Effect of Microwave Radiation on the Properties of Hydrogel, Cork, Perlite, and Ceramsite.

IF 5 3区 化学 Q1 POLYMER SCIENCE
Gels Pub Date : 2024-08-22 DOI:10.3390/gels10080543
David Průša, Stanislav Šťastník, Kateřina Svobodová, Karel Šuhajda, Zuzana Sochorová
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Abstract

The present work analyzes the effect of releasing physically bound water from hydrogel, cork, perlite, and ceramsite on materials exposed to microwave radiation and subsequently investigates possible changes in the physical properties of these materials (water absorption and thermal conductivity coefficient). The release of physically bound water from individual materials has potential practical applications in materials engineering, for example, in the internal curing of concrete, where individual aggregates could, under the influence of microwave radiation, release water into the structure of the concrete and thus further cure it. Experimental analysis was carried out with samples of the above-mentioned materials, which were first weighed and then immersed in water for 24 h. Then, they were weighed again and exposed to microwave radiation. After exposure, the samples were weighed again, left immersed in water for 24 h, and weighed again. The focus of the study was on the ability of the aggregates to release water due to microwave radiation and on the changes in the properties (water absorption, thermal conductivity coefficient) of these materials when exposed to microwave radiation. The samples were further monitored by digital microscopy for possible changes in the surface layer of the materials. The hydrogels show the highest water absorption (1000%) and the fastest water release (45 min to complete desiccation). After the release of water due to microwave radiation, their ability to absorb water is maintained. Of interest, however, is that in the case of almost complete removal of water from the soaked hydrogel, the original powdered state of the hydrogel is not obtained, but the outcome has rather a solid structure. In the case of cork, the water absorption depends on the fraction of the material.

微波辐射对水凝胶、软木、珍珠岩和铈镧矿性能的影响。
本研究分析了从水凝胶、软木、珍珠岩和陶瓷石中释放物理结合水对暴露在微波辐射下的材料的影响,并随后研究了这些材料的物理性质(吸水性和导热系数)可能发生的变化。从单个材料中释放出物理结合水在材料工程中具有潜在的实际应用价值,例如在混凝土的内部固化中,单个骨料在微波辐射的影响下可以将水释放到混凝土结构中,从而进一步固化混凝土。对上述材料样品进行了实验分析,首先称重,然后将其浸泡在水中 24 小时。暴露后,再次称重样品,将其在水中浸泡 24 小时,然后再次称重。研究的重点是微波辐射导致骨料释放水分的能力,以及暴露于微波辐射时这些材料的特性(吸水性、导热系数)的变化。研究人员还通过数码显微镜对样品进行了进一步监测,以发现材料表层可能发生的变化。水凝胶显示出最高的吸水率(1000%)和最快的水释放速度(45 分钟完全干燥)。微波辐射导致水分释放后,它们的吸水能力依然保持。但值得注意的是,在几乎完全去除浸泡水凝胶中的水分的情况下,水凝胶并没有恢复到原来的粉末状态,而是呈现出固体结构。就软木而言,吸水性取决于材料的成分。
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
Gels
Gels POLYMER SCIENCE-
CiteScore
4.70
自引率
19.60%
发文量
707
审稿时长
11 weeks
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