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Graphene oxide stabilized carbon nanotube-water nanofluids for direct absorption solar collectors

机译:石墨烯氧化物稳定的碳纳米管水纳米流体用于直接吸收太阳能收集器

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The utilization of solar thermal energy has shown remarkable growth recently. Due to the development of nanomaterials, suspensions of nanoparticles (nanofluids) have exhibited great performance in the solar thermal systems, especially in direct absorption solar collectors (DASC). The fundamental advantage of DASC by using nanofluids is the minimizing of solar energy transfer steps and reducing thermal losses in converting sunlight, as nanoparticles could harvest the solar energy directly and achieve good photothermal conversion properties. Carbon nanotube (CNT) based nanofluids showed great potential as a working fluid in DASC. Nevertheless, the stability of CNTs in suspensions is the main obstacle for the large use of CNT nanofluids. In this work, small amount of graphene oxide (GO) was introduced to stabilize CNT-water nanofluids without using any other organic surfactants. The GO stabilized CNT nanofluids exhibited long-term and high-temperature stability. The ti-ti interactions between the GO and CNT played a significant role for the good dispersion and stability of CNT in water. Furthermore, optical characterizations showed that the GO stabilized CNT nanofluids have widely absorbing over the solar spectrum which enabled highly efficient solar energy collections. Eventually, photothermal conversion performance of GO stabilized CNT nanofluids was tested under an irradiation of simulated solar light and the nanofluid demonstrated a high efficiency in DASC. The long-term stability coupled with broadband absorption properties of GO stabilized CNT nanofluids make them ideal candidates as photothermal conversion media for direct solar thermal collectors.
机译:利用太阳能热能的利用率最近显着增长。由于纳米材料的发展,纳米颗粒(纳米流体)的悬浮液在太阳能热系统中表现出具有很大的性能,特别是在直接吸收太阳能收集器(DASC)中。 DASC通过使用纳米流体的基本优势是最大限度地减少太阳能转移步骤,降低转换阳光的热损失,因为纳米颗粒可以直接收集太阳能并实现良好的光热转化性能。基于碳纳米管(CNT)的纳米流体显示出DASC中的工作流体的巨大潜力。然而,CNT在悬浮液中的稳定性是大量使用CNT纳米流体的主要障碍。在这项工作中,引入少量的石墨烯(GO)以稳定CNT-水纳米流体而不使用任何其他有机表面活性剂。稳定的CNT纳米流体表现出长期和高温稳定性。 Go和CNT之间的Ti-Ti相互作用在水中CNT的良好分散和稳定性起着显着作用。此外,光学表征表明,去稳定的CNT纳米流体在太阳谱上广泛吸收,其使能高效的太阳能收集。最终,在模拟太阳灯的照射下测试了去稳定的CNT纳米流体的光热转化性能,纳米流体在DASC中展示了高效率。与稳定的CNT纳米流体的宽带吸收性能耦合的长期稳定性使其成为直接太阳热收集器的光热转换介质的理想候选者。

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