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基于分子动力学水分和离子在水化硅酸钙纳米孔道中的传输特性研究

李登科 赵铁军 卢世伟 宋佳霖 魏居勇 刘婷斐 吕秋臻 孙云志

硅酸盐通报2017,Vol.36Issue(8):2560-2564,2588,6.
硅酸盐通报2017,Vol.36Issue(8):2560-2564,2588,6.

基于分子动力学水分和离子在水化硅酸钙纳米孔道中的传输特性研究

Transport Characteristics of Water and Ions in Nano Channels of Calcium Silicate Hydrate Based on Molecular Dynamics

李登科 1赵铁军 1卢世伟 1宋佳霖 1魏居勇 1刘婷斐 1吕秋臻 1孙云志1

作者信息

  • 1. 青岛理工大学土木工程学院,青岛 266033
  • 折叠

摘要

Abstract

Calcium silicate hydrate (C-S-H) gel is the most basic binder phase in cement hydration products.The transport of water and ions in gel pores fundamentally determines the service life of the cement concrete materials.Molecular dynamics method is used to study the transport process of water molecules, chloride ions and sodium ions in hydrated calcium silicate gel pores of 1 nm, 2 nm, 3 nm and 4 nm.Based on the analysis of radial distribution function and mean square displacement, it is found that the molecular structure and dynamics characteristics of the ions and water are different from those of the capillary water.The water molecules order arrangement, ions adsorption at the interface and diffusion rate decreases sharply.These characteristics of the structure and dynamics of molecules are because that non bridging oxygen at the silicate chains located at the surface of C-S-H can form stable hydrogen bonds with water molecules, and sodium ions can form Na-O chemical bonds.Meanwhile, calcium ions in the surface can also form CaCl2 clusters with chloride ions.In addition, with the diameter increasing, the diffusion coefficient of ions and water molecules gradually increases from 0.15×10-9 m2/s, 0.7×10-9 m2/s to 1.3×10-9 m2/s, 3×10-9 m2/s, which is very close to the value of capillary water measured by experiment.On the nano scale, pore size constraint and interfacial chemical bonding are the key factors in determining ions and water molecules transport.

关键词

水化硅酸钙/分子动力学/扩散系数/径向分布函数

Key words

calcium silicate hydrate/molecular dynamics/diffusion coefficient/radial distribution function

分类

建筑与水利

引用本文复制引用

李登科,赵铁军,卢世伟,宋佳霖,魏居勇,刘婷斐,吕秋臻,孙云志..基于分子动力学水分和离子在水化硅酸钙纳米孔道中的传输特性研究[J].硅酸盐通报,2017,36(8):2560-2564,2588,6.

基金项目

国家自然科学基金重点国际合作项目(51420105015) (51420105015)

国家重点基础研究发展计划(973计划)(2015CB65510) (973计划)

硅酸盐通报

OA北大核心CSCDCSTPCD

1001-1625

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