首页> 美国卫生研究院文献>Materials >The Energy Storage Properties of Refrigerants (R170 R134a R143a and R152a) in Mof-5 Nanoparticles: A Molecular Simulation Approach
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The Energy Storage Properties of Refrigerants (R170 R134a R143a and R152a) in Mof-5 Nanoparticles: A Molecular Simulation Approach

机译:Mof-5纳米颗粒中制冷剂(R170R134aR143a和R152a)的储能特性:一种分子模拟方法

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摘要

The thermophysical properties of refrigerant can be modified via adding solid materials to it. In this paper, molecular simulations and thermodynamic calculations were employed to investigate the adsorption and energy storage of ethane (R170), 1,1,1,2-tetrafluoroethane (R134a), 1,1,1-trifluoroethane (R143a), and 1,1-difluoroethane (R152a) in metal organic framework (MOF)-5 nanoparticles. The results show that the fluorine atom in the refrigerants will strengthen the adsorption of refrigerants in MOF-5. However, the fluorine-free refrigerant, R170, owns larger enthalpy difference of desorption than the other refrigerants with fluorine under high pressure. The thermal energy storage capacity of the refrigerant/MOF-5 mixture is larger than that of the pure refrigerant at low pressure. Also, the negative enhancement of the energy storage property of the mixture is found in some cases when the refrigerant experiences phase transition.
机译:可以通过向其添加固体材料来改变制冷剂的热物理性质。本文通过分子模拟和热力学计算研究了乙烷(R170),1,1,1,2-四氟乙烷(R134a),1,1,1-三氟乙烷(R143a)和1的吸附和能量存储金属有机骨架(MOF)-5纳米粒子中的1,1-二氟乙烷(R152a)。结果表明,制冷剂中的氟原子将增强MOF-5中制冷剂的吸附。但是,在高压下,无氟制冷剂R170的解吸焓差大于其他含氟制冷剂。在低压下,制冷剂/ MOF-5混合物的热能存储容量大于纯制冷剂的热能存储容量。另外,在某些情况下,当制冷剂经历相变时,发现混合物的储能性能的负面增强。

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