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一种基于热致变色杨树的十四烷基酯/甲基复合材料,用聚乙二醇400-二氧化硅(PS-R-PTC)封装以改善热能存储。

A thermochromic poplar-based tetradecyl ester/methyl composite encapsulated with PEG400-SiO (PS-R-PTC) for improving thermal energy storage.

作者信息

Tong Yanqiang, Zou Weihua, Sun Delin, Wang Zhangheng

机构信息

Central South University of Forestry and Technology Shaoshan South Road 498 Changsha 410004 China

出版信息

RSC Adv. 2023 Apr 14;13(17):11728-11732. doi: 10.1039/d3ra01640d. eCollection 2023 Apr 11.

Abstract

Thermochromic wood is an important research direction for wood modification in recent years, and a red poplar-based thermochromic composite (R-PTC) had been prepared in our previous study by compositing a mixture of phase change reagents (tetradecyl ester: CHO and methyl red: CHNO) and full poplar wood. In order to improve the heating storage ability of R-PTC and encapsulating phase change reagents to prevent leakage, a new R-PTC composite (PS-R-PTC) was prepared by encapsulated R-PTC with polyethylene glycol 400 (PEG400)-SiO in this work. Compared to the original R-PTC samples, the cell walls of PS-R-PTC were not significantly changed by the SiO film and we also found that PS-R-PTC with PEG400 (90%)-silica solutions (10%) mixture had better heat storage performance and PS-R-PTC (90%) has better enthalpy change value (R-PTC: 43.01 J g; PS-R-PTC (90%): 71.82 J g). The PS-R-PTC can show the function of thermal energy storage, which is used in wooden buildings and can be a feasible insulating material for reducing thermal energy losses and hence reducing energy usage. In PS-R-PTC, SiO combines with the -OH of the R-PTC and the -OH of PEG400 (HO(CHCHO) H), and these -OH lose hydrogen ions too.

摘要

热致变色木材是近年来木材改性的一个重要研究方向,在我们之前的研究中,通过将相变试剂混合物(十四烷基酯:CHO和甲基红:CHNO)与全杨木复合制备了一种基于红杨木的热致变色复合材料(R-PTC)。为了提高R-PTC的蓄热能力并封装相变试剂以防止泄漏,在本工作中通过用聚乙二醇400(PEG400)-SiO封装R-PTC制备了一种新型R-PTC复合材料(PS-R-PTC)。与原始的R-PTC样品相比,SiO薄膜对PS-R-PTC的细胞壁没有显著影响,并且我们还发现,含有PEG400(90%)-二氧化硅溶液(10%)混合物的PS-R-PTC具有更好的蓄热性能,而PS-R-PTC(90%)具有更好的焓变值(R-PTC:43.01 J/g;PS-R-PTC(90%):71.82 J/g)。PS-R-PTC能够展现出热能储存功能,可应用于木质建筑,并且可以作为一种可行的隔热材料来减少热能损失,从而降低能源消耗。在PS-R-PTC中,SiO与R-PTC的-OH以及PEG400的-OH(HO(CHCHO)H)结合,并且这些-OH也会失去氢离子。

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