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Recovery of calcium carbonate from steelmaking slag and utilization for acid mine drainage pre-treatment

机译:从炼钢炉渣中回收碳酸钙并将其用于酸性矿山排水的预处理

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The conversion of steelmaking slag (a waste product of the steelmaking process) to calcium carbonate (CaCO _3) was tested using hydrochloric acid, ammonium hydroxide and carbon dioxide via a pH-swing process. Batch reactors were used to assess the technical feasibility of calcium carbonate recovery and its use for pre-treatment of acid mine drainage (AMD) from coal mines. The effects of key process parameters, such as the amount of acid (HCl/calcium molar ratio), the pH and the CO _2 flow rate were considered. It was observed that calcium extraction from steelmaking slag significantly increased with an increase in the amount of hydrochloric acid. The CO _2 flow rate also had a positive effect on the carbonation reaction rate but did not affect the morphology of the calcium carbonate produced for values less than 2 L/min. The CaCO _3 recovered from the bench scale batch reactor demonstrated effective neutralization ability during AMD pre-treatment compared with the commercial laboratory grade CaCO _3.
机译:使用盐酸,氢氧化铵和二氧化碳通过pH波动法测试了炼钢炉渣(炼钢过程的废品)向碳酸钙(CaCO_3)的转化。间歇式反应器用于评估碳酸钙回收的技术可行性,并将其用于煤矿的酸性矿山排水(AMD)的预处理。考虑了关键工艺参数的影响,例如酸的量(HCl /钙的摩尔比),pH值和CO _2流速。观察到,随着盐酸量的增加,从炼钢炉渣中提取钙的量显着增加。 CO _2流量对碳酸化反应速率也有积极影响,但对于值小于2 L / min的碳酸钙,其形态没有影响。与商用实验室级CaCO_3相比,从台式间歇式反应器中回收的CaCO_3在AMD预处理期间显示出有效的中和能力。

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