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Mechanical and Durability Properties of Portland Limestone Cement (PLC) Incorporated with Nano Calcium Carbonate (CaCO

机译:波特兰石灰石水泥(PLC)的机械和耐久性其含有纳米碳酸钙(Caco

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摘要

Despite lower environmental impacts, the use of Portland Limestone Cement (PLC) concrete has been limited due to its reduced later age strength and compromised durability properties. This research evaluates the effects of nano calcium carbonate (CaCO3) on the performance of PLC concrete. The study follows a series of experiments on the fresh, hardened, and durability properties of PLC concrete with different replacement rates of nano CaCO3. Incorporation of 1% nano CaCO3 into PLC concrete provided the optimal performance, where the 56 days compressive strength was increased by approximately 7%, and the permeability was reduced by approximately 13% as compared to Ordinary Portland Cement (OPC) concrete. Further, improvements were observed in other durability aspects such as Alkali-Silica Reaction (ASR) and scaling resistance. Additionally, nano CaCO3 has the potential to be produced within the cement plant while utilizing the CO2 emissions from the cement industries. The integration of nanotechnology in PLC concrete thus will help produce a more environment-friendly concrete with enhanced performance. More in-depth study on commercial production of nano CaCO3 thus has the potential to offer a new generation cement—sustainable, economical, and durable cement—leading towards green infrastructure and global environmental sustainability.
机译:尽管环境影响较低,但由于其减少后的年龄强度和耐久性特性,因此由于其降低而受到限制,因此使用波特兰石灰石水泥(PLC)混凝土。该研究评估了纳米碳酸钙(CaCO3)对PLC混凝土性能的影响。该研究遵循了一系列关于PLC混凝土的新鲜,硬化和耐久性的实验,具有不同纳米Caco3的不同替代率。将1%纳米CaCO3掺入PLC混凝土,提供了最佳性能,其中56天的抗压强度增加约7%,与普通波特兰水泥(OPC)混凝土相比,渗透率降低约13%。此外,在其他耐久性方面(例如碱二氧化硅反应(AsR)和缩放抗性,观察到改进。另外,纳米CaCO3具有在水泥厂内产生的潜力,同时利用水泥行业的二氧化碳排放。因此,纳米技术在PLC混凝土中的集成将有助于产生更具环保的混凝土,具有增强的性能。因此,对纳米Caco3商业生产的更深入研究有可能提供新一代水泥可持续,经济和耐用的水泥,以实现绿色基础设施和全球环境可持续性。

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