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From biomass to high performance solar-thermal and electric-thermal energy conversion and storage materials

机译:从生物质到高性能的太阳热能和电热能转换和存储材料

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摘要

We demonstrate that lightweight, highly electrically conductive, and three-dimensional (3D) carbon aerogels (CAs) can be produced via a hydrothermal carbonization and post pyrolysis process using various melons as raw materials. This two-step process is a totally green synthetic method with cheap and ubiquitous biomass as the only raw material. These black-colored, highly electrically conductive and 3D structured CAs are ideal materials for energy conversion and storage. Paraffin wax was impregnated into the CA scaffold by vacuum infusion. The obtained CA-wax composites show excellent form-stable phase change behavior, with a high melting enthalpy of 115.2 J g~(-1). The CA-wax composites exhibit very high solar radiation absorption over the whole UV-vis-NIR range, and 96% of light can be absorbed by the phase-change composite and stored as thermal energy. With an electrical conductivity of 3.4 S m~(-1), the CA-wax composite can be triggered by low electric potential to perform energy storage and release, with an estimated electric-heat conversion efficiency of 71.4%. Furthermore, the CA-wax composites have excellent thermal stability with stable melting-freezing enthalpy and excellent reversibility. With a combination of low-cost biomass as the raw materials, a green preparation process, low density, and excellent electrical conductivity, the 3D CAs are believed to have promising potential applications in many energy-related devices.
机译:我们证明,轻质,高导电性和三维(3D)碳气凝胶(CAs)可以通过使用各种瓜类为原料的水热碳化和后热解过程生产。这个分两步的过程是一种完全绿色的合成方法,以廉价且普遍存在的生物质为唯一原料。这些黑色,高导电性和3D结构的CA是能量转换和存储的理想材料。通过真空输注将石蜡浸渍到CA支架中。所得的CA蜡复合材料表现出优异的形稳相变行为,具有115.2 J g〜(-1)的高熔融焓。 CA-蜡复合材料在整个UV-vis-NIR范围内均显示出很高的太阳辐射吸收率,相变复合材料可吸收96%的光并将其存储为热能。 CA-wax复合材料的电导率为3.4 S m〜(-1),可通过低电势触发进行能量存储和释放,估计电热转换效率为71.4%。此外,CA-蜡复合材料具有优异的热稳定性,稳定的熔融-冻结焓和优异的可逆性。结合低成本生物质作为原材料,绿色制备工艺,低密度和出色的导电性,人们认为3D CA在许多与能源相关的设备中具有广阔的应用前景。

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