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Shape-stabilized and antibacterial composite phase change materials based on wood-based cellulose micro-framework, erythritol-urea or erythritol-thiourea for thermal energy storage

机译:基于木基纤维素微框架,赤藓酚 - 尿素或赤藓糖醇的形状稳定和抗菌复合相变材料,用于热能储存

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摘要

The excellent shape-stabilized composite phase change material (PCM) with high phase change enthalpy plays a very important role in thermal energy storage and solar energy utilization. In this work, different proportions of erythritol-urea (E-U) and erythritol-thiourea (E-T) incorporated into the cellulose skeleton retention of paulownia chip (DPW) have been conducted to obtain biomass-based PCMs (EU-DPW, ET-DPW). The SEM analysis results show that DPW has a rich honeycomb pore structure, which can achieve high loading of erythritol-urea and erythritol-thiourea. The E7U3-DPW and E7T3-DPW composite materials obtained at the optimal ratio of E-U and E-T show high phase change enthalpies of 232.2 J/g and 273.3 J/g. The higher phase change enthalpy of E7T3-DPW is due to the higher phase change energy storage performance of E7T3 compound itself, the better compatibility between E7T3 and DPW, and the higher loading capacity of E7T3 in DPW. In addition, high light-to-heat conversion efficiency is considered to be a key factor for converting light energy into heat energy to realize energy storage applications. E7U3-DPW and E7T3-DPW can provide excellent lightthermal conversion efficiencies of 72.6% and 75.8%, respectively. E7U3-DPW and E7T3-DPW show good antibacterial properties against E. coli and S. aureus. After 100 heating-cooling cycles, the DSC curves and phase transition enthalpies of E7U3-DPW and E7T3-DPW remained almost unchanged, maintaining good thermophysical properties, and the structure of characteristic functional groups remained almost unchanged, maintaining good chemical stability, which shows great potential in medium-temperature solar energy and thermal energy harvesting in the field of antibacterial and thermal insulation.
机译:具有高相变焓的优异形状稳定的复合相变材料(PCM)在热能储存和太阳能利用中起着非常重要的作用。在这项工作中,已经进行了不同比例的红细胞脲(EU)和赤藓糖醇 - 硫脲(ET)掺入植物骨架骨架保留的肺部骨骨(DPW)中,以获得基于生物质的PCM(Eu-DPW,ET-DPW) 。 SEM分析结果表明,DPW具有丰富的蜂窝状孔结构,可实现高负荷的赤藓糖醇和赤藓糖醇。 E7U3-DPW和E7T3-DPW复合材料以E-U和E-T的最佳比率获得,显示高相变焓为232.2J / g和273.3J / g。 E7T3-DPW的较高相变焓是由于E7T3化合物本身的相变能储存性能较高,E7T3和DPW之间的更好兼容性,以及DPW中的E7T3的较高负载能力。此外,高光热转换效率被认为是将光能转换成热能以实现能量存储应用的关键因素。 E7U3-DPW和E7T3-DPW可分别提供72.6%和75.8%的优异光学热转化效率。 E7U3-DPW和E7T3-DPW对大肠杆菌和金黄色葡萄球菌显示出良好的抗菌性能。在100次加热冷却循环后,E7U3-DPW和E7T3-DPW的DSC曲线和相转变焓几乎保持不变,保持良好的热物理性质,特征官能团的结构几乎保持不变,保持良好的化学稳定性,表现出很好的中温太阳能和抗菌和保温领域的热能收获潜力。

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