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气硬性石灰抹灰中聚合物化学添加剂与相变材料的相互作用研究

Study on the Interaction of Polymeric Chemical Additives with Phase Change Materials in Air Lime Renders.

作者信息

Rubio-Aguinaga Andrea, Fernández José María, Navarro-Blasco Íñigo, Álvarez José Ignacio

机构信息

MATCH Research Group, Department of Chemistry, School of Sciences, University of Navarra, Irunlarrea, 1, 31008 Pamplona, Spain.

出版信息

Polymers (Basel). 2024 Apr 17;16(8):1121. doi: 10.3390/polym16081121.

Abstract

The interaction of microencapsulated phase change materials (PCMs) with polymeric chemical additives in an air lime binding matrix was studied. These polymer-based additives included an adhesion booster (derived from starch) and a superplasticizer (polycarboxylate ether). Two different PCMs with melting points of 18 °C and 24 °C were assayed. The microcapsules were composed of melamine, with paraffin-based PCM cores. Measurements of zeta potential, particle size distribution, adsorption isotherms, and viscosity analyses were performed to comprehend the behavior of the polymer-based additives within the air lime matrix and their compatibility with PCMs. Zeta potential experiments pointed to the absence of a strong interaction between the lime particles and the microcapsules of PCMs. At the alkaline pH of the lime mortar, the negative charge resulting from the deprotonation of the melamine shell of the microcapsules was shielded by cations, yielding high positive zeta potential values and stable dispersions of lime with PCMs. The polycarboxylate ether demonstrated the ability to counteract the increase in mixing water demand caused by the PCM addition in the lime matrix. The dispersing action of the superplasticizer on the lime particles was seen to exert a collateral dispersion of the PCMs. Conversely, despite the positive values of zeta potential, the addition of the starch-based additive resulted in the formation of large PCM-lime clumps. Air lime renders incorporating 5, 10, and 20% PCMs by weight with various dosages of these chemical additives were experimented with until the optimal formulation for the specific application of the mortars as renderings was achieved. This fine-tuned formulation effectively tackled issues commonly associated with the addition of PCMs to mortars, such as poor adhesion, crack formation, and reduced fluidity.

摘要

研究了微胶囊相变材料(PCM)与气硬性石灰粘结基体中聚合物化学添加剂的相互作用。这些基于聚合物的添加剂包括一种粘结促进剂(源自淀粉)和一种高效减水剂(聚羧酸醚)。对两种熔点分别为18℃和24℃的不同PCM进行了测定。微胶囊由三聚氰胺组成,其芯材为石蜡基PCM。进行了ζ电位、粒径分布、吸附等温线和粘度分析,以了解基于聚合物的添加剂在气硬性石灰基体中的行为及其与PCM的相容性。ζ电位实验表明,石灰颗粒与PCM微胶囊之间不存在强烈相互作用。在石灰砂浆的碱性pH值下,微胶囊三聚氰胺壳去质子化产生的负电荷被阳离子屏蔽,产生高正ζ电位值以及石灰与PCM的稳定分散体。聚羧酸醚表现出能够抵消PCM添加到石灰基体中所引起的拌合水需求量增加的能力。高效减水剂对石灰颗粒的分散作用被认为对PCM起到了附带的分散作用。相反,尽管ζ电位为正值,但添加基于淀粉的添加剂导致形成了大的PCM-石灰团块。对气硬性石灰掺入5%、10%和20%(按重量计)PCM以及各种剂量这些化学添加剂进行了试验,直到获得用于抹灰砂浆特定应用的最佳配方。这种微调配方有效地解决了通常与向砂浆中添加PCM相关的问题,如粘结性差、裂缝形成和流动性降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0f0a/11053762/d9da4b2009be/polymers-16-01121-g001.jpg

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