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首页> 外文期刊>Journal of Cleaner Production >Investigation of carbon-capture property of foam concrete using stainless steel AOD slag
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Investigation of carbon-capture property of foam concrete using stainless steel AOD slag

机译:使用不锈钢AOD炉渣的泡沫混凝土碳捕获性能研究

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This study investigated the effect of CO2 curing on the physical properties of foam concrete with porous structures using stainless steel-argon oxygen decarburization (ST-AOD) slag and fly ash. Foam concrete with higher porosity and more open pores allows more carbon dioxide to penetrate the matrix to improve carbon capture properties. Foam concrete was cured according to two methods: CO2 curing and normal curing. In the results of measuring the compressive strength, the specimens that used ST-AOD slag and fly ash all showed increase of strength by CO2 curing. Particularly, the specimens, in which 30% of OPC was replaced with the ST-AOD slag, demonstrated that the strength increase by CO2 curing was higher than that of Plain. The SEM observation showed that the hydrates produced by carbonation of ST-AOD slag were mainly calcite. The Brunauer-Emmett-Teller (BET) analysis results showed that the calcite produced by CO2 curing usually filled the micro-pores of less than 10 nm diameter. TG-DTG revealed that the CO2 uptake and calcite content were increased by mixing ST-AOD slag and fly ash. From the experimental results, it can be concluded that CO2 uptake of foam concrete is higher than that of normal concrete. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究研究了CO2固化对使用不锈钢 - 氩氧脱碳(ST-AOD)炉渣和粉煤灰具有多孔结构的泡沫混凝土物理性质的影响。具有较高孔隙度和更开放的孔的泡沫混凝土允许更多的二氧化碳渗透基质以改善碳捕获性能。根据两种方法固化泡沫混凝土:CO 2固化和正常固化。在测量抗压强度的结果中,使用ST-AOD炉渣和粉煤灰的样品通过CO 2固化显示强度的增加。特别是,其中30%OPC被ST-AOD炉渣代替样本,证明了CO2固化的强度高于平原的强度。 SEM观察表明,通过ST-AOD渣碳化产生的水合物主要是方解石。 Brunauer-Emmett-Teller(BET)分析结果表明,CO2固化生产的方解石通常填充小于10nm的微孔。 TG-DTG通过混合ST-AOD炉渣和粉煤灰,增加了CO2吸收和方解石含量。从实验结果中,可以得出结论,CO2泡沫混凝土的吸收高于正常混凝土的吸收。 (c)2020 elestvier有限公司保留所有权利。

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