锌工业废料对三元掺合料混凝土力学性能和微观结构性能的影响

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摘要

基础设施的快速发展导致了工业废物的积累和自然资源的枯竭,从而引发了对可持续解决方案的需求。在提炼锌时,会产生大量不可生物降解的材料,称为 "jarosite(JS)",需要采用适当的环保处置技术。本研究调查了波特兰水泥的三元掺合物,其中部分替代了 20% 的磨细高炉矿渣和(5 - 25% 的)jarosite 作为粘合剂材料,以开发一种可持续的混凝土拌合物。为了了解焦石棉-GGBS 混合物在混凝土中的应用效果,实验研究对三元混合混凝土的机械性能进行了调查。此外,还使用了 SEM 和 XRD 分析来观察开发的混凝土的微观结构和化学相。从实验研究中可以看出,在所有混合比例的混凝土中掺入醋酸纤维-GGBS 可提高强度性能。微观结构研究表明,空隙减少,形成了足够的 CSH 凝胶,从而证明了力学性能的提高。在混凝土混合物中替代 10%的焦石棉时,抗压强度最大提高了 50.93%。总体研究结果让人们深入了解了 GGBS 和焦石棉混合混凝土的功能,以及焦石棉作为一种可持续、可重复使用的工业废料的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of zinc industrial waste on the mechanical and microstructural properties of the ternary blended concrete
The rapid growth of infrastructure leads to industrial waste accumulation and natural resource depletion, raising the need for sustainable solutions. When zinc is refined, a significant amount of non-biodegradable material called jarosite (JS) is generated, requiring proper environmentally friendly disposal techniques. The present study investigates ternary blended of Portland cement with partial replacement of 20% ground granulated blast furnace slag and jarosite at (5 – 25%) as a binder material to develop a sustainable concrete mix. To comprehend the effectiveness of jarosite-GGBS blends in concrete experimental research is performed to investigate the mechanical properties of ternary blended concrete. Additionally, SEM and XRD analysis were used to observe the microstructure and chemical phases of the developed concrete. From the experimental investigations, it is perceived that the incorporation of jarosite-GGBS blended concrete provided an increase in strength properties for all the mix proportions. The microstructure study shows a decrease in voids and the formation of sufficient CSH gel, justifying improved mechanical properties. The maximum increase in compressive strength of 50.93% is observed for the 10% replacement of the level of jarosite in the concrete mix. The overall research findings provide insight into the functionality of GGBS and jarosite blended concrete and the potential of jarosite as a sustainable, reusable industrial waste material.
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