用硅灰替代水泥的可持续透水混凝土:综述

Navaratnarajah Sathiparan, Daniel Niruban Subramaniam
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摘要

透水混凝土是一种独特的混凝土,具有高孔隙率,允许水通过。这种特性使其有利于各种应用,如雨水管理、地下水回灌和减少热岛效应。然而,由于其混合设计,透水混凝土通常比传统混凝土需要更多的水泥。增加的水泥含量可以用硅灰等辅助胶凝材料部分替代。这篇综述文章研究了硅灰对透水混凝土性能的影响,包括力学性能(抗压强度、劈裂拉伸强度和抗折强度)、耐久性(抗冻融循环和耐磨性)和环境方面。文章强调,硅灰可以改善透水混凝土的力学性能和耐久性,但要达到最佳替代水平。研究发现,硅灰对水泥的最佳替代水平为 10%-15%。超过这一水平,透水混凝土的性能就会下降。与传统透水混凝土相比,含有硅灰的透水混凝土显示出更高的耐磨性和抗冻融性。此外,在透水混凝土中加入硅灰还能减少水泥用量,从而降低对环境的影响,实现更可持续的建筑实践。文章还分析了使用硅灰的局限性,例如由于硅灰颗粒细小,可能会降低工作性。总之,综述表明,硅灰是一种很有前途的胶凝补充材料,可提高透水混凝土的性能和可持续性。
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Sustainable Pervious Concrete with Silica Fume as Cement Replacement: A Review
Pervious concrete is a unique type of concrete with high porosity that allows water to pass through. This characteristic makes it beneficial for various applications, such as stormwater management, groundwater recharge, and reduced heat island effect. However, pervious concrete typically requires more cement than conventional concrete because of its mix design. This increased cement content can be partially replaced with supplementary cementitious materials, such as silica fume. This review article investigates the influence of silica fume on the properties of pervious concrete, including the mechanical properties (compressive strength, splitting tensile strength, and flexural strength), durability (resistance to freeze–thaw cycles and abrasion), and environmental aspects. The article highlights that silica fume can improve the mechanical properties and durability of pervious concrete up to an optimal replacement level. The optimum replacement level of cement with silica fume was found to be 10%–15%. Beyond this level, the performance of pervious concrete decreases. The pervious concrete containing silica fume showed superior abrasion resistance and improved freeze–thaw resistance compared to conventional pervious concrete. In addition, incorporating silica fume in pervious concrete reduces cement usage, leading to a lower environmental impact and more sustainable construction practices. The article also analyzes the limitations of using silica fume, such as the potential for reduced workability because of its fine particle size. Overall, the review suggests that silica fume is a promising supplementary cementitious material for enhancing the performance and sustainability of pervious concrete.
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