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Potential of Chambersite Tailing as Raw Material for the Preparation of Glass Ceramic: Investigation on Crystallization Behavior and Crystal Structure

机译:尾矿尾矿作为制备玻璃陶瓷原料的潜力:结晶行为和晶体结构研究

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摘要

The feasibility of preparing glass ceramic from chambersite gravity tailings was explored. The crystallization parameters and state of glass ceramic were analyzed by Johnson–Mehl–Avrami and Augis–Bennett equations. The effects of sintering temperature and crystallization duration on bending strength and water absorption of glass ceramic were investigated, while the phase composition, crystal structure, lattice constants and surface topography were characterized. The results indicate the crystallization behavior of chambersite tailings glass ceramic is mainly body crystallization with clinopyroxene as a primary crystalline phase, the activation energy for crystallization ( E ) is 315.27 kJ/mol, the kinetics parameter for crystallization ( k ) is $$7.98times 10^{14}$$ 7.98 × 10 14 , and the main phase lattice constants of clinopyroxene were $$a=0.97392$$ a = 0.97392  nm, $$b=0.88521$$ b = 0.88521  nm, $$c=0.52748$$ c = 0.52748  nm, $$beta =107.062{^{circ }}$$ β = 107.062 ∘ . At sintering temperature of 890  $$^{circ }$$ ∘ C, pyroxene crystal with tetragonal column structure is formed, the diameter of the crystal is about 0.05–0.5  $$upmu $$ μ m, while the crystallinity is more than 75%; the bending strength of the glass ceramic increases with the decrease in material particle size; at the $$hbox {D}_{90}$$ D 90 of 5.71  $$upmu $$ μ m and crystallization duration of 150 min, the bending strength of glass ceramic reaches the maximum of 128.3 MPa and the water absorption is between 0.06 and 0.02%.
机译:探讨了利用室内重力尾矿制备玻璃陶瓷的可行性。用Johnson-Mehl-Avrami和Augis-Bennett方程分析了玻璃陶瓷的结晶参数和状态。研究了烧结温度和结晶时间对玻璃陶瓷抗弯强度和吸水率的影响,并表征了相组成,晶体结构,晶格常数和表面形貌。结果表明,尾矿尾矿玻璃陶瓷的结晶行为主要是以次生辉石为主要结晶相的体结晶,结晶活化能(E)为315.27kJ / mol,结晶动力学参数(k)为$ 7.98×10 ^ {14} $$ 7.98×10 14,斜柏基的主相晶格常数为$$ a = 0.97392 $ a = 0.97392 nm,$ b = 0.88521 $ b = 0.88521 nm,$ c = 0.52748 $ $ c = 0.52748 nm,$$ beta = 107.062 {^ {circ}} $$β= 107.062。在890℃的烧结温度下,形成具有四方柱状结构的辉石晶体,晶体的直径约为0.05-0.5μm,而结晶度大于75。 %;玻璃陶瓷的抗弯强度随着材料粒径的减小而增加。在$ hbox {D} _ {90} $$ D 90 of 5.71 $$ upmu $$μm和结晶持续时间为150min时,玻璃陶瓷的弯曲强度达到最大值128.3MPa,吸水率在0.06和0.02%。

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  • 作者单位

    Key Laboratory of Special Functional Materials for Ecological Environment and Information (Hebei University of Technology), Ministry of Education,Institute of Power Source and Ecomaterials Science, Hebei University of Technology;

    CAS Key Laboratory of Green Process and Engineering, Institute of Process Engineering, Chinese Academy of Sciences;

    Key Laboratory of Special Functional Materials for Ecological Environment and Information (Hebei University of Technology), Ministry of Education,Institute of Power Source and Ecomaterials Science, Hebei University of Technology;

    Chemical Engineering Program, The Petroleum Institute;

    Key Laboratory of Special Functional Materials for Ecological Environment and Information (Hebei University of Technology), Ministry of Education,Institute of Power Source and Ecomaterials Science, Hebei University of Technology;

    Key Laboratory of Special Functional Materials for Ecological Environment and Information (Hebei University of Technology), Ministry of Education,Institute of Power Source and Ecomaterials Science, Hebei University of Technology;

    Key Laboratory of Special Functional Materials for Ecological Environment and Information (Hebei University of Technology), Ministry of Education,Institute of Power Source and Ecomaterials Science, Hebei University of Technology;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Chambersite; Gravity tailings; Glass ceramic; Crystallization behavior; Crystal structure;

    机译:工矿;重力尾矿;玻璃陶瓷;结晶行为;晶体结构;

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