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Warming up human body by nanoporous metallized polyethylene textile

机译:纳米多孔金属化聚乙烯纺织品使人体变暖

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摘要

Space heating accounts for the largest energy end-use of buildings that imposes significant burden on the society. The energy wasted for heating the empty space of the entire building can be saved by passively heating the immediate environment around the human body. Here, we demonstrate a nanophotonic structure textile with tailored infrared (IR) property for passive personal heating using nanoporous metallized polyethylene. By constructing an IR-reflective layer on an IR-transparent layer with embedded nanopores, the nanoporous metallized polyethylene textile achieves a minimal IR emissivity (10.1%) on the outer surface that effectively suppresses heat radiation loss without sacrificing wearing comfort. This enables 7.1 °C decrease of the set-point compared to normal textile, greatly outperforming other radiative heating textiles by more than 3 °C. This large set-point expansion can save more than 35% of building heating energy in a cost-effective way, and ultimately contribute to the relief of global energy and climate issues.
机译:空间供暖是建筑物最大的能源最终用途,给社会造成了沉重负担。通过被动加热人体周围的直接环境,可以节省浪费在加热整个建筑物空旷空间上的能源。在这里,我们演示了一种具有定制红外(IR)性能的纳米光子结构织物,可用于使用纳米多孔金属化聚乙烯进行被动式个人加热。通过在具有嵌入的纳米孔的IR透明层上构造IR反射层,纳米多孔金属化聚乙烯纺织品在外表面上具有最小的IR发射率(10.1%),可有效抑制散热损失,同时又不降低穿着舒适度。与普通纺织品相比,这可以将设定值降低7.1 C,大大超过其他辐射加热纺织品3ºC以上。如此大的设定点扩展可以节省成本的方式节省超过35%的建筑供暖能源,最终有助于缓解全球能源和气候问题。

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