不同废料对水泥砂浆抗碳化和氯离子侵蚀性能的影响

Q2 Engineering
N. Chousidis, G. Batis
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引用次数: 2

摘要

这项工作是对含有工业副产品和废料的增强水泥基砂浆腐蚀行为的广泛实验研究。特别是,石灰性(C级)飞灰、铁氧化皮和电解二氧化锰(E.M.D.)废物被用作砂浆生产中的添加剂。上述材料在没有任何预先处理或管理的情况下使用,并以水泥重量的10%代替混凝土中的水泥。在实验装置中,制备了加固迫击炮,并将其暴露在沿海地区12个月,而其中一些迫击炮则在盐雾舱中放置了60天。腐蚀监测通过电化学和质量损失测量进行,同时还估计了砂浆的氯化物含量、孔隙率、碳酸化和矿物学。结果表明,与传统砂浆相比,复合材料的耐久性和抗氯离子渗透性在后期有了很大的发展。同时,还观察到它们的化学组成和细度,控制了CO2向孔隙系统的扩散,并导致复合砂浆的碳化增加。这项工作的挑战是生产具有高抗氯化物和二氧化碳渗透性的环保复合材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Different Waste Materials on Resistance of Cement Mortars against Carbonation and Chloride Ingress
This work is an extensive experimental study on the corrosion behavior of reinforced cementitious mortars containing industrial byproducts and waste materials. In particular, calcareous (C-class) fly ashes, iron mill scale and Electrolytic Manganese Dioxide (E.M.D.) waste were used as additives in mortars production. The abovementioned materials were used without any prior treatment or management and replaced the cement in concrete mixing by 10% wt. of cement weight. For the experimental set-up, reinforced mortars were prepared and exposed to coastal area for 12 months, while some of them were remained in a salt spray cabin for 60 days. The corrosion monitoring was performed by electrochemical and mass loss measurements, while chloride content, porosity, carbonation and mineralogy of mortars were also estimated. The results indicate, that there is a development in durability and chloride penetration resistance of composites comparing with the conventional mortars at late ages. At the same time, it was also observed that their chemical composition and fineness, control the diffusion of CO2 into the pore system and lead to increased carbonation of composite mortars. The challenge of this work is the production of eco-friendly composites with high chloride and carbon dioxide penetration resistance.
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来源期刊
CiteScore
1.20
自引率
0.00%
发文量
21
审稿时长
12 weeks
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