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Wet extractive grinding process for efficient calcium recovery from steelmaking slags

机译:湿采磨削工艺,用于高效钙矿渣恢复

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This paper presents a process improvement of the pH-swing process (referred to as X2PCC) wherein a steel-making slag is used as a source of calcium oxide for the mineral carbonation of CO2. We first dissolve Ca from the slag, then separate the solid phase by filtering, and, finally, bubble CO2 into the Ca-rich solution to precipitate it as CaCO3. The yield of calcium in the extraction step partly limits the process feasibility. Our objective is to apply a new extractive grinding method to enhance the extraction of Ca from steelmaking slags. We compared three cases: 1) mechanical mixing extraction with original grind slag A (0-250 mu m); 2) mechanical mixing extraction with fine dry-grind slag B (0-50 mu m); and 3) the new extractive we grinding process with original slag A (0-250 mu m). In this new extractive process, we combine the grinding and extraction steps in order to increase the rate and yield of the process. This method significantly reduces the energy requirement which makes this process feasible for industrial application.
机译:本文介绍了PH摆动过程(称为X2PCC)的过程改进,其中钢制造渣用作CO 2的矿物碳酸化氧化钙源。我们首先将Ca溶解在炉渣中,然后通过过滤分离固相,并且最后,将气泡CO2料中成富含Ca的溶液以使其作为CaCO 3沉淀。提取步骤中钙的产率部分限制了过程可行性。我们的目的是应用一种新的采掘磨削方法,以增强炼钢渣的CA的提取。我们比较了三种情况:1)用原始研磨渣(0-250μm)机械混合萃取; 2)用细干磨渣B(0-50μm)机械混合萃取; 3)使用原始渣(0-250μm)进行新的提取方法。在这种新的采掘过程中,我们结合了研磨和提取步骤,以提高过程的速率和产量。该方法显着降低了能源要求,这使得该过程可用于工业应用。

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