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基于钛酸铋的水泥体系添加剂的合成及其性能评估

Synthesis and Evaluation of Properties of an Additive Based on Bismuth Titanates for Cement Systems.

作者信息

Samchenko Svetlana V, Kozlova Irina V, Korshunov Andrey V, Zemskova Olga V, Dudareva Marina O

机构信息

Department of Building Materials, Moscow State University of Civil Engineering, 26, Yaroslavskoye Shosse, 129337 Moscow, Russia.

出版信息

Materials (Basel). 2023 Sep 18;16(18):6262. doi: 10.3390/ma16186262.

Abstract

The development of modern building materials science involves the process of designing innovative materials that exhibit unique characteristics, such as energy efficiency, environmental friendliness, self-healing ability, and photocatalytic properties. This can be achieved by modifying cement with nano- and fine-dispersed additives that can give the material new properties. Such additives include a number of compounds based on the TiO-BiO system. These compounds have photocatalytic activity in the near-UV and visible range of the spectrum, which can serve to create photocatalytic concretes. Here, the purpose of this scientific study was to synthesize compounds based on the TiO-BiO system using two methods in order to identify the most optimal variant for creating a composite material and determine its properties. Within the framework of this article, two methods of obtaining a photocatalytically active additive based on the TiO-BiO system are considered: the solid-state and citrate-based methods. The photocatalytic, mechanical and structural properties of composites containing the synthesized additive are investigated. In this study, it was found that for the creation of photocatalytic concretes, it is advisable to use cement compositions with a bismuth titanate content of 3-10 wt.%. of the cement content, regardless of the method of obtaining the additive. However, the most optimal composition is one containing 5 wt.% of the synthesized additive. It is noted that compositions containing 5% by weight of bismuth titanate demonstrate photocatalytic activity and also show an increase in strength on the first day of hardening by 10% for the solid-state method and 16% for the citrate method.

摘要

现代建筑材料科学的发展涉及设计具有独特特性的创新材料的过程,这些特性包括能源效率、环境友好性、自修复能力和光催化性能。这可以通过用纳米和细分散添加剂改性水泥来实现,这些添加剂可以赋予材料新的性能。此类添加剂包括许多基于TiO-BiO体系的化合物。这些化合物在光谱的近紫外和可见光范围内具有光催化活性,可用于制造光催化混凝土。在此,本科学研究的目的是使用两种方法合成基于TiO-BiO体系的化合物,以确定制造复合材料的最佳变体并确定其性能。在本文的框架内,考虑了两种获得基于TiO-BiO体系的光催化活性添加剂的方法:固态法和柠檬酸盐法。研究了含有合成添加剂的复合材料的光催化、机械和结构性能。在本研究中发现,对于制造光催化混凝土,无论采用何种添加剂制备方法,使用钛酸铋含量为水泥含量3-10 wt.%的水泥组合物都是可取的。然而,最佳组合物是含有5 wt.%合成添加剂的组合物。值得注意的是,含有5重量%钛酸铋的组合物表现出光催化活性,并且对于固态法,在硬化第一天强度提高10%,对于柠檬酸盐法,强度提高16%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d66/10532926/e60aa631641c/materials-16-06262-g009.jpg

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