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Enhanced thermal conductivity of waste sawdust-based composite phase change materials with expanded graphite for thermal energy storage

机译:带有膨胀石墨的废木屑基复合相变材料的导热系数提高,可用于储热

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Background: With the current rapid economic growth, demands for energy are progressively increasing. Energy shortages have attracted significant attention due to the shrinking availability of non-renewable resources. Therefore, thermal energy storage is one of the solutions that lead to saving of fossil fuels and make systems more cost-effective by the storage of wasted thermal energy. In particular, the application of phase change materials (PCMs) is considered as an effective and efficient approach to thermal energy storage because of the high latent heat storage capacity at small temperature intervals. Nevertheless, leakage problems and low thermal conductivity limit the practical applications of PCMs. Therefore, form-stable phase change materials with high thermal conductivity are urgently needed. Results: A novel form-stable composite phase change material was prepared by incorporating PEG into waste sawdust with 5% EG. In the composites, PEG served as a phase change material, while waste sawdust acted as a carrier matrix. EG was added to help increase the thermal conductivity of the composites. The melting temperature of CPCMs-4 with 5% EG was found to be 58.6℃ with a phase change enthalpy of 145.3 kJ/kg, while the solidifying temperature was 48.5℃ with a phase change enthalpy of 131.4 kJ/kg. The thermal conductivity of CPCMs-4 with 5% EG increased by 23.8% compared with that of CPCMs-4. Moreover, no obvious changes in melting, solidifying temperature, or latent heat after 200 heating-cooling cycles were detected. The supercooling extent of CPCMs-4 with 5% EG decreased by 19.2% compared with PEG. The volume change properties and wettability properties of CPCMs-4 with 5% EG are suitable for thermal energy in terms of practical application. Conclusions: The prepared composites have excellent thermal and form-stable properties and they can be recognized as potential candidates for thermal energy storage as form-stable composite phase change materials. Using simple impregnation techniques with waste sawdust as a supporting material, this study demonstrates an innovative technology for practically and markedly enhancing the adsorption capacity of phase change materials.
机译:背景:随着当前经济的快速增长,对能源的需求也逐渐增加。由于不可再生资源的可用性不断下降,能源短缺引起了人们的极大关注。因此,热能存储是一种解决方案之一,可通过节省浪费的热能来节省化石燃料,并使系统更具成本效益。特别地,相变材料(PCM)的应用被认为是一种有效的热能存储方法,因为在较小的温度间隔内具有较高的潜热存储容量。然而,泄漏问题和低导热率限制了PCM的实际应用。因此,迫切需要具有高导热率的形状稳定的相变材料。结果:通过将PEG掺入含5%EG的废木屑中,制备了一种新型的形状稳定的复合相变材料。在复合材料中,PEG充当相变材料,而废木屑充当载体基质。添加了EG以帮助提高复合材料的导热性。 5%EG的CPCMs-4的熔融温度为58.6℃,相变焓为145.3 kJ / kg,而凝固温度为48.5℃,相变焓为131.4 kJ / kg。与CPCMs-4相比,含5%EG的CPCMs-4的导热系数增加了23.8%。此外,在200次加热-冷却循环后,未发现熔融,凝固温度或潜热有明显变化。与PEG相比,含5%EG的CPCMs-4的过冷程度降低了19.2%。就实际应用而言,含5%EG的CPCMs-4的体积变化特性和润湿性适合于热能。结论:制备的复合材料具有优异的热稳定性和形状稳定性,可以作为形状稳定的复合相变材料被认为是热能储存的潜在候选材料。本研究使用简单的浸渍技术,以废木屑为载体,证明了一种创新的技术,可以切实有效地提高相变材料的吸附能力。

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