TBAB/TBAHSO4水合物复合相变材料的合成及其控温性能研究

Synthesis of TBAB/TBAHSO4 hydrate composite phase change material and its temperature control performance study

  • 摘要: 相较于传统的冷藏运输方式,相变材料(PCM)冷能储存技术能有效减少碳排放,因此受到了广泛关注。本文以四丁基溴化铵(TBAB)、四丁基硫酸氢铵(TBAHSO4)为相变材料,通过添加成核剂三氧化二铝(Al2O3)和增稠剂羧甲基纤维素钠(CMC)减小过冷,抑制相分离,成功制备了用于冷链运输的TBAB/TBAHSO4水合物复合相变材料。所制备的复合相变材料TTAC-1.5熔化温度为6.10 ℃,熔化潜热为169.23 J·g−1,无明显过冷。50次循环测试实验表明,该复合相变材料具有优异的循环稳定性。由于其适宜的相变温度、较高的相变潜热以及较好的热稳定性能,该复合相变材料有望在冷链运输中得到应用。

     

    Abstract: Phase change material (PCM) cold energy storage technology has received a lot of attention for its ability to effectively reduce carbon emissions compared to traditional refrigerated transport methods. Hydrate composite phase change materials for cold chain transport were successfully prepared by using tetrabutylammonium bromide (TBAB) and tetrabutylammonium hydrogen sulphate (TBAHSO4) as phase change materials and the composite phase change materials for cold chain transport were successfully prepared by adding nucleant aluminium oxide (Al2O3) and thickener sodium carboxymethyl cellulose (CMC) to reduce supercooling and inhibit phase separation. The melting temperature of the composite phase change material TTAC-1.5 is 6.10 ℃, with a latent heat of fusion of 169.23 J·g−1, and it shows almost no supercooling. 50 cycles of testing show that the phase change material has excellent cycle stability. Due to its suitable phase change temperature, high phase change latent heat and thermal reliability, the composite phase change material could be applied in cold chain transportation.

     

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