The transformation mechanism of the macrogranular gibbsite to boehmite assisted by water and water vapor
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P571;P579

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    Abstract:

    The transformation of well-crystallized macrogranular gibbsite to boehmite has been studied by hydrothermal method, at 165℃, 175℃, 185℃ and 195℃ for 12 h, respectively. Samples have been characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM) before and after autoclaving. The transformation of gibbsite to boehmite is a dissolution-precipitation mechanism, rather than a solid-state process. The rate of transformation of gibbsite to boehmite in water vapour was faster than the rate in water. The size of obtained boehmite crystal (4~7 μm) reduced to thirtieth of the macrogranular gibbsite (120~200 μm), indicating that well-crystallized macrogranular gibbsite can be used to produce particulate boehmite. Because boehmite firstly crystallized on the outside surface of gibbsite particles during the period of gibbsite to boehmite, which keep the pseudomorphism of gibbsite particles with the double-layer structure, the hydroxide particles of aluminum were obtained by controlling the temperature and reaction time. Moreover, the hollow particles of boehmite aggregation were perhaps formed.

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陈博,陈小明,蒋学鑫,2021,水和水蒸气辅助粗晶三水铝石转化为勃姆石的机制研究[J].岩石矿物学杂志,40(6):1197~1202. CHEN Bo, CHEN Xiao-ming, JIANG Xue-xin,2021,The transformation mechanism of the macrogranular gibbsite to boehmite assisted by water and water vapor[J]. Acta Petrologica et Mineralogica,40(6):1197~1202.

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History
  • Received:February 11,2021
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  • Online: November 15,2021
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