1- 十四烷醇作为热改性白蜡木中相变材料的性能表征

Gaye Köse Demirel
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引用次数: 0

摘要

在热改性木材中使用相变材料提出了一种创新的方式来增强木材的热性能,有助于在各种应用中提高能源效率和热舒适性。然而,仔细考虑所使用的材料和方法对于确保该技术的有效性和实用性至关重要。相变材料(PCM)可以通过各种方法集成到热改性木材中。一种常见的方法是浸渍,将PCM注入木结构中。另一种方法是在木材表面的涂料或饰面中应用PCM。本研究以1-十四醇(TD)作为PCM,考察其对热改性灰分木(TMA)的处理效果。为此,采用浸出试验对TMA中TD的浸出进行了试验。差示扫描量热法(DSC)、热重分析(TGA)、傅里叶变换红外光谱法(FTIR)进行了检测。根据结果,在泄漏试验中有少量泄漏。TGA分析表明,与未处理的热改性木材(TMA)相比,TD/TMA在800°C下的残余为16.30%,而未处理的残余为18.20%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of 1-tetradecanol’s performance as a phase change material in thermally modified ash wood
The use of phase change materials in thermally modified wood presents an innovative way to enhance the thermal properties of wood, contributing to energy efficiency and thermal comfort in various applications. However, careful consideration of the materials and methods used is essential to ensure the effectiveness and practicality of this technology. Phase change materials (PCM) can be integrated into thermally modified wood through various methods. One common method is impregnation, where the PCM is infused into the wood structure. Another method could be the application of PCM in coatings or finishes applied to the wood surface. In this study, 1-tetradecanol (TD) was used as a PCM and its effectiveness on thermally modified ash wood (TMA) was investigated. For this purpose, the leaching of TD from TMA was tested by leaching test. Diffential scanning calorimetry (DSC), thermogravimetric analyses (TGA), fourier transform infrared spectroscopy (FTIR) were examined. According to the results, there was a small amount of leakage in the leakage test. TGA analysis showed that TD/TMA left a lower residue of 16.30% at 800°C compared to the residue of 18.20% left by untreated thermally modified wood (TMA).
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