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Electromagnetic Levitation Refining of Silicon-Iron Alloys for Generation of Solar Grade Silicon

机译:用于产生太阳能级硅的硅铁合金的电磁悬浮精炼

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At present, expensive semiconductor grade silicon (SEG-Si) is used for the manufacture of cells to convert solar energy into electricity. This results in a high cost for photovoltaic electricity compared to electricity derived from conventional sources. The processing of inexpensive metallurgical silicon, or fer-rosilicon alloys, is a potentially economical refining route to produce photovoltaic silicon. With phosphorus being one of the most difficult impurities to remove by conventional techniques, this project investigated the use of electromagnetic levitation for dephosphorization of silicon-iron alloy droplets exposed to hydrogen-argon gas mixtures. The effects of time, temperature, hydrogen partial pressure, iron content in the alloy, and initial phosphorus concentration were evaluated.
机译:目前,昂贵的半导体级硅(SEG-Si)用于制造电池以将太阳能转化为电能。与源自常规来源的电力相比,这导致光伏电力的高成本。廉价的冶金硅或硅铁合金的加工是生产光伏硅的一种潜在的经济精炼途径。由于磷是通过常规技术去除的最困难的杂质之一,因此,该项目研究了利用电磁悬浮法对暴露于氢氩气体混合物中的硅铁合金微滴进行脱磷的方法。评估了时间,温度,氢分压,合金中铁含量和初始磷浓度的影响。

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