Impact of Waste Iron Slag on Mechanical and Durability Properties of Concrete

IF 1 Q4 ENGINEERING, CIVIL
K. Jain, D. Sharma, R. Choudhary, S. Bhargava
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引用次数: 3

Abstract

Waste management is of great concern in today’s world. Every year, an enormous amount of solid waste is generated from different industrial activities, especially the waste which is produced by iron industries in a particular form of slag. The major issue of emission of carbon dioxide (CO2) from cement industries is a serious problem for the earth's environment and the surrounding area. Thus, in this study, the waste iron slag obtained from nearby iron industries was used as a partial substitute for cement. The cement was replaced with iron slag (IS) at the substitution levels of 7.5%, 15%, 22.5%, 30% and 37.5% by weight of cement. The doses of superplasticizer for every mix were taken based on the essential workability requirements for the reinforcedconcrete work. Performance of control and blended mixes was evaluated by workability evaluation, compressive strength test, flexural strength test, water permeability test, water absorption evaluation, rapid chloride penetration test (RCPT) and carbonation test. Scanning electron microscopy (SEM), X-ray diffraction (XRD) technique and thermogravimetric analysis (TGA) technique were used to assess the micro-structural changes and to evaluate the chemistry of the blended mixes. The results obtained from this study were encouraging in terms of compressive and flexural strengths. The maximum compressive and flexural strengths were recorded at a 22.5% replacement level of slag. The results obtained at 30% replacement were also better compared to the control mix. The resistance of slag-made concrete mixes against adverse conditions; i.e., CO2 penetration, chloride penetration and water penetration was far better than that of conventional ones. The results obtained from TGA indicated that the productivity of calcium silicate gel of slag concrete is better than that of control concrete. KEYWORDS: Concrete, Slag, Carbonization, RCPT, XRD, TGA, SEM.
废铁渣对混凝土力学性能和耐久性的影响
废物管理在当今世界备受关注。每年,不同的工业活动都会产生大量的固体废物,尤其是铁工业以特定形式产生的废物。水泥行业的二氧化碳排放是地球环境和周边地区面临的一个严重问题。因此,在本研究中,从附近的铁工业中获得的废铁渣被用作水泥的部分替代品。以水泥重量的7.5%、15%、22.5%、30%和37.5%的铁矿渣(IS)替代水泥。每种混合物的减水剂剂量是根据钢筋混凝土工程的基本工作性要求确定的。通过和易性评价、抗压强度试验、抗弯强度试验、透水性试验、吸水性评价、氯离子快速渗透试验(RCPT)和碳酸化试验来评估对照和混合料的性能。使用扫描电子显微镜(SEM)、X射线衍射(XRD)技术和热重分析(TGA)技术来评估混合料的微观结构变化和化学性质。从这项研究中获得的结果在抗压强度和弯曲强度方面是令人鼓舞的。最大抗压强度和弯曲强度记录在22.5%的矿渣替代水平下。与对照混合物相比,在30%置换时获得的结果也更好。矿渣混凝土混合物对不利条件的抵抗力;即CO2渗透性、氯化物渗透性和水渗透性远优于传统渗透性。TGA结果表明,矿渣混凝土硅酸钙凝胶的生产率高于对照混凝土。关键词:混凝土,矿渣,碳化,RCPT,XRD,TGA,SEM。
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来源期刊
CiteScore
2.10
自引率
27.30%
发文量
0
期刊介绍: I am very pleased and honored to be appointed as an Editor-in-Chief of the Jordan Journal of Civil Engineering which enjoys an excellent reputation, both locally and internationally. Since development is the essence of life, I hope to continue developing this distinguished Journal, building on the effort of all the Editors-in-Chief and Editorial Board Members as well as Advisory Boards of the Journal since its establishment about a decade ago. I will do my best to focus on publishing high quality diverse articles and move forward in the indexing issue of the Journal.
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