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NH4Cl selective leaching of basic oxygen furnace slag: Optimization study using response surface methodology

机译:NH4Cl氧气顶吹转炉的选择性浸出使用响应面渣:优化研究方法

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摘要

The basic oxygen furnace slag (SL) was selectively leached by NH4Cl. Response surface methodology and the central composite design (CCD) were employed in determining the optimal condition. The process parameters such as leaching duration, NH4Cl concentration, liquid solid ratio (LSR), and leaching temperature were chosen as independent variables in CCD. The quadratic model was developed for process optimization and statistical experimental designs. It is found that the leaching duration, NH4Cl concentration and liquid solid ratio are significant to the extraction of Ca2+ and Mg2+. The optimal conditions with setting maximum extraction of calcium and magnesium cations from SL are as following: 68min (X-1), 1.8mol/L NH4Cl (X-2), LSR 12mL/g (X-3), 53 degrees C (X-4), with the predicted Ca2+ and Mg2+ concentration reaching 13.3 and 3.2g/L, respectively. The proposed simplified leaching mechanism indicates a two-stage leaching. The prone leachable MgFe2O4 and Ca2Fe2O5 are extracted in the fast stage, while the extraction of CaO occurs throughout slow stage. (c) 2016 American Institute of Chemical Engineers Environ Prog, 35: 1387-1394, 2016
机译:氧气顶吹转炉炉渣(SL)是选择性的由NH4Cl淋溶。和中央合成设计(CCD)用于确定最优条件。浸出时间等工艺参数,NH4Cl浓度、液固比(LSR),和浸出温度被选为在CCD独立变量。流程优化和开发吗统计实验设计。浸出时间,NH4Cl浓度和液固比的非常重要提取Ca2 +和Mg2 +。与设定的最大萃取条件从SL是钙和镁阳离子12毫升/ g(- 3), 53摄氏度(* 4),预测Ca2 +和Mg2 +浓度达到分别为13.3和3.2 g / L。简化的浸出机理表明两阶段的浸出。和Ca2Fe2O5提取的快速阶段,而曹中发生的提取缓慢的阶段。化学工程师环境掠夺,35:1387 - 1394,2016

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