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循环经济中的可持续LC3混凝土:硅灰、偏高岭土、纳米二氧化硅和机制砂混合混凝土的力学、微观结构及耐久性特性评估

Sustainable LC3 Concrete in the Circular Economy: Assessment of Mechanical, Microstructural, and Durability Characteristics with Surkhi, Metakaolin, Nano-Silica, and M-Sand Blended Concrete.

作者信息

Rath Badrinarayan, T R Praveenkumar, Dhami Kavindra Singh, Paramasivam Prabhu, Yusuf Mohamed

机构信息

Department of Civil Engineering Graphic Era Deemed to be University Dehradun Uttarakhand 248002 India.

Department of Research and Innovation Saveetha School of Engineering, SIMATS Chennai Tamil Nadu 602105 India.

出版信息

Glob Chall. 2025 Apr 10;9(5):2500026. doi: 10.1002/gch2.202500026. eCollection 2025 May.

Abstract

Researchers are increasingly focused on eco-friendly concrete with reduced carbon footprints. Among sustainable options, Limestone Calcined Clay Cement (LC3) concrete offers enhanced strength and durability with lower greenhouse gas emissions. This study evaluates the mechanical, microstructural, and durability characteristics of LC3 concrete modified with surkhi and nano-silica as cementitious materials, replacing metakaolin and gypsum. Surkhi and nano-silica are varied from 0%-40% and 0%-4%, respectively, while fine aggregate is completely replaced with M-sand to improve packing density. Ten M30-grade concrete mixes are analyzed after 28 and 90 days of curing. By incorporating surkhi and nano-silica as partial replacements for metakaolin and gypsum in LC3 concrete, the research investigates potential improvements in strength, durability, and microstructural integrity of the concrete and provides lower greenhouse gas emissions compared to traditional Portland cement. Results revealed that surkhi and nano-silica significantly improved strength and microstructure, with surkhi optimally limited to 30%. M-sand proved effective in enhancing durability against weathering. These findings position modified LC3 concrete as a sustainable alternative, offering improved performance and advancing its potential within the circular economy framework.

摘要

研究人员越来越关注碳足迹更低的环保型混凝土。在可持续选择中,石灰石煅烧粘土水泥(LC3)混凝土在降低温室气体排放的同时,具有更高的强度和耐久性。本研究评估了用苏尔基和纳米二氧化硅作为胶凝材料改性的LC3混凝土的力学、微观结构和耐久性特性,取代偏高岭土和石膏。苏尔基和纳米二氧化硅的含量分别在0%-40%和0%-4%之间变化,同时细集料完全用机制砂替代以提高堆积密度。在养护28天和90天后,对10种M30级混凝土配合比进行了分析。通过在LC3混凝土中掺入苏尔基和纳米二氧化硅作为偏高岭土和石膏的部分替代品,该研究调查了混凝土在强度、耐久性和微观结构完整性方面的潜在改善,并与传统波特兰水泥相比降低了温室气体排放。结果表明,苏尔基和纳米二氧化硅显著提高了强度和微观结构,苏尔基的最佳用量限制在30%。机制砂被证明在提高抗风化耐久性方面有效。这些发现将改性LC3混凝土定位为一种可持续的替代品,具有更好的性能,并在循环经济框架内提升了其潜力。

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