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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Preparation of Low-Boron Silicon from Diamond Wire Sawing Waste by Pressure-Less Sintering and CaO-SiO2 Slag Treatment
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Preparation of Low-Boron Silicon from Diamond Wire Sawing Waste by Pressure-Less Sintering and CaO-SiO2 Slag Treatment

机译:储蓄烧结钻石锯渣中的低硼硅的制备和CaO-SiO2渣处理

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In order to recover silicon from diamond wire sawing waste, silicon extraction and boron removal are two key issues that need to be addressed. In this study, a combined process of pressure-less sintering and CaO-SiO2 slag treatment was proposed. Low-boron silicon was prepared and considered as raw materials in solar cell production. The results confirmed that pressure-less sintering was beneficial for the digestion of the silicon oxide layer, and the molar percentage of oxygen in silicon kerf was reduced from 14.83 to 7.24% after pressure-less sintering at 1400 degrees C for 2 h. The effect of slag composition on boron removal was investigated. It was found that an optimum boron removal efficiency of 86.91% was obtained when the optical basicity reached 0.68 and no CaF2 was added; the CaO-SiO2 mass ratio was 1.2, the holding time was 40 min, and the slag to silicon mass ratio was 1. Although the addition of CaF2 can decrease the viscosity, it affects the activity and the oxygen potential of slag.
机译:为了从金刚石线锯片中恢复硅,硅提取和硼拆卸是需要解决的两个关键问题。在该研究中,提出了一种较小的烧结烧结和CaO-SiO2炉渣处理的组合过程。制备了低硼硅并被认为是太阳能电池生产中的原料。结果证实,减压烧结是有益于消化氧化硅层的消化,并且在1400℃下减压烧结后硅的氧气的摩尔百分比从14.83〜7.24%降低2小时。研究了炉渣组合物对硼去除的影响。发现当光学碱度达到0.68时,获得最佳硼去除效率为86.91%,并加入NO CAF2; CaO-SiO 2质量比为1.2,保持时间为40分钟,并且浆液到硅质量比为1.虽然添加CAF2可以降低粘度,但它会影响炉渣的活性和氧气潜力。

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