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Effective Thermal Conductivity of MOF-5 Powder under a Hydrogen Atmosphere

机译:氢气氛下MOF-5粉末的有效导热系数

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Effective thermal conductivity is an important thermophysical property in the design of metal-organic framework-5 (MOF-5)-based hydrogen storage tanks. A modified thermal conductivity model is built by coupling a theoretical model with the grand canonical Monte Carlo simulation (GCMC) to predict the effect of the H2 adsorption process on the effective thermal conductivity of a MOF-5 powder bed at pressures ranging from 0.01 MPa to 50 MPa and temperatures ranging from 273.15 K to 368.15 K. Results show that the mean pore diameter of the MOF-5 crystal decreases with an increase in pressure and increases with an increase in temperature. The thermal conductivity of the adsorbed H2 increases with an increased amount of H2 adsorption. The effective thermal conductivity of the MOF-5 crystal is significantly enhanced by the H2 adsorption at high pressure and low temperature. The effective thermal conductivity of the MOF-5 powder bed increases with an increase in pressure and remains nearly unchanged with an increase in temperature. The thermal conductivity of the MOF-5 powder bed increases linearly with the decreased porosity and increased thermal conductivity of the skeleton of the MOF-5 crystal. The variation in the effective thermal conductivities of the MOF-5 crystals and bed mainly results from the thermal conductivities of the gaseous and adsorption phases.
机译:有效的热导率是基于金属有机框架5(MOF-5)的储氢罐设计中的重要热物理性质。通过将理论模型与大经典蒙特卡洛模拟(GCMC)耦合,建立了改进的导热系数模型,以预测H 2 吸附过程对MOF-5粉末有效导热系数的影响在0.01 MPa到50 MPa的压力和273.15 K到368.15 K的温度范围内床层。结果表明,MOF-5晶体的平均孔径随压力的增加而减小,随温度的增加而增大。吸附的H 2 的热导率随H 2 的吸附量的增加而增加。高压和低温下的H 2 吸附可显着提高MOF-5晶体的有效导热系数。 MOF-5粉末床的有效导热系数随压力的增加而增加,而随温度的升高几乎保持不变。 MOF-5粉末床的导热系数随着孔隙率的降低和MOF-5晶体骨架导热系数的增加而线性增加。 MOF-5晶体和床层的有效导热系数的变化主要是由气相和吸附相的导热系数引起的。

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