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首页> 外文期刊>Metallurgical and Materials Transactions, E. Materials for Energy Systems >Iron-Catalyzed Boron Removal from Molten Silicon in Ammonia
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Iron-Catalyzed Boron Removal from Molten Silicon in Ammonia

机译:氨中熔融硅中铁催化的硼去除

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摘要

A high-temperature process of refining metallurgical-grade silicon to solar-grade silicon was developed. In this gas purging treatment, boron impurity in silicon reacts with ammonia and the products are removed as volatiles at high temperature. 1 mass pct metallic iron was added to molten silicon as a catalyst, improving the boron removal ratio from 14 to 80 pct at 1723 K (1450 °C). At 1823 K (1550 °C), this reaction could reduce boron concentration from more than 120 ppmw to <1 ppmw within 6 hours, meeting the purity requirement of solar-grade silicon. Nickel was tested in place of iron but showed no catalytic effect on boron removal. The result confirmed the catalytic role of iron in boron removal from molten silicon in ammonia. Possible mechanisms of catalysis, influence from iron concentration, and temperature effect on the catalytic reaction were explored. An apparent activation energy of 329 ± 129 kJ mol~(-1) was calculated from experimental data.
机译:开发了将冶金级硅提炼为太阳能级硅的高温工艺。在该气体净化处理中,硅中的硼杂质与氨反应,并且产物在高温下作为挥发物被去除。将1质量%的金属铁作为催化剂添加到熔融硅中,从而在1723 K(1450°C)下将硼的去除率从14%提高至80%。在1823 K(1550°C)下,此反应可在6小时内将硼浓度从超过120 ppmw降低到<1 ppmw,满足太阳能级硅的纯度要求。测试了镍代替铁,但对去除硼没有催化作用。结果证实了铁在氨中从熔融硅中脱除硼的催化作用。探索了可能的催化机理,铁浓度的影响以及温度对催化反应的影响。根据实验数据计算出表观活化能为329±129 kJ mol〜(-1)。

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