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Thermal Analysis of LiK_x(NH_4)_(1-x)SO_4 Mixed Crystals

机译:LiK_x(NH_4)_(1-x)SO_4混合晶体的热分析

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摘要

Pure LiNH_4SO_4 (LAS) and LiKSO_4 (LKS) and mixed (LiK_x(NH_4)_(1-x)SO_4) single crystals were synthesized and grown by the slow evaporation technique of aqueous solutions at constant temperature (309 K). The atomic absorption analysis confirmed that the obtained mixed crystals were rich in potassium. In this work, we studied the effect of replacing NH_4~(+2) ions with K~(+2) ions (increasing x value) in LiK_x(NH_4)_(1-x)SO_4 mixed crystals on the structural phase transition and the decomposition process. Thermal analysis showed that LAS crystal has a structural phase transition at 457 K. By replacing NH_4~(+2) ions with K~(+2) ions (increasing x value), this phase shifts to higher temperatures until it reaches to 709 K for pure LKS crystal. Increasing the x value leads to increasing both the enthalpy and entropy of this phase transition. Thermal analysis showed, also, that the decomposition process for LAS crystal consists of two stages between 550 K and 773 K. The total mass loss associated with the two stages is 53.78. This confirms that the evolved molecules are SO_3, H_2O, and NH_3. By replacing some NH_4~(+2) ions by K~(+2) ions (increasing x value), the temperatures range of the two stages and the total mass loss showed a noticeable decrease of the evolved molecules with increasing K~(+2) ions. When NH_4~(+2) ions completely replaced with K~(+2) ions (x = 1), the decomposition process does not occur. This behavior is due to the fact that LKS pure crystal (x = 1) is stable in the measured temperature range.
机译:采用恒温(309 K)水溶液慢蒸发技术合成了纯LiNH_4SO_4(LAS)和LiKSO_4(LKS)和混合(Li[K_x(NH_4)_(1-x)]SO_4)单晶。原子吸收分析证实,所得的混合晶体富含钾。本研究研究了Li[K_x(NH_4)_(1-x)]SO_4混合晶体中用K~(+2)离子取代NH_4~(+2)离子(增加x值)对结构相变和分解过程的影响。热分析表明,LAS晶体在457 K处具有结构相变。通过用 K~(+2) 离子取代 NH_4~(+2) 离子(增加 x 值),该相位会转移到更高的温度,直到纯 LKS 晶体达到 709 K。增加 x 值会导致该相变的焓和熵增加。热分析还表明,LAS晶体的分解过程由550 K和773 K之间的两个阶段组成。与两个阶段相关的总质量损失为 53.78%。这证实了进化的分子是SO_3、H_2O和NH_3。通过用K~(+2)离子代替部分NH_4~(+2)离子(增加x值),随着K~(+2)离子的增加,两级的温度范围和总质量损失明显减小。当NH_4~(+2)离子完全被K~(+2)离子(x = 1)取代时,不会发生分解过程。这种行为是由于LKS纯晶体(x = 1)在测量的温度范围内是稳定的。

著录项

  • 来源
    《Chinese Journal of Physics》 |2013年第1期|151-165|共15页
  • 作者单位

    Faculty of Applied Medical Sciences, Jazan University, Jazan 114, Saudi Arabia;

    Physics Department, Faculty of Applied Science, Thamar University, Thamar 87246, Yemen;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 计量学;
  • 关键词

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