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膨胀黏土-石蜡-地质聚合物复合材料的制备与表征

Preparation and Characterization of Expanded Clay-Paraffin Wax-Geo-Polymer Composite Material.

作者信息

Hassan Ahmed, Ismail Najif, Mourad Abdel-Hamid I, Rashid Yasir, Laghari Mohammad S

机构信息

College of Engineering, United Arab Emirates University, P.O. Box 15551, Al Ain 15551, UAE.

School of Engineering, Wellington Institute of Technology, Lower Hutt 5045, New Zealand.

出版信息

Materials (Basel). 2018 Nov 6;11(11):2191. doi: 10.3390/ma11112191.

Abstract

Paraffin-based phase change material (PCM) is impregnated into the pores of lightweight expanded clay aggregate (LECA) through vacuum impregnation to develop PCM containing macro-capsules of LECA. Three different grades of LECA varying in size and morphology are investigated to host the PCM to determine the impregnation effectiveness, viability for coating, and its stability. The produced LECA-PCM is coated with geopolymer paste (GP) to provide leak proofing during the phase change. The PCM is thermophysically characterized by employing differential scanning calorimetry (DSC) and the temperature history method (THM) to determine the phase transition and the latent heat. The stability of the macro-capsules is determined by weight loss through rapid thermal cycling (RTC) at elevated temperatures. Leakage of the PCM is tested using the diffusion-oozing circle test (DOCT). The results show that the GP coated LECA-PCM macro-capsules achieved 87 wt % impregnation efficiencies and no noticeable loss of PCM, which indicates leak proofing of the developed capsules up to 1000 RTC.

摘要

通过真空浸渍将石蜡基相变材料(PCM)浸渍到轻质膨胀粘土集料(LECA)的孔隙中,以制备含有LECA大胶囊的PCM。研究了三种不同尺寸和形态的LECA,以承载PCM,从而确定浸渍效果、涂层可行性及其稳定性。制备的LECA-PCM用地质聚合物浆料(GP)进行涂层,以在相变过程中提供防漏功能。通过差示扫描量热法(DSC)和温度历史法(THM)对PCM进行热物理表征,以确定相变和潜热。通过在高温下进行快速热循环(RTC)导致的重量损失来确定大胶囊的稳定性。使用扩散渗出圈试验(DOCT)测试PCM的泄漏情况。结果表明,涂覆GP的LECA-PCM大胶囊实现了87 wt%的浸渍效率,且PCM没有明显损失,这表明所制备的胶囊在高达1000次RTC时具有防漏性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f01/6266474/fa17dbafca02/materials-11-02191-g001.jpg

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