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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal characterization and kinetic analysis of nesquehonite, hydromagnesite, and brucite, using TG-DTG and DSC techniques
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Thermal characterization and kinetic analysis of nesquehonite, hydromagnesite, and brucite, using TG-DTG and DSC techniques

机译:使用TG-DTG和DSC技术对水镁石,水菱镁矿和水镁石进行热表征和动力学分析

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摘要

Nesquehonite, hydromagnesite, and brucite are important precursors for the preparation of high-purity magnesia (MgO) using magnesium resources from salt lake as raw materials. In this paper, TG-DTG and DSC were used to investigate the thermal decomposition behaviors of the three precursors. Decomposition kinetic parameters at each stage were evaluated based on the TG data using the iso-conversional method. Decomposition mechanisms were determined using the master-plots method. The decomposition temperature range, heat absorption, and kinetic parameters of the three phases were then compared. The most probable mechanism of each stage from the perspective of crystal structure was found to be consistent with the calculation results from the master-plots method. Results led to the conclusion that nesquehonite is the most appropriate precursor for the preparation of high-purity MgO. Further studies on precursor selection and calcining condition selection for the preparation of MgO using bischofite will benefit from this research.
机译:钠霞石,水菱镁矿和水镁石是使用盐湖中的镁资源为原料制备高纯度氧化镁(MgO)的重要前体。在本文中,TG-DTG和DSC用于研究三种前体的热分解行为。使用等转化法,基于TG数据评估每个阶段的分解动力学参数。分解机制是使用master-plots方法确定的。然后比较了三相的分解温度范围,吸热率和动力学参数。从晶体结构的角度来看,发现每个阶段最可能的机理与主图方法的计算结果一致。结果得出结论,菱镁矿是制备高纯度MgO最合适的前体。使用重钙钛矿制备MgO的前体选择和煅烧条件选择的进一步研究将受益于该研究。

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