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Stabilization of molten salt materials using metal chlorides for solar thermal storage

机译:使用金属氯化物来稳定太阳能电池热熔盐材料

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摘要

The effect of a variety of metal-chlorides additions on the melting behavior and thermal stability of commercially available salts was investigated. Ternary salts comprised of KNO3, NaNO2, and NaNO3 were produced with additions of a variety of chlorides (KCl, LiCl, CaCl2, ZnCl2, NaCl and MgCl2). Thermogravimetric analysis and weight loss experiments showed that the quaternary salt containing a 5 wt% addition of LiCl and KCl led to an increase in short term thermal stability compared to the ternary control salts. These additions allowed the salts to remain stable up to a temperature of 630 °C. Long term weight loss experiments showed an upper stability increase of 50 °C. A 5 wt% LiCl addition resulted in a weight loss of only 25% after 30 hours in comparison to a 61% loss for control ternary salts. Calorimetry showed that LiCl additions allow partial melting at 80 °C, in comparison to the 142 °C of ternary salts. This drop in melting point, combined with increased stability, provided a molten working range increase of almost 100 °C in total, in comparison to the control ternary salts. XRD analysis showed the oxidation effect of decomposing salts and the additional phase created with LiCl additions to allow melting point changes to occur.
机译:研究了各种金属氯化物的添加对市售盐的熔融行为和热稳定性的影响。加入各种氯化物(KCl,LiCl,CaCl2,ZnCl2,NaCl和MgCl2)可制得由KNO3,NaNO2和NaNO3组成的三元盐。热重分析和失重实验表明,与三元对照盐相比,含有5%(重量)LiCl和KCl的四元盐导致短期热稳定性提高。这些添加使盐在高达630°C的温度下保持稳定。长期减肥实验表明,稳定性提高了50°C。加入5%(重量)的LiCl可使30分钟后的重量损失仅为25%,而对照三元盐的重量损失仅为61%。量热法表明,与142 C的三元盐相比,添加LiCl可以在80 C的温度下部分熔化。与对照三元盐相比,熔点的这种下降与稳定性的提高相结合,使熔融工作范围总共增加了近100C。 XRD分析显示了分解盐的氧化作用以及通过添加LiCl而产生的附加相以允许发生熔点变化。

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