Effects of Four Nanomaterials on the Performance and Microstructure of Coal Gangue-Based Geopolymers
Zhenhua Wang, Wei Lan, Zhiwen Jia, Tiantian Jiang, Xiqi Liu, Gang Wang, Minghua Hu

TL;DR
This study explores how adding four nanomaterials to coal gangue-based geopolymers affects their performance and structure, aiming to improve their use in construction.
Contribution
The paper introduces the comparative effects of four specific nanomaterials on the properties of coal gangue-based geopolymers.
Findings
Graphene oxide nanosheets significantly reduced the fluidity of the geopolymer slurry.
Nano-SiO2 improved compressive strength and shortened setting time at an optimal dosage.
Nano-CaCO3 reduced porosity and water absorption when added at an appropriate dosage.
Abstract
This study aimed to enhance the slurry performance and durability of coal gangue-based geopolymers (CGGP) by incorporating four types of nanomaterials: nano-SiO2 (NS), graphene oxide (GO) nanosheets, nano-CaCo3 (NC), and nano-Al2O3 (NA). The microstructure and underlying mechanisms were thoroughly investigated using scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS). The results indicate that the type and dosage of nanomaterials significantly influence the rheological properties, strength development, setting time, porosity, and water absorption of CGGP. Specifically, the addition of GO nanosheets drastically reduced fluidity, with a 73.33% decrease in flowability compared to the control group at a 2.0 wt.% dosage. Nano-SiO2 exhibited the most pronounced effect in improving compressive strength and shortening the setting time, with the optimal accelerating…
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Taxonomy
TopicsCoal Combustion and Slurry Processing · Tailings Management and Properties · Grouting, Rheology, and Soil Mechanics
