首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Reduced graphene oxide and zirconium carbide co-modified melamine sponge/paraffin wax composites as new form-stable phase change materials for photothermal energy conversion and storage
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Reduced graphene oxide and zirconium carbide co-modified melamine sponge/paraffin wax composites as new form-stable phase change materials for photothermal energy conversion and storage

机译:作为新型稳定相变材料,还原石墨烯氧化物和锆碳化物共改性三聚氰胺海绵/石蜡复合材料,用于光热能量转换和储存

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摘要

Photothermal energy conversion and storage are crucial in solar collection systems. However, it is difficult for traditional media to balance high photothermal conversion, thermal conductivity and thermal energy storage. Considering the advantages of nanofluids (volumetric absorption systems) and PCMs (high latent storage density), we develop novel form-stable PCMs for solar collection systems and overcome the disadvantages of current systems, which take melamine sponge as supporting materials, paraffin wax as solid-liquid PCMs, reduced graphene oxide and zirconium carbide as solar absorption and thermal conduction additives. The results demonstrate that the rich network skeleton structure of reduced graphene oxide modified melamine sponge provides huge surface tension and capillary force to support paraffin wax for achieving the shape-stability before and after phase transition, and the latent enthalpy reaches 137 J/g. The composites PCMs with different content zirconium carbide show good photoabsorption, high thermal storage capacity and excellent heat transfer property. The photothermal conversion efficiency is up to 81% when doped with 0.01 wt% zirconium carbide. The maximum thermal conductivity of composites PCMs is 121% higher than that of paraffin wax. The reduced graphene oxide and zirconium carbide co-modified melamine sponge/paraffin wax composites show its great potential in solar energy utilization and storage.
机译:光热能量转换和储存在太阳能收集系统中至关重要。然而,传统媒体难以平衡高光热转换,导热性和热能储存。考虑到纳米流体(体积吸收系统)和PCMS(高潜储存密度)的优点,我们为太阳能收集系统开发新型形式稳定的PCM,克服了当前系统的缺点,将三聚氰胺海绵作为支撑材料,石蜡蜡作为固体 - 水分脂,氧化石墨烯和碳化锆作为太阳能吸收和热传导添加剂。结果表明,石墨烯氧化物改性三聚氰胺海绵的富网骨架结构提供了巨大的表面张力和毛细管力,以支撑石蜡蜡以实现相转变前后的形状稳定性,潜伏焓达到137J / g。具有不同含量锆碳化物的复合材料PCM显示出良好的光学吸引,高热储存能力和优异的传热性。当掺杂有0.01重量%的锆碳化锆时,光热转化效率高达81%。复合材料PCM的最大导热率高于石蜡蜡的121%。氧化石墨烯和碳化锆共改性三聚氰胺海绵/石蜡复合材料的氧化锆氧化物和锆氧化物复合材料的含量呈其巨大潜力。

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