Thermal and Sound Insulation Properties of Recycled Expanded Polystyrene Granule and Gypsum Composites

IF 4.6 Q2 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Recycling Pub Date : 2023-02-03 DOI:10.3390/recycling8010019
G. Bumanis, Pauls P. Argalis, G. Sahmenko, D. Mironovs, S. Ručevskis, A. Korjakins, D. Bajare
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引用次数: 5

Abstract

Up to now, primary resources have been the main choice of raw material selection for production. Now, global market tendencies have brought significant attention to secondary resources as the price has been raised for primary materials, and there is a shortage of their delivery. This could bring an additional effort to increase the recycling level of construction and demolition waste, including expanded polystyrene (EPS). Efforts have been made to develop new efficient building materials with a high content of recycled EPS. In this paper, composite insulation material made of gypsum hemihydrate and recycled EPS beads by casting and compression methods were evaluated, and properties were compared. Thermal and sound insulation properties were characterized. Density from 48 to 793 kg/m3 was obtained and the thermal conductivity coefficient from 0.039 to 0.246 W/(m·K) was measured. Compression strength was from 18 kPa to 2.5 MPa. Composites produced with the compression method have a sound absorption coefficient α > 0.9 in the range from 600 to 700 Hz, while the samples produced by casting showed poor sound absorption with wide deviation. Compression methods had an advantage over the casting method as more homogenous and lightweight materials were produced with improved insulation properties.
再生发泡聚苯乙烯颗粒与石膏复合材料的隔热隔音性能
到目前为止,初级资源一直是生产原料选择的主要选择。现在,全球市场趋势已经引起了对二次资源的极大关注,因为初级材料的价格已经提高,而且交货短缺。这可能会带来额外的努力,以提高建筑和拆除废物的回收水平,包括发泡聚苯乙烯(EPS)。已经努力开发具有高含量回收EPS的新型高效建筑材料。本文对以石膏半水合物和再生EPS珠为原料,采用铸造法和挤压法制备的复合保温材料进行了评价,并对其性能进行了比较。对隔热和隔音性能进行了表征。密度为48~793kg/m3,导热系数为0.039~0.246W/(m·K)。压缩强度为18kPa至2.5MPa。采用压缩法生产的复合材料在600至700 Hz范围内的吸声系数α>0.9,而采用铸造法生产的样品吸声性能较差,偏差较大。压缩方法比铸造方法具有优势,因为生产的材料更均匀、更轻,绝缘性能得到改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Recycling
Recycling Environmental Science-Management, Monitoring, Policy and Law
CiteScore
6.80
自引率
7.00%
发文量
84
审稿时长
11 weeks
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