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用于被动冷却的强双网络混合纤维素泡沫。

Strong double networked hybrid cellulosic foam for passive cooling.

机构信息

Research Institute of Wood Industry, Chinese Academy of Forestry, Key Laboratory of Wood Science and Technology, National Forestry and Grassland Administration, Beijing 100091, China.

Research Institute of Wood Industry, Chinese Academy of Forestry, Key Laboratory of Wood Science and Technology, National Forestry and Grassland Administration, Beijing 100091, China.

出版信息

Int J Biol Macromol. 2024 Apr;264(Pt 2):130676. doi: 10.1016/j.ijbiomac.2024.130676. Epub 2024 Mar 6.

Abstract

Up to now, energy conservation, emission reduction, and environmental protection are still the goals that humanity continuously pursues. Passive radiative cooling is a zero-consumption cooling technology, which gains more and more attention. However, the contraction between mechanical strength and cooling performance of traditional radiative cooling materials still limits their scalable production. In this work, we developed a strong double-networked hybrid cellulosic foam via crosslinking recyclable CNF and PVA with a silane coupling agent in the freeze-drying process. Meanwhile, nano zinc oxide and MOF were added to improve the mechanical and solar scattering of foam. Benefiting from the synergistic solar scattering of ZnO and MOF and the stable double crosslinking network, the as-prepared hybrid cellulosic foam exhibits high solar reflectivity of 0.965, high IR emissivity of 0.94, ultrahigh mechanical strength of and low thermal conductivity. Based on above results, the hybrid cellulosic foam shows high-performance daytime cooling efficiency of 7.5 °C under direct sunlight in the hot region (Nanjing, China), which can serve as outdoor thermal-regulation materials. This work demonstrates that biomass materials possess the enormous potential of in thermal regulating materials, and also provides great possibilities for their applications in energy conservation, environmental protection and green building materials.

摘要

迄今为止,节能减排和环境保护仍然是人类不断追求的目标。被动式辐射冷却技术是一种零能耗的冷却技术,受到了越来越多的关注。然而,传统辐射冷却材料的机械强度与冷却性能之间的矛盾仍然限制了其规模化生产。在这项工作中,我们通过在冷冻干燥过程中使用硅烷偶联剂交联可回收的 CNF 和 PVA,开发了一种具有强机械性能的双网络混合纤维素泡沫。同时,还添加了纳米氧化锌和 MOF 以提高泡沫的机械性能和太阳散射性能。得益于 ZnO 和 MOF 的协同太阳散射作用以及稳定的双交联网络,所制备的混合纤维素泡沫表现出 0.965 的高太阳光反射率、0.94 的高红外发射率、超高的机械强度和低的热导率。基于以上结果,在炎热地区(中国南京)的阳光下,混合纤维素泡沫在白天的冷却效率高达 7.5°C,可作为户外热调节材料。这项工作表明生物质材料在热调节材料方面具有巨大的潜力,也为其在节能、环保和绿色建筑材料中的应用提供了可能。

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