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首页> 外文期刊>Journal of Cleaner Production >Compressive strength and environmental impact of sustainable blended cement with high-dosage Limestone and Calcined Clay (LC2)
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Compressive strength and environmental impact of sustainable blended cement with high-dosage Limestone and Calcined Clay (LC2)

机译:可持续混合水泥与高剂量石灰岩和煅烧粘土(LC2)的抗压强度和环境影响

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Replacing half of the clinker by a blend of limestone powder and low-grade calcined clay (in 1:2 weight ratios) has been recently proposed as a new version of economical and green cement named Limestone -Calcined Clay (LC2) cement, also known as LC3. The LC2 blend emits much less carbon dioxide than traditional Portland clinker and has a sufficiently high cementing efficiency factor for maintaining compressive strength under high replacement levels. In this study, the feasibility of blending more than 50% of LC2 in cement was explored in order to achieve greener blended cement. Five LC2 replacement levels were studied, including 25%, 50%, 60%, 70% and 80% by weight of cement. Compressive strength of BS EN 196-1 standard mortar mixes at 3-360 days was evaluated, and the fresh property, hydration heat as well as environmental impact of the blended cement were investigated. The results showed that the blended cements with 50%, 60% and 70% LC2 achieved the compressive strength of 53.6 MPa, 43.9 MPa and 33.4 MPa at 28 days, respectively; thus they fulfill the 28-day strength requirements for 52.5N, 42.5N and 32.5N cements, respectively. The blended cements with 50-60% LC2 had a lower material cost index than Portland cement and blended cement with fly ash. In addition, blended cements with 50-60% LC2 showed lower embodied energy/carbon emission indices at the early age but higher at the later age as compared to blended cements with fly ash. In the context of the substantial contribution of Portland cement manufacture towards the climate crisis, these findings can help the efforts to reduce the carbon footprint in the construction industry. (C) 2020 Elsevier Ltd. All rights reserved.
机译:最近提出了用石灰石粉末和低级煅烧粘土(在1:2重量比中)的熟料中的一半是新版本的经济和绿色水泥,名为石灰石的新版本 - 钙化粘土(LC2)水泥,也已知作为LC3。 LC2混合物比传统的波特兰熟料发出多氧化碳,并且具有足够高的固井效率因子,用于在高替代水平下保持抗压强度。在这项研究中,探讨了在水泥中混合超过50%的LC2的可行性,以实现更环保的混合水泥。研究了五种LC2置换水平,包括25%,50%,60%,70%和80%重量水泥。 BS EN 196-1标准砂浆混合的抗压强度在3-360天时进行了评价,并研究了新鲜的性质,水合热以及共混水泥的环境影响。结果表明,50%,60%和70%LC2分别在28天内实现了50%,60%和70%LC2的混合水泥,分别达到53.6MPa,43.9MPa和33.4MPa;因此,它们分别满足了52.5N,42.5N和32.5N水泥的28天强度要求。具有50-60%LC2的混合水泥具有比波特兰水泥和粉煤灰混纺水泥的材料成本指数较低。此外,与50-60%LC2的混合水泥显示出在早期的体现/碳排放指数下降,但与粉煤灰混合的水泥相比,后期的后期更高。在波特兰水泥制造对气候危机的大量贡献的背景下,这些调查结果可以帮助减少建筑业碳足迹的努力。 (c)2020 elestvier有限公司保留所有权利。

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