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首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Experimental carbothermal reduction of MgO at low pressure using concentrated solar energy
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Experimental carbothermal reduction of MgO at low pressure using concentrated solar energy

机译:利用聚光太阳能在低压下进行碳热实验还原

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The improved solar reactor Sol@rmet allows to investigate the reduction of MgO in presence of carbon using concentrated solar energy in low vacuum conditions close to 900 Pa. The influence of the carbon type was studied and it was shown that a carbon issued from a biomass source was a great candidate. A gradual increase of the temperature during experiment allowed to obtain promising results. Powders with a high Mg content up to 97 m% and a high yield rate up to 50% were collected. Short time experiments at fixed locations under the focus of the solar concentrator were performed in order to obtain information on the kinetics of the carbothermal reduction of MgO. Notably, these experiments have underlined the temperature effect on the CO emission. 50 to 80% of the CO emission mainly occurred in 100 s after the beginning of the experiments. The phase boundary reaction between MgO and C appeared to be the dominant process at the initial stage of the carbothermal reduction. Calculated activation energy of this process is around 260 kJ mol-1.
机译:改进的太阳能反应堆Sol @ rmet允许研究在接近900 Pa的低真空条件下使用浓缩太阳能在碳存在下的MgO还原。研究了碳类型的影响,结果表明,由生物质产生的碳消息来源是一个很好的候选人。在实验过程中温度的逐渐升高允许获得令人满意的结果。收集到的镁含量高达97 m%,收率高达50%。为了获得有关MgO碳热还原动力学的信息,在太阳能集中器的聚焦下在固定位置进行了短时实验。值得注意的是,这些实验强调了温度对CO排放的影响。实验开始后的100 s内,CO排放量的50%至80%发生。 MgO和C之间的相界反应似乎是碳热还原初期的主要过程。该过程的计算活化能约为260 kJ mol-1。

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