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Recycling high-purity silicon from diamond-wire saw kerf slurry waste by vacuum refining process

机译:通过真空炼油过程回收来自钻石丝的高纯度硅锯切渣垃圾

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Approximately 35%-40% crystalline silicon becomes silicon powder waste (SPW) when producing silicon wafers. Substantial amount of SPW will be produced as the demand for wafers increases. Recycling Si from SPW for preparing silicon has been a significant issue. Considering the current recovery ratio of SPW is low, it is urgent to investigate an effective method to recycle SPW. In this paper, SPW was remelted into high-purity silicon ingots by vacuum refining process and the recycling process involved two stages. In the first stage, SPW was pelletized by a double-roll type presser. In the second stage, the pellets were melted into high-purity silicon ingots by vacuum refining. The effects of the smelting time and atmosphere condition on the silicon recovery ratio, and the influence of the smelting time on impurities removal ratio were investigated. The maximum silicon recovery ratio could be increased from 56.5% by atmosphere smelting to 68.65% by vacuum smelting. Si ingots with a purity of 99.65%, B 0.21 ppmw and P 3.03 ppmw were prepared. The melting mechanism of the silicon powder and economical evaluation were also discussed in this paper. The recovery of SPW by vacuum refining can not only realize resource reutilization but also bring about economic benefits ($0.406/kg) at laboratory-scale. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在生产硅晶片时,大约35%-40%的晶体硅变为硅粉废物(SPW)。随着对晶片的需求增加,将生产大量的SPW。从SPW中回收Si进行准备硅是一个重要的问题。考虑到SPW的电流恢复比率低,迫切需要研究一种回收SPW的有效方法。在本文中,通过真空精炼过程将SPW重新熔化成高纯度硅锭,再循环过程涉及两个阶段。在第一阶段,通过双辊型压力机造粒SPW。在第二阶段,通过真空精炼将颗粒熔化成高纯度的硅锭。研究了冶炼时间和大气条件对硅回收率的影响,以及冶炼时间对杂质去除率的影响。通过真空冶炼,最大硅回收率可以从大气中熔化至68.65%的大气中的56.5%。制备纯度为99.65%,B 0.21 ppmW和P 3.03 PPMW的Si锭。本文还讨论了硅粉的熔化机制和经济评价。通过真空炼油回收SPW,不仅可以实现资源再利用,还可以在实验室规模实现经济效益(0.406美元/千克)。 (c)2020 elestvier有限公司保留所有权利。

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