场发射扫描电子显微镜,孔隙率,孔径以及化学和机械稳定性。随着前体配方中TiO2含量的增加,膜的孔隙率和机械稳定性也随之提高,而平均孔径从2.97m降低至1.32m。事实证明,所有膜的化学稳定性在酸性和碱性介质中都更好。检查膜(SP4)的性能以分离油水乳液,该膜最大吸油率为99.2%。

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