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Thermal and moisture adsorption/desorption properties for a selection of vegetal insulation materials

机译:用于选择植物绝缘材料的热和水分吸附/解吸性能

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Natural, or ‘green’ insulation materials, have become more popular for the ‘ecologisation’ of construction activities. The ecological aspects for such materials are being widely analysed, but experimental data about their physical properties when installed in building constructions remains lacking. In this study, pressed samples of three locally wild grown agricultural materials – rye, reed, and hemp – are analysed. Thermal conductivity measurements were carried out using the hot plate device. Comparison with widely used mineral insulation materials shows that thermal conductivity for simple pressed materials are roughly three times higher, and are comparable to plywood and cross-laminated timber insulation properties. Additional experiments regarding such materials include measurements of hygroscopic sorption properties (adsorption/desorption), determined using the dynamic gravimetric method at different temperatures and a wide, relative humidity range. The results obtained show that the difference in all studied materials appeared only at high humidity values; the rye straw and reed spikelets adsorbed more water than other materials, which is important for potential indoor air humidity assessment.
机译:自然,或“绿色”绝缘材料,对建筑活动的“生态化”变得更受欢迎。这些材料的生态方面是广泛分析的,但是在安装建筑结构时的物理性质的实验数据仍然缺乏。在这项研究中,分析了三种局部野生种植的农业材料 - 黑麦,芦苇和大麻的压制样品。使用热板装置进行导热率测量。与广泛使用的矿物绝缘材料的比较表明,简单的压制材料的导热系数大约三倍,并且与胶合板和交叉层压木材绝缘性能相当。关于这些材料的额外实验包括使用在不同温度和宽,相对湿度范围内使用动态重量法测定的吸湿吸附性能(吸附/解吸)的测量。得到的结果表明,所有研究的差异仅在高湿度值下出现;黑麦秸秆和芦苇尖峰吸附比其他材料更多的水,这对于潜在的室内空气湿度评估很重要。

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