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提高磷石膏复合材料煅烧石膏耐水性和力学性能的研究

Investigation into Improving the Water Resistance and Mechanical Properties of Calcined Gypsum from Phosphogypsum Composites.

作者信息

Wang Qing, Lou Yuanyuan, Peng Yanzhou, Wang Weiqi, Luo Xiaohui, Smith Abutu Simon John

机构信息

Hubei Engineering Technology Research Center for Disaster Prevention and Mitigation, China Three Gorges University, Yichang 443002, China.

College of Civil Engineering and Architecture, China Three Gorges University, Yichang 443002, China.

出版信息

Materials (Basel). 2025 Jun 9;18(12):2703. doi: 10.3390/ma18122703.

Abstract

This study aimed to improve the mechanical properties and water resistance of calcined gypsum from phosphogypsum (CGP) by incorporating organic additives and inorganic admixtures. The effects of the dosage of these additives-including kaolin, nano-SiO, polycarboxylic acid superplasticizer, and sodium methyl silicate-on the properties (flexural strength, compressive strength, water absorption, and softening coefficient) of CGP composites (CGPCs) were investigated. A high water resistance of the CGPCs was achieved using nano-SiO and sodium methyl silicate modification, superplasticizer addition, and the partial replacement of gypsum with mineral admixtures. The results showed that the flexural and compressive strength of the composites hit 4.61 MPa and 19.54 MPa, respectively, while the softening coefficient was 0.70 and the water absorption rate was 19.85%. Microstructural investigation confirmed that the combination of nano-SiO and kaolin led to the formation of calcium silicate hydrate. Additionally, the superplasticizer played a crucial role in reducing the water-to-cement ratio, while unhydrated mineral particles had a filling effect, thereby enhancing the density of the hardened paste. The sodium methyl silicate formed a hydrophobic film on the surface of the hardened paste, increasing the contact angle to 109.01° and improving the water resistance of the CGPCs.

摘要

本研究旨在通过掺入有机添加剂和无机掺合料来改善磷石膏煅烧石膏(CGP)的力学性能和耐水性。研究了包括高岭土、纳米二氧化硅、聚羧酸高效减水剂和硅酸钠在内的这些添加剂的用量对CGP复合材料(CGPCs)性能(抗折强度、抗压强度、吸水率和软化系数)的影响。通过纳米二氧化硅和硅酸钠改性、添加高效减水剂以及用矿物掺合料部分替代石膏,实现了CGPCs的高耐水性。结果表明,复合材料的抗折强度和抗压强度分别达到4.61MPa和19.54MPa,软化系数为0.70,吸水率为19.85%。微观结构研究证实,纳米二氧化硅和高岭土的组合导致了硅酸钙水合物的形成。此外,高效减水剂在降低水灰比方面起着关键作用,而未水化的矿物颗粒具有填充作用,从而提高了硬化浆体的密度。硅酸钠在硬化浆体表面形成了疏水膜,使接触角增加到109.01°,提高了CGPCs的耐水性。

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