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温度和相对湿度对CO2养护钢渣制品性能的影响

Effect of Temperature and Relative Humidity on Performance of CO2 Curing Steel Slag Products

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【作者】 李善武樊展霖刘剑辉陈正史才军

【Author】 LI Shanwu;FAN Zhanlin;LIU Jianhui;CHEN Zheng;SHI Caijun;College of Civil Engineering and Architecture, Guangxi University;College of Civil Engineering,Hunan University;

【通讯作者】 刘剑辉;

【机构】 广西大学土木建筑工程学院湖南大学土木工程学院

【摘要】 通过响应面法(RSM)研究了温度和相对湿度对CO2养护钢渣制品(以下简称钢渣制品)性能的影响.结果表明:温度和相对湿度的相互作用对钢渣制品碳化过程的影响在不同碳化阶段有所不同.CO2养护初期,CO2的扩散是关键因素,但该阶段碳化不充分;CO2养护后期,钢渣制品的抗压强度和碳化程度受Ca2+和CO2溶解度的影响较大.当相对湿度低于30%时,尽管CO2扩散较快,但其溶解度低,限制了CO32-与Ca2+的反应,导致钢渣制品无法达到理想的强度和碳化水平.将温度和相对湿度分别提至70℃和64%,可以促进更多纳米级CaCO3形成,填充了40~180 nm孔隙,有效减小了钢渣的孔径和孔体积,从而改善了材料性能.

【Abstract】 The response surface methodology (RSM) was employed to investigate the effects of temperature and relative humidity on the performance of steel slag products under CO2 curing (hereafter referred to as steel slag products).The results show that the interplay between temperature and relative humidity variably influences the carbonation process at different stages.During the initial stage of carbonation,CO2 diffusion emerges as a pivotal factor,albeit with incomplete carbonation.In the later stages,compressive strength and carbonation degree are predominantly affected by the solubility of Ca2+and CO2.Notably,when relative humidity falls below 30%,despite rapid CO2 diffusion,the low solubility hampers the reaction between CO32-and Ca2+,preventing the attainment of desired strength and carbonation levels.Increasing the temperature and relative humidity to 70℃and 64%,respectively,the formation of nanoscale calcium carbonate is fostered,significantly reducing pore size and volume in steel slag by filling voids ranging from 40 nm to 180 nm,thereby enhancing material properties.

【基金】 广西科技计划项目(2022AC21053)
  • 【文献出处】 建筑材料学报 ,Journal of Building Materials , 编辑部邮箱 ,2025年01期
  • 【分类号】X757;TU599
  • 【下载频次】94
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