Abstract

Nanomaterials have been widely used in cement-based materials. Graphene has excellent properties for improving the durability of cement-based materials. Given its high production budget, it has limited its wide potential for application in the field of engineering. Hence, it is very meaningful to obtain low cost nanoplatelets from natural materials that can replace graphene nanoplatelets (GNPs) The purpose of this paper is to improve the resistance to chloride ion penetration by optimizing the pore structure of cement-based materials, and another point is to reduce investment costs. The results illustrated that low cost CaCO3 nanoplatelets (CCNPs) were successfully obtained under alkali treatment of seashell powder, and the chloride ion permeability of cement-based materials significantly decreased by 15.7% compared to that of the control samples when CCNPs were incorporated. Furthermore, the compressive strength of cement pastes at the age of 28 days increased by 37.9% than that of the plain sample. Improvement of performance of cement-based materials can be partly attributed to the refinement of the pore structure. In addition, AFM was employed to characterize the nanoplatelet thickness of CCNPs and the pore structures of the cement-based composites were analyzed by MIP, respectively. CCNPs composite cement best performance could lay the foundation for further study of the durability of cement-based materials and the application of decontaminated seashells.

Highlights

  • The progress of nanotechnology has brought new insights to improve the properties of cement-based materials with the aid of nanomaterials in recent years [1,2,3]

  • The durability exists an important performance of cement-based material

  • In the field of marine engineering, there are many factors that affect the durability of cement-based materials, including alkali-aggregate reaction, acid erosion, alkali erosion, and chloride ion penetration etc

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Summary

Introduction

Nanomaterials [4] are divided into three categories according to dimension These three categories are 0D material, nano-silica (nano-SiO2 ) [5,6,7,8,9], nano-aluminium oxide (nano-Al2 O3 ) [10,11,12,13,14], nano-titanium oxide (nano-TiO2 ) [15,16,17,18]; 1D material, carbon nanotubes (CNTs) [19,20,21,22,23,24,25,26]; and 2D material, graphene nanoplatelets (GNPs) [27,28,29,30,31,32,33], etc. In the field of marine engineering, there are many factors that affect the durability of cement-based materials, including alkali-aggregate reaction, acid erosion, alkali erosion, and chloride ion penetration etc. The penetration of chloride ions will cause serious and irreversible damage to cement-based materials

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