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Synthesis and separation of Si-Fe alloy to produce high-purity silicon

机译:Si-Fe合金的合成与分离以生产高纯度硅

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摘要

The metallurgical route is a prospective method to replace the Siemens process to produce silicon for solar cells. However, the imperfect removal efficiencies of boron (B) and phosphorus (P) from silicon are the major issue. Herein, we report a novel approach to produce high-purity silicon for solar cells by the reaction of SiC with SiO2and pure FeO (with low B and P) in vacuum, which first forms Si-Fe alloy and is followed by milling and acid leaching. Pure FeO can not only reduce the silicon formation temperature but also provide an abundance of pure iron elements that serve as an impurities getter to capture B and P during the formation of silicon. Compared with the traditional metallurgical methods, this work could remove B and P from silicon directly during the formation of silicon. The refining ratios of B and P from the raw materials to the Fe-Si alloy were about 71.05% and 93.49%. Characterizations of the Si-Fe alloy indicate that many defects exist in the FeSi2phase of the milled Si-Fe alloy, which is convenient for the elimination of Fe, B and P by acid leaching. Final silicon had a purity of 99.99?wt.% with 0.04 ppmw B and 0.07 ppmw P, which had met the requirement of B and P for solar cells (B?≤?0.15?ppmw, P?≤?0.35?ppmw). This strategy significantly decreased energy consumption and shortened production process of high-purity silicon and is thus an effective and scalable approach for the production of silicon for solar cells.
机译:冶金路线是一种替代西门子工艺生产太阳能电池硅的前瞻性方法。然而,硅中硼(B)和磷(P)的去除效率不理想是主要问题。本文中,我们报道了一种新颖的方法,该方法通过在真空中使SiC与SiO2和纯FeO(具有低的B和P)反应来生产太阳能电池的高纯度硅,该方法首先形成Si-Fe合金,然后进行研磨和酸浸。纯FeO不仅可以降低硅的形成温度,而且可以提供大量的纯铁元素,这些元素可以作为杂质吸收剂,在硅形成过程中捕获B和P。与传统的冶金方法相比,这项工作可以在硅形成过程中直接从硅中去除B和P。从原料到Fe-Si合金的B和P的精炼率分别为约71.05%和93.49%。 Si-Fe合金的特征表明,在研磨后的Si-Fe合金的FeSi 2相中存在许多缺陷,这便于通过酸浸消除Fe,B和P。最终的硅的纯度为99.99%(重量),B为0.04 ppmw,P为0.07 ppmw,满足了太阳能电池的B和P要求(B≤≤0.15≤ppmw,P≤≤0.35≤ppmw)。该策略显着降低了能量消耗并缩短了高纯度硅的生产过程,因此是生产用于太阳能电池的硅的有效且可扩展的方法。

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