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Increased Thermal Conductivity in Metal-Organic Heat Carrier Nanofluids

机译:金属有机载热纳米流体中导热系数的增加

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摘要

Metal-organic heat carriers (MOHCs) are recently developed nanofluids containing metal-organic framework (MOF) nanoparticles dispersed in various base fluids including refrigerants (R245Fa) and methanol. Here, we report the synthesis and characterization of MOHCs containing nanoMIL-101(Cr) and graphene oxide (GO) in an effort to improve the thermo-physical properties of various base fluids. MOHC/GO nanocomposites showed enhanced surface area, porosity, and nitrogen adsorption compared with the intrinsic nanoMIL-101(Cr) and the properties depended on the amount of GO added. MIL-101(Cr)/GO in methanol exhibited a significant increase in the thermal conductivity (by approximately 50%) relative to that of the intrinsic nanoMIL-101(Cr) in methanol. The thermal conductivity of the base fluid (methanol) was increased by about 20%. The increase in the thermal conductivity of nanoMIL-101(Cr) MOHCs due to GO functionalization is explained using a classical Maxwell model.
机译:金属有机热载体(MOHC)是最近开发的纳米流体,包含分散在包括制冷剂(R245Fa)和甲醇在内的各种基础流体中的金属有机骨架(MOF)纳米颗粒。在这里,我们报告了含有nanoMIL-101(Cr)和氧化石墨烯(GO)的MOHC的合成和表征,旨在改善各种基础流体的热物理性质。与固有的nanoMIL-101(Cr)相比,MOHC / GO纳米复合材料显示出更大的表面积,孔隙率和氮吸附,其性能取决于GO的添加量。相对于甲醇中固有的nanoMIL-101(Cr),MIL-101(Cr)/ GO在甲醇中的导热率显着提高(约50%)。基础流体(甲醇)的热导率提高了约20%。使用经典的麦克斯韦模型解释了由于GO功能化而使nanoMIL-101(Cr)MOHC的热导率增加。

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