基于GGBS和水合石灰的潜在可持续无水泥石灰作为标准化规定混凝土应用的替代方案

Ash Ahmed
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引用次数: 1

摘要

混凝土的活性成分波特兰水泥的一个根本问题是它的能源密集型制造过程,这导致水泥行业的二氧化碳排放量占全球二氧化碳排放量的10%。为了减少混凝土中二氧化碳的含量,硅酸盐水泥(PC)的含量已被水合石灰(HL)和磨碎的高炉矿渣(GGBS或SL)完全取代。GGBS以10%的增量代替水合石灰,直至100% GGBS。对试件进行抗压、抗弯强度和密度测试,研究试件在养护7、28和91天龄期的力学和物理性能,并进行养护91天龄期的抗弯试验。采用1:1:3、1:2:3、1:1:2、2:1四种标准配比进行比较。在91天养护龄期试验了两种养护条件,即空气养护和水养护。结果表明,所有混合料的最佳配比为1:1:2。最佳配比为HL: 1:1:2 SL80%,水固化大于25MPa。纵观不同的比例,可以得出GGBS的最佳替代率在80-90%之间;还可以注意到,当GGBS含量为100%时,抗压强度和抗折强度显著下降,这表明水合石灰的存在是强度增加的催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Potential Sustainable Cement Free Limecrete Based on GGBS & Hydrated Lime as an Alternative for Standardised Prescribed Concrete Applications
A fundamental issue with the active ingredient of concrete, Portland cement, is its energy-intensive manufacturing process, which has led to the cement industry emitting up to 10% of global CO2 levels. To facilitate the reduction in the embodied CO 2 of concrete, the Portland Cement (PC) content has been entirely replaced volumetrically with Hydrated Lime (HL) and ground granulated blast furnace slag (GGBS or SL). GGBS was used to replace hydrated lime content in 10% increments up to 100% GGBS. Analysis of compressive and flexural strength and density testing was performed on samples to investigate the mechanical and physical properties at 7, 28 and 91-day curing ages, whilst flexural testing was conducted at 91 days curing age. Four standard mix ratios, 1:1:3, 1:2:3, 1:1:2 and 2:1 was made for comparison. Two curing conditions were tested at 91-day curing age, these being air-cured and water curing. Results have shown the optimum mix ratio to be 1:1:2 for all mixes. The optimum mix being HL 1:1:2 SL80%, water cured exceeding 25MPa. Throughout the different ratios, it can be concluded that the optimum replacement of GGBS lies between 80-90%; it can also be noted that 100% GGBS content sees a significant drop in compressive and flexural strength, indicating the presence of hydrated lime to be a catalyst for strength gain.
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