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首页> 外文期刊>Journal of Magnesium and Alloys >Production of metallic nanopowders (Mg, Al) by solar carbothermal reduction of their oxides at low pressure
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Production of metallic nanopowders (Mg, Al) by solar carbothermal reduction of their oxides at low pressure

机译:通过在低压下通过太阳能碳热还原其氧化物来生产金属纳米粉末(Mg,Al)

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摘要

The carbothermal reduction of MgO and Al2O3 in argon flow at low pressure allows to lower the onset temperature of metal vapor formation. Thermodynamic calculations indicate that metal formation begins at 1400 and 1700?K for a primary vacuum (1000?Pa), respectively, for Mg and Al. In the experimental section, concentrated solar energy was used for the process heating in order to favor energy savings. The products of the reaction between MgO or Al2O3 and 2 varieties of carbon (graphite, carbon black) in flowing argon atmosphere at a total pressure of around 1000 to 1600?Pa were studied using X-ray diffraction, and microstructure observations revealed the formation of metallic nanopowders with some by-products. Metallic conversions close to 45?wt% and 52?wt%, respectively, for Mg and Al, were obtained. The low conversion yield of the carbothermal reduction of MgO can be attributed to a backward reaction reforming MgO powder and to a sintering process between oxide particles at high temperature. Aluminum production challenge is to avoid formation of undesired by-products: Al2O, Al4C3 and Al-oxycarbides. Advantages and weaknesses of the used process are described and some improvements are proposed to increase metallic yields.
机译:低压下氩气流中的MgO和Al2O3的碳热还原可降低金属蒸汽形成的起始温度。热力学计算表明,对于初生真空(1000 Mpa),金属的形成始于1400和1700 KK,Mg和Al分别为。在实验部分,将聚光太阳能用于过程加热,以促进节能。利用X射线衍射研究了MgO或Al2O3与2种碳(石墨,炭黑)在流动的氩气中在1000至1600μPa左右的总压力下的反应产物,并通过显微组织观察揭示了形成的碳纳米管。金属纳米粉及其一些副产物。 Mg和Al的金属转化率分别接近45%(重量)和52%(重量)。 MgO的碳热还原的低转化率可归因于MgO粉末的逆向反应重整以及高温下氧化物颗粒之间的烧结过程。铝生产面临的挑战是避免形成不希望的副产品:Al2O,Al4C3和碳氧化铝。描述了所用工艺的优缺点,并提出了一些改进措施以提高金属产量。

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