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基于硅铝酸盐废料和偏高岭土的碱激发材料的微观结构分析与放射学表征

Microstructural Analysis and Radiological Characterization of Alkali-Activated Materials Based on Aluminosilicate Waste and Metakaolin.

作者信息

Mladenović Nikolić Nataša, Kandić Aleksandar, Potočnik Jelena, Latas Nemanja, Ivanović Marija, Nenadović Snežana, Kljajević Ljiljana

机构信息

Department of Materials, "Vinča" Institute of Nuclear Sciences-National Institute of the Republic of Serbia, University of Belgrade, 11000 Belgrade, Serbia.

Department of Nuclear and Plasma Physics, "Vinča" Institute of Nuclear Sciences-National Institute of the Republic of Serbia, University of Belgrade, 11000 Belgrade, Serbia.

出版信息

Gels. 2025 Jan 10;11(1):57. doi: 10.3390/gels11010057.

Abstract

The formation of an aluminosilicate gel structure made of alkali-activated materials (AAMs) was conducted through an alkali-activation reaction of the solid precursors (fly ash, metakaolin, and wood ash). Fly and wood ash are by-products of the burning process of coal and wood, respectively. Alkali-activated materials of aluminosilicate origin, made from the different ashes, fly and wood, are very attractive research targets and can be applied in various technological fields due to their thermal stability, resistance to thermal shock, high porosity, high sustainability, and finally, low energy loss during production. In this paper, we evaluate physico-chemical properties, microstructure, and radiological environmental impacts when wastes that contain elevated levels of naturally occurring radionuclides (NORs) such as fly ash and wood ash are made into "green cements" such as AAMs. The determination of radionuclide content was performed by means of gamma-ray spectrometry. Results showed that the AAMs have a lower value in the activity concentration of radionuclides than raw materials. The external absorbed gamma dose rate was 74.7-107.3 nGy/h, and the external radiation hazard index values were in range of 0.445-0.628 Bq/kg. The results of the activity concentration measurements for alkali-activated materials indicate the potential of their safe application in building construction. In terms of the structural characterizations, the obtained alkali-activated materials were examined using XRD, DRIFT, FESEM, and TEM analyses.

摘要

由碱激活材料(AAMs)制成的硅铝酸盐凝胶结构是通过固体前驱体(粉煤灰、偏高岭土和木灰)的碱激活反应形成的。粉煤灰和木灰分别是煤炭和木材燃烧过程的副产品。由不同的灰烬(粉煤灰和木灰)制成的硅铝酸盐源碱激活材料是非常有吸引力的研究目标,由于其热稳定性、抗热震性、高孔隙率、高可持续性,以及最终在生产过程中的低能量损失,它们可应用于各种技术领域。在本文中,我们评估了将含有高含量天然放射性核素(NORs)的废物(如粉煤灰和木灰)制成AAMs等“绿色水泥”时的物理化学性质、微观结构和放射性环境影响。放射性核素含量的测定通过伽马射线能谱法进行。结果表明,AAMs的放射性核素活度浓度值低于原材料。外部吸收伽马剂量率为74.7 - 107.3 nGy/h,外部辐射危害指数值在0.445 - 0.628 Bq/kg范围内。碱激活材料活度浓度测量结果表明它们在建筑施工中安全应用的潜力。在结构表征方面,使用XRD、DRIFT、FESEM和TEM分析对获得的碱激活材料进行了检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9862/11765221/770030fd089f/gels-11-00057-g001.jpg

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