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Insights into the reinforcing mechanism for CO_2 atmosphere in the application process of steel slag ultra-fine powder

机译:钢渣超细粉末应用过程中CO_2氛围的增强机制见解

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摘要

In this paper, we discussed the influence of steel slag ultra-fine powder for CO2 sequestration including the influence of the experiment parameters on the CO2 sequestration ratio and the reinforcing mechanism for CO2 atmosphere in the application process of steel slag ultra-fine powder. In the process of steel slag ultra-fine powder for CO2 sequestration, the CO2 sequestration ratio and reaction rate were influenced by particle size, solid-to-liquid ratio, temperature, agitation rate and CO2 flow rate. The reaction rate was increased with the solid-to-liquid ratio, temperature and agitation rate increasing, but CO2 sequestration ratio was less obviously influence. It showed that the technology of steel slag ultra-fine powder effectively increased the CO2 sequestration ratio. The most effective composition of CO2 sequestration using steel slag ultra-fine powder was oxide and/or hydroxide of Ca and Mg. About contribution of CO2 sequestration ratio, the rate of carbonating reaction of Mg element was 20.86%, and that of Ca element was 59.80%. It was because there was still much Mg and Ca elements without entering into the carbonating reaction, the reason of which was non-activated Mg and Ca failing to involve in the carbonating reaction. Moreover, part amount of activated Mg and Ca involving in the carbonating reaction generated CaCO3 and MgCO3 covering on the steel slag powder, led to remaining amount of activated Mg and Ca cannot involving in the carbonating reaction. Moreover, the ultrafine steel slag-doping could effectively increase the density and compressive strength of block under CO2 curing. (C) 2019 Published by Elsevier Ltd.
机译:本文讨论了钢渣超细粉末对CO2封存的影响,包括实验参数对钢渣超细粉末施加过程中CO2螯合率的影响和CO2气氛的增强机理。在用于CO2封存的钢渣超细粉末的过程中,CO 2螯合比和反应速率受粒径,固体比,温度,搅拌速率和CO 2流速的影响。随着固体与液体比,温度和搅拌速率的增加,反应速率增加,但CO 2螯合率较小明显影响。结果表明,钢渣超细粉末的技术有效地提高了CO2螯合率。使用钢渣超细粉末的CO 2封存最有效的CO 2封存组成是Ca和Mg的氧化物和/或氢氧化物。关于CO2螯合率的贡献,Mg元素的碳酸化反应速率为20.86%,Ca元素的速率为59.80%。这是因为仍有多种Mg和Ca元素而不进入碳酸化反应,其原因是未激活的Mg和Ca未涉及碳酸化反应。此外,涉及碳酸化反应的活化的Mg和Ca的部分量为碳酸化反应产生的CaCO 3和MgCO 3覆盖在钢渣粉上,导致剩余的活化Mg和Ca不能涉及碳酸化反应。此外,超细钢浸渍型可以有效地提高CO 2固化下嵌段的密度和抗压强度。 (c)2019年由elestvier有限公司发布

著录项

  • 来源
    《Construction and Building Materials》 |2019年第10期|437-444|共8页
  • 作者单位

    Shanxi Univ State Environm Protect Key Lab Efficient Utilizat Inst Resources & Environm Engn Taiyuan 030006 Shanxi Peoples R China|Shanxi Univ Collaborat Innovat Ctr High Value Added Utilizat Taiyuan 030006 Shanxi Peoples R China;

    Shanxi Univ State Environm Protect Key Lab Efficient Utilizat Inst Resources & Environm Engn Taiyuan 030006 Shanxi Peoples R China|Shanxi Univ Collaborat Innovat Ctr High Value Added Utilizat Taiyuan 030006 Shanxi Peoples R China;

    Shanxi Univ State Environm Protect Key Lab Efficient Utilizat Inst Resources & Environm Engn Taiyuan 030006 Shanxi Peoples R China;

    Shanxi Univ State Environm Protect Key Lab Efficient Utilizat Inst Resources & Environm Engn Taiyuan 030006 Shanxi Peoples R China|Shanxi Univ Collaborat Innovat Ctr High Value Added Utilizat Taiyuan 030006 Shanxi Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Steel slag ultra-fine powder; CO2 sequestration; Reinforcing; Density; Compressive strength;

    机译:钢渣超细粉;CO2封存;加强;密度;抗压强度;

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