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Fabrication of solar-reflective, hydrophobic polymer materials with excellent cooling and anti-icing properties through selective etching

机译:通过选择性蚀刻制造太阳能反光,疏水性聚合物材料,具有优异的冷却和防糖霜性能

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摘要

Polymeric cool roofing materials have been concerned all along for their promising applications in energy-saving fields. Simultaneously, anti-icing property is another significant consideration for roofing materials. Herein, porous surfaces were constructed through immersing poly(methyl methacrylate) (PMMA)/chlorinated polyethylene (CPE) blending sheets in cyclohexane/methylbenzene/acetone (90/10/10) mixed solvent to selectively etch some components, and their cooling and anti-icing properties were investigated. Both solar reflectance (R-s(ol)) and thermal emissivity (epsilon(T)) at atmospheric window (8-13 mu m) of porous sample with 30 wt% CPE (R-sol = 93.7%, epsilon(T) = 87.1%) were higher than those of pure PMMA (R-s(ol) = 13.0%, epsilon(T) = 86.4%). The porous sample with 30% CPE as a simulated roof possessed the best cooling performance from cooling test its final temperature was only 25.3 degrees C after 1 h solar radiation, 27.1 degrees C lower than that of pure PMMA. Moreover, the porous sample with 30 wt % CPE exhibited very hydrophobic and good anti-icing properties. The freezing point and the freezing time of water on the hydrophobic surface were -24.4 degrees C and 568 s, 7.2 degrees C lower and 452 s longer than those of water on the surface of pure PMMA, respectively. We believe that this solar-reflective and anti-icing porous material has potential application for the next-generation roofing material.
机译:聚合物凉爽屋顶材料一直致力于其在节能领域的有前途的应用。同时,防冰属性是屋顶材料的另一个重要考虑因素。在此,通过浸入聚(甲基丙烯酸甲酯)(PMMA)/氯化聚乙烯(CPE)混合片中的混合溶剂来构建多孔表面,以选择性地蚀刻一些组分,以及它们的冷却和抗 - 调查了物业。在具有30wt%CPE的多孔样品(R-S1 = 93.7%的多孔样品的大气窗口(8-13μm)的大气窗口(8-13μm)的太阳反射率(Rs(OL))和热发射率(ε(t)) %)高于纯PMMA(Rs(OL)= 13.0%,ε(T)= 86.4%)。具有30%CPE作为模拟屋顶的多孔样品具有从冷却测试的最佳冷却性能,其最终温度仅为25.3摄氏度,在1小时太阳辐射后,27.1摄氏度低于纯PMMA。此外,具有30wt%CPE的多孔样品表现出非常疏水和良好的抗糖霜性质。渗透点和疏水表面上的水的冷冻时间分别为-24.4℃和568℃,7.2℃,低于纯PMMA表面上的水的低于水。我们认为,这种太阳能反光和防冰多孔材料具有下一代屋顶材料的潜在应用。

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