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Design of phase change materials based on salt hydrates for thermal energy storage in a range of 4-40 degrees C

机译:基于盐水合物的相变材料设计在4-40摄氏度范围内的热能储存

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摘要

Melting temperatures and eutectic mixture compositions of LiNO3-LiClO4-H2O, NaNO3-Ca(NO3)(2)-H2O and NH4NO3-Mn(NO3)(2)-Mg(NO3)(2)-H2O systems were predicted using the modified Brunauer, Emmett and Teller (BET) thermodynamic model. For the ternary system with calcium nitrate and for the quaternary system, it was necessary to estimate the omega(ij) mixing parameters with solid-liquid equilibrium data, which quantify the interaction between the compounds NaNO3-Ca(NO3)(2) and NH4NO3-Mn(NO3)(2), respectively. The results calculated with the modified BET thermodynamic model show melting temperatures of 28.3 degrees C and 27.0 degrees C for the system with lithium perchlorate, 33.2 degrees C for the system with calcium nitrate and 4.0 degrees C for the quaternary system. Calculated values were tested experimentally with the T-history method for the LiNO3-LiClO4-H2O and NH4NO3-Mn(NO3)(2)-Mg(NO3)(2)-H2O systems and with the DSC method for the NaNO3-Ca(NO3)(2)-H2O system. The experimental results of eutectic mixtures predicted in this work present a good thermal behavior and can be useful as phase change materials (PCM) for their application in the design and simulation of refrigeration and air conditioning systems in residential and commercial buildings. Graphic abstract
机译:使用该改性预测LiNO3-LICLO4-H2O,纳米3-CA(2)-H2O和NH 4 NO 3-MN(NO 3)(2)-H2O系统的熔融温度和共晶混合组合物。 Brunauer,Emmett和Teller(Bet)热力学模型。对于硝酸钙和四元系统的三元体系,有必要估计具有固液平衡数据的ω(IJ)混合参数,这量化了化合物纳米3-CA(NO 3)(2)和NH4NO3之间的相互作用分别为-mn(no3)(2)。用改进的BET热力学模型计算的结果显示,对于高氯酸锂的系统,33.2℃,硝酸钙和4.0摄氏度的系统,33.2℃的系统显示28.3摄氏度和27.0摄氏度的熔化温度。用LiNO3-LICLO4-H2O和NH 4 -NO 3-MN(NO 3)(2)-MG(NO 3)(2)-H2O系统的T血迹方法进行实验测试计算值,并用DSC方法为NANO3-CA( NO3)(2)-H2O系统。在这项工作中预测的共晶混合物的实验结果具有良好的热行为,可用作相变材料(PCM),用于应用在住宅和商业建筑中制冷和空调系统的设计和仿真中的应用。图形摘要

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