The Impact of using Rice Husks Ash, Seawater and Sea Sand on Corrosion of Reinforcing Bars in Concrete

D. Patah, A. Dasar
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Abstract

The global increase in infrastructure development has led to potential shortages of river sand and tap water, particularly in coastal areas, posing challenges for concrete production. To address this issue, numerous studies have been conducted on the use of seawater and sea sand as sustainable alternatives. Rice Husks Ash (RHA), a fine powder derived from the combustion process of agricultural husks, has emerged as potential eco-friendly solution due to its excellent pozzolanic properties, making it a viable candidate for partially replacing cement in concrete. This substitution enhances concrete durability and strength as well as reduces the risk of corrosion in harsh environmental conditions. Therefore, this study examined impact of seawater for mixing, sea sand and substitution ratio of RHA on corrosion of reinforcing bars. The specimen used in the experiment had a thickness of 150 mm, with rectangular areas of 400 x 400 mm and plain steel bars with a diameter of 10 mm. Corrosion levels and concrete quality were evaluated using the half-cell potential (HCP) method and hammer test, respectively. The results showed that all specimens mixed with seawater, river sand, and different substitution ratios of RHA (0%, 5%, 10%, and 15%) exhibited corrosion, as confirmed by the HCP method. However, only the specimen mixed with tap water, sea sand, and an addition of 5% RHA demonstrated effective resistance to corrosion, comparable to normal concrete.
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使用稻壳灰、海水和海砂对混凝土中钢筋锈蚀的影响
随着全球基础设施建设的发展,河沙和自来水可能会出现短缺,尤其是在沿海地区,这给混凝土生产带来了挑战。为解决这一问题,人们对使用海水和海砂作为可持续替代品进行了大量研究。稻壳灰(RHA)是一种从农作物稻壳燃烧过程中提炼出来的细粉,因其卓越的水青石特性,已成为潜在的生态友好型解决方案,使其成为部分替代水泥的混凝土的可行候选材料。这种替代品可提高混凝土的耐久性和强度,并降低在恶劣环境条件下的腐蚀风险。因此,本研究考察了海水混合、海砂和 RHA 替代率对钢筋锈蚀的影响。实验中使用的试样厚度为 150 毫米,矩形面积为 400 x 400 毫米,普通钢筋直径为 10 毫米。腐蚀程度和混凝土质量分别通过半电池电位(HCP)法和锤击试验进行了评估。结果表明,所有掺入海水、河沙和不同 RHA 替代率(0%、5%、10% 和 15%)的试样都出现了腐蚀,这一点已被 HCP 法所证实。然而,只有掺入自来水、海砂和 5% RHA 的试样才表现出有效的抗腐蚀能力,与普通混凝土相当。
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20
审稿时长
15 weeks
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