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尾泥微粉-粉煤灰-水泥复合胶凝体系性能研究

李永清 倪勇军 李芳芳 郭伟龙 曹轩豪 关博文

硅酸盐通报2024,Vol.43Issue(1):236-245,10.
硅酸盐通报2024,Vol.43Issue(1):236-245,10.

尾泥微粉-粉煤灰-水泥复合胶凝体系性能研究

Properties of Tailings Powder-Fly Ash-Cement Composite Cementitious System

李永清 1倪勇军 2李芳芳 2郭伟龙 2曹轩豪 3关博文3

作者信息

  • 1. 青海省交控建设工程集团有限公司,西宁 430070
  • 2. 青海省果洛公路工程建设有限公司,西宁 430070
  • 3. 长安大学材料科学与工程学院,西安 710064
  • 折叠

摘要

Abstract

In order to explore the feasibility of the application of tailings powder in cement-based materials and improve the utilization rate of lithium tailings resources,the performance of tailings powder-fly ash-cement composite cementitious system was studied by using tailings powder produced in the process of lithium extraction and fly ash to partially replace cement.The results show that the flow performance of composite cementitious system can be improved by adding an appropriate amount of lithium tailings powder and fly ash.The early compressive strength of composite system is slightly reduced by adding lithium tailings powder and an appropriate amount of fly ash to partially replace cement,but it later strength is significantly increased.Compared with the control group,the 90 d compressive strength of experimental group with 5%(mass fraction)lithium tailings powder and 10%(mass fraction)fly ash increases by 9.75%,reaching 55.15 MPa.In the later stage of hydration,the composite activity effect and filling effect can be effectively exerted by mixing lithium tailings powder and fly ash,which can promote the formation of hydration products and fill them into macropores,increase the proportion of capillary micropores(<10 nm)in cement paste,so as to refine the pore structure of cement paste and improve the density of system.Macroscopically,the compressive strength increases.

关键词

尾泥微粉/粉煤灰/流动度/抗压强度/孔结构/水化进程

Key words

tailings powder/fly ash/fluidity/compressive strength/pore structure/hydration process

分类

化学化工

引用本文复制引用

李永清,倪勇军,李芳芳,郭伟龙,曹轩豪,关博文..尾泥微粉-粉煤灰-水泥复合胶凝体系性能研究[J].硅酸盐通报,2024,43(1):236-245,10.

基金项目

青海省重点研发与转化计划(2023-SF-123) (2023-SF-123)

硅酸盐通报

OA北大核心CSTPCD

1001-1625

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