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Hygrothermal and Acoustical Performance of Starch-Beet Pulp Composites for Building Thermal Insulation

机译:淀粉-甜菜浆粕复合材料建筑隔热的湿热和隔音性能

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摘要

This article deals with the elaboration and the characterization of an innovative 100% plant-based green composite made solely of beet pulp (BP) and potato starch (S). Using this type of material in insulation applications seems a good solution to reduce the CO2 gas emissions in building. The influence of the starch amount on composite characteristics was studied. Four mixtures were considered with different S/BP mass ratios (0.1, 0.2, 0.3 and 0.4). The physical properties of these materials were studied in terms of porosity, apparent and absolute densities, thermal conductivity, and hygric properties. The influence of humidity content on acoustical properties was studied as a function of frequency. Test results show a real impact of both starch and humidity contents on the hygrothermal and acoustical properties of the studied material due to the porosity. The composite with the lowest amount of starch (S/BP = 0.1) seems to be the optimal composition in terms of the hygrothermal and acoustical behaviors.
机译:本文探讨了仅由甜菜浆(BP)和马铃薯淀粉(S)制成的创新型100%植物基绿色复合材料的特性和特性。在绝缘应用中使用这种类型的材料似乎是减少建筑物中CO2气体排放的好方法。研究了淀粉含量对复合材料性能的影响。认为四种混合物具有不同的S / BP质量比(0.1、0.2、0.3和0.4)。从孔隙率,表观和绝对密度,导热率和水凝胶性能方面研究了这些材料的物理性能。研究了湿度含量对声学性能的影响,该影响是频率的函数。测试结果表明,由于孔隙率,淀粉和湿度都对所研究材料的湿热和声学特性产生了实际影响。就湿热和声学行为而言,淀粉含量最低的复合材料(S / BP = 0.1)似乎是最佳的组成。

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