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Utilization of Malaysia EAF slags for effective application in direct aqueous sequestration of carbon dioxide under ambient temperature

机译:利用马来西亚电弧炉炉渣在环境温度下有效地直接封存二氧化碳的有效应用

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摘要

Iron and steel industries are among the contributors of CO2 emission in large volume into the atmosphere, causing detrimental effects to the environment and the ecosystem at large scale. These industries also generate solid wastes in the form of electric arc furnace (EAF) slag during operations which result in about 10–15% slag wastes per ton of steel produced. In this study, the EAF slags from an iron and steel-making factory in Klang, Malaysia was utilized for CO2 sequestration through direct aqueous mineral carbonation. According to the surface area analysis, the fresh EAF slag has a mesoporous structure, its elemental composition shows the presence of 20.91 wt.% of CaO that was used for the sequestration of CO2 through carbonation. The sequestration capacity was found to be 58.36 g CO2/kg of slag at ambient temperature in 3 h, with the liquid/solid (L/S) ratio of 5:1 and using <63μm particle size. Moreover, the shrinking core model (SCM) was used to analyze the solid-fluid reaction in a heterogeneous phase and the CO2 sequestration shows to be controlled by the product layer phase. The EAF slag is demonstrated to have the potential of CO2 sequestration at ambient temperature.
机译:钢铁行业是向大气中大量排放CO2的因素之一,对环境和生态系统产生了大规模的不利影响。这些行业在生产过程中还会以电弧炉(EAF)炉渣的形式产生固体废物,每吨钢产生约10-15%的炉渣废物。在这项研究中,来自马来西亚巴生市一家钢铁厂的电弧炉渣被用于通过直接含水矿物碳酸化作用将二氧化碳封存。根据表面积分析,新鲜的EAF炉渣具有中孔结构,其元素组成显示存在20.91重量%的CaO,该CaO用于通过碳酸化来隔离CO 2。发现在环境温度下3小时内,固液容量为58.36 g CO2 / kg炉渣,液/固(L / S)比为5:1,使用的粒径小于63μm。此外,使用收缩核模型(SCM)分析了异相中的固液反应,并且CO 2固存显示受产物层相控制。事实证明,EAF炉渣在环境温度下具有隔离CO2的潜力。

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