Effect of Carbonation Curing on Mechanical Strength and Microstructure of Mortars Prepared with Steel Slag-Cement-MgO-CaO Blends

被引:0
作者
Zhang F. [1 ,2 ]
Mo L. [2 ]
Deng M. [2 ]
Cai Y. [1 ]
机构
[1] Nanjing Hydraulic Research Institute, Nanjing
[2] College of Materials Science and Engineering, Nanjing Tech University, Nanjing
来源
| 1600年 / Tongji University卷 / 20期
关键词
Carbonation; Compressive strength; Magnesium oxide; Microstructure; Steel slag;
D O I
10.3969/j.issn.1007-9629.2017.06.005
中图分类号
学科分类号
摘要
Steel slag powders were used as the main component of cementitious materials, and MgO, CaO and Portland cement were incorporated to prepare mortar specimens. The mortars were then exposed to CO2 curing to test the compressive strength and microstructure and investigate the mechanism of improving strength of carbonation curing. The results show that the compressive strengths of mortars increase significantly after the carbonation curing, by 3.9-6.8 times after only 1d of carbonation. Prolonging the carbonation curing time facilitate the carbonation reaction, and hence increases the degree of carbonation and enhances the strength gain of mortars. The incorporation of CaO and MgO components increases the compressive strengths of mortars, and the highest compressive strength can reach 71. 6MPa after 14d of carbonation, when 5%(by mass) CaO and 15%(by mass) MgO are incorporated. The treatment of CO2 curing decreases the total pore volume of mortar specimens due to the microstructure densification as a result of the formation of calcite CaCO3(calcium magnesium CaxMg1-xCO3) and aragonite CaCO3. © 2017, Editorial Department of Journal of Building Materials. All right reserved.
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页码:854 / 861
页数:7
相关论文
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  • [21] Mo L., Zhang F., Deng M., Mechanical performance and microstructure of the calcium carbonate binders produced by carbonating steel slag paste under CO<sub>2</sub> curing, Cement and Concrete Research, 88, pp. 217-226, (2016)
  • [22] Zhang F., Mo L., Deng M., Effect of carbonation curing on mechanical strength and volume stability of steel slag concrete, Journal of the Chinese Ceramic Society, 44, 5, pp. 640-646, (2016)
  • [23] Mo L., Deng M., Tang M., Effects of calcination condition on expansion property of MgO-type expansive agent used incement-based materials, Cement and Concrete Research, 40, 3, pp. 437-446, (2010)
  • [24] Zhang F., Mo L., Deng M., Mechanical strength and microstructure of mortars prepared with MgO-CaO-fly ash-Portland cement blends after accelerated carbonation, Journal of the Chinese Ceramic Society, 43, 8, pp. 1032-1039, (2015)
  • [25] Mo L., Panesar D.K., Effects of accelerated carbonation on the microstructure of Portland cement pastes containing reactive MgO, Cement and Concrete Research, 42, 6, pp. 769-777, (2012)
  • [26] Panesar D.K., Mo L., Properties of binary and ternary reactive MgO mortar blends subjected to CO<sub>2</sub> curing, Cement and Concrete Composites, 38, pp. 40-49, (2013)