Energy-Efficient Insulating Geopolymer Foams with the Addition of Phase Change Materials.

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY ACS Omega Pub Date : 2025-01-17 eCollection Date: 2025-01-28 DOI:10.1021/acsomega.4c06227
Joanna Marczyk, Agnieszka Przybek, Kinga Setlak, Patrycja Bazan, Michał Łach
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Abstract

This study assessed the impact of the addition of phase change materials (PCMs) under the trade name Micronal 28S on the properties of the manufactured geopolymer foams. Micronal 28S is used as a functional component in foams (insulation materials), foamed building materials, and materials for temperature regulation to improve thermal comfort and indoor climate. The melting point of Micronal 28S is 28 ± 2 °C, and the heat of fusion is ∼140 J/g. As part of the research, geopolymer mixtures containing PCMs in the form of a slurry were prepared in shares of 0, 5, 10, and 15 wt %. Geopolymers were produced based on fly ash. The foaming process was carried out using hydrogen peroxide (H2O2). Physical, mechanical, and thermal properties and analysis of the microscopic microstructure were evaluated. The introduction of Micronal 28S into the geopolymer matrix is conducive to obtaining ultralight foams with a density of about 200 kg/m3. As the share of the PCM increases, the thermal insulating properties of the samples increase by reaching a thermal conductivity coefficient λ of 0.057 W/m*K. Simultaneously, the specific heat increases up to 1.105 kJ/kg*K. Microstructure analysis confirmed that Micronal 28S tends to agglomerate and decrease pore size. The phase change material reduces the mechanical properties of the geopolymers. However, according to the EN 998-1 standard, the conditions for the requirements to be realized by insulating materials used in construction were met by a reference sample and one containing 5 wt % of Micronal 28S. The content in this publication addresses issues in both materials science and mechanical engineering. Although other authors have conducted research using various phase change materials, this work is the first to use PCMs with the trade name Micronal 28S to produce geopolymer foams with excellent thermal insulation properties.

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加入相变材料的高能效绝缘地聚合物泡沫。
本研究评估了添加以micrononal 28S为商品名的相变材料(PCMs)对所制造的地聚合物泡沫材料性能的影响。Micronal 28S作为功能成分应用于泡沫(保温材料)、发泡建筑材料、调温材料中,以改善热舒适和室内气候。Micronal 28S的熔点为28±2℃,熔合热为~ 140 J/g。作为研究的一部分,以浆料的形式制备含有PCMs的地聚合物混合物,其份额分别为0%、5%、10%和15%。以粉煤灰为原料制备地聚合物。用过氧化氢(H2O2)进行发泡。评估了材料的物理、机械和热性能以及微观组织分析。在地聚合物基体中引入micrononal 28S有利于获得密度约为200 kg/m3的超轻泡沫。随着PCM含量的增加,样品的导热系数λ达到0.057 W/m*K。同时,比热增大到1.105 kJ/kg*K。微观结构分析证实,miconal 28S具有团聚和减小孔径的趋势。相变材料降低了地聚合物的力学性能。然而,根据EN 998-1标准,参考样品和含有5wt % micrononal 28S的样品满足了建筑中使用的绝缘材料的要求条件。本出版物的内容涉及材料科学和机械工程两方面的问题。虽然其他作者已经使用各种相变材料进行了研究,但这项工作是第一次使用商品名为micrononal 28S的pcm来生产具有优异隔热性能的地聚合物泡沫。
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
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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