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Calcium hydroxide doped by KNO3 as a promising candidate for thermochemical storage of solar heat

机译:KNO3掺杂的氢氧化钙作为太阳能热化学储存的有希望的候选者

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摘要

New materials for thermochemical storage of concentrated solar heat are highly desirable for making this emerging technology competitive with the traditional sensible and latent heat storage. Keeping this in mind, we have prepared calcium hydroxide modified with potassium nitrate and studied its de-/rehydration dynamics by differential scanning calorimetry and thermogravimetry techniques. The following notable observations are described for the modified Ca(OH)(2): (1) an acceleration of the dehydration and reduction of its temperature as compared with the pure hydroxide; (2) the temperature reduction depends on the KNO3 content Y and reaches 35 degrees C at Y = 5 wt%; (3) the addition of KNO3 only slightly reduces the dehydration heat which remains promising for heat storage applications. Fast rehydration of the doped CaO is observed at T = 290-360 degrees C and P(H2O) = 23-128 mbar, and its rate strongly depends on both temperature and pressure. De- and rehydrated products were studied by the BET analysis and IR-spectroscopy to elucidate possible ways for the salt to influence the Ca(OH)(2) dehydration. The mechanism involving a chemical interaction between the salt and the hydroxide is discussed. The new material exhibits a large heat storage density, fast de-/rehydration and adjustable decomposition temperature, and may be considered as a promising candidate for thermochemical storage of concentrated solar energy.
机译:用于使浓缩太阳能热量热的热化学储存的新材料非常适合使这种新兴技术与传统的合理和潜热储存竞争。考虑到这一点,我们制备了用硝酸钾改性的氢氧化钙,并通过差示扫描量热法和热重测量技术研究了其去水动力学。对于改性的Ca(OH)(2)(2)(2)描述以下显着的观察结果:与纯氢氧化物相比,将脱水加速和降低其温度; (2)温度降低取决于KNO3含量Y,在Y = 5wt%达35℃; (3)添加KNO3仅略微减少脱水热量,仍然有希望用于储热应用。在T = 290-360℃和P(H2O)= 23-128毫巴时观察到掺杂CaO的快速水合物,其速率强烈取决于温度和压力。通过BET分析和IR光谱研究了脱水和再水化产物,以阐明盐以影响Ca(OH)(2)脱水的可能方法。讨论了盐和氢氧化物之间的化学相互作用的机制。新材料具有大的储热密度,快速脱水和可调节的分解温度,并且可以被认为是集中太阳能的热化学储存的有希望的候选者。

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  • 来源
    《RSC Advances》 |2017年第68期|共11页
  • 作者单位

    Boreskov Inst Catalysis Ac Lavrentieva Ave 5 Novosibirsk 630090 Russia;

    Boreskov Inst Catalysis Ac Lavrentieva Ave 5 Novosibirsk 630090 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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