• Title of article

    Preparation of Y-Al2O3 and prioritization of affecting factors on the crystallite size using Taguchi method

  • Author/Authors

    Shayesteh، M نويسنده Deparetment of Chemical Engineering, University of Sistan and Bluchestan, Zahedan, Iran , , Shafiee Afarani، M نويسنده Department of Materials Engineering, University of Sistan and Bluchestan, Zahedan, Iran , , Samimi، A نويسنده Deparetment of Chemical Engineering, University of Sistan and Bluchestan, Zahedan, Iran , , khorram، M نويسنده Deparetment of Chemical Engineering, University of Sistan and Bluchestan, Zahedan, Iran ,

  • Issue Information
    دوفصلنامه با شماره پیاپی 0 سال 2013
  • Pages
    8
  • From page
    45
  • To page
    52
  • Abstract
    In this work, boehmite sol was prepared by a previously applied and validated method; hydrolysis of aluminum chloride hexa-hydrate. In order to obtain precise results, the effect of pH after adding precipitating agent, aging time, peptizing temperature and ultrasonic vibration time on the crystallite size of final precipitate were investigated in a narrow range. The preparation conditions applied in the production step of nanocrystalline boehmite affected on the desired alumina phase. Experiments were set based on the statistical design of experiments (Taguchi method). Furthermore the influence of calcination on crystallization and phase transformation of the precipitate was investigated using X-ray diffractometry (XRD) and simultaneous thermal analysis (STA) techniques. To evaluate the results, the obtained data were statistically analyzed. Considering the statistical analysis of experiments, the pH after adding precipitating agent is the major parameter affecting crystallite size. In contrast, aging time has the smallest effect on the crystallite size. In addition, Transmission electron microscopy (TEM) of the samples revealed that the particle size of the powders was well distributed in the nano-size range. Taguchi prediction on the crystallite size was 2.096±0.139 nm (with confidence interval of 95%) which confirmed by a verification experiment (2.064 nm).
  • Journal title
    Transport Phenomena in Nano and Micro Scales
  • Serial Year
    2013
  • Journal title
    Transport Phenomena in Nano and Micro Scales
  • Record number

    1036217