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利用废灰和矿渣混合物中的硅铝酸盐灰微球用于石膏-石灰组合物中。

The Use of Aluminosilicate Ash Microspheres from Waste Ash and Slag Mixtures in Gypsum-Lime Compositions.

作者信息

Petropavlovskaya Victoria, Zavadko Maria, Novichenkova Tatiana, Petropavlovskii Kirill, Sulman Mikhail

机构信息

Faculty of Civil Engineering, Tver State Technical University, 170026 Tver, Russia.

出版信息

Materials (Basel). 2023 Jun 6;16(12):4213. doi: 10.3390/ma16124213.

Abstract

The article considered the issues of the modification of gypsum stone to improve its performance properties. The influence of mineral additives on the physical and mechanical characteristics of the modified gypsum composition is described. The composition of the gypsum mixture included slaked lime and an aluminosilicate additive in the form of ash microspheres. It was isolated from ash and slag waste from fuel power plants as a result of their enrichment. This made it possible to reduce the carbon content in the additive to 3%. Modified compositions of the gypsum composition are proposed. The binder was replaced with an aluminosilicate microsphere. Hydrated lime was used to activate it. Its content varied: 0, 2, 4, 6, 8 and 10% of the weight of the gypsum binder. Replacing the binder with an aluminosilicate product for the enrichment of ash and slag mixtures made it possible to improve the structure of the stone and increase its operational properties. The compressive strength of the gypsum stone was 9 MPa. This is more than 100% higher than the strength of the control composition of gypsum stone. Studies have confirmed the effectiveness of using an aluminosilicate additive-a product of enrichment of ash and slag mixtures. The use of an aluminosilicate component for the production of modified gypsum mixtures allows the saving of gypsum resources. Developed formulations of gypsum compositions using aluminosilicate microspheres and chemical additives provide the specified performance properties. This makes it possible to use them in the production of self-leveling floors, plastering and puttying works. Replacing traditional compositions with a new composition based on waste has a positive effect on the preservation of the natural environment and contributes to the formation of comfortable conditions for human habitation.

摘要

该文章探讨了石膏石改性以改善其性能特性的问题。描述了矿物添加剂对改性石膏组合物物理和力学特性的影响。石膏混合物的组成包括熟石灰和呈灰微球形式的硅铝酸盐添加剂。它是从燃料发电厂的灰渣废料中经过富集分离出来的。这使得添加剂中的碳含量降低到3%。提出了石膏组合物的改性配方。用硅铝酸盐微球替代粘结剂。使用熟石灰对其进行活化。其含量有所不同:占石膏粘结剂重量的0%、2%、4%、6%、8%和10%。用硅铝酸盐产品替代粘结剂以富集灰渣混合物能够改善石材结构并提高其使用性能。石膏石的抗压强度为9兆帕。这比石膏石对照组合物的强度高出100%以上。研究证实了使用硅铝酸盐添加剂——一种灰渣混合物富集产物的有效性。使用硅铝酸盐成分生产改性石膏混合物能够节省石膏资源。使用硅铝酸盐微球和化学添加剂开发的石膏组合物配方具备规定的性能特性。这使得它们能够用于自流平地面、抹灰和刮腻子工程的生产中。用基于废料的新组合物替代传统组合物对保护自然环境具有积极作用,并有助于营造舒适的人类居住条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba04/10304971/07e0ea71966b/materials-16-04213-g001.jpg

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