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The materials characteristic and the efficiency degradation of solar cells from solar grade silicon from a metallurgical process route

机译:冶金工艺路线中太阳能级硅的太阳能电池的材料特性和效率退化

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The rising conventional energy prices have opened up the market for photovoltaic, but the lack of polycrystalline silicon from the chemical route restricts the growth of crystalline silicon solar cells. Recently there is a trend that produces solar cells by using the newly developed solar grade silicon feedstock from a metallurgical process route. In this article, the chemical components of solar grade silicon feedstock are analyzed. The single crystalline silicon solar cells from 100% solar grade silicon feedstock from a metallurgical process route are investigated. The outdoor performance of solar modules encapsulated by such cells is reported. The experimental evidence suggests that such solar cells can achieve the average efficiency higher than 14% on single crystalline silicon wafers. However, the efficiency degradation of solar cells under natural sunlight is significant, and the electrical uniformity of small cells diced from the whole cell is too bad. The metal impurities, oxygen, carbon, and their complexes influence the performance stabilization. The article proves that the module made by such cells has a big cell mismatch loss than normal cells made by electronic grade silicon, even if these cells come from the same sort. And the operating temperature of the cells of the modules is 15-22 °C higher than normal modules under the same conditions. The solar grade silicon feedstock from a metallurgical process route has to be improved farther in order to be used in photovoltaic industry.
机译:传统能源价格的上涨为光伏打开了市场,但是化学途径中缺乏多晶硅限制了晶体硅太阳能电池的增长。最近,有一种趋势是通过冶金工艺路线使用新开发的太阳能级硅原料生产太阳能电池。本文分析了太阳能级硅原料的化学成分。研究了来自冶金工艺路线的100%太阳能级硅原料的单晶硅太阳能电池。据报道,由这种电池封装的太阳能模块的户外性能。实验证据表明,这种太阳能电池在单晶硅晶片上的平均效率可高于14%。然而,在自然日光下太阳能电池的效率下降是显着的,并且从整个电池切成的小电池的电均匀性太差。金属杂质,氧,碳及其配合物会影响性能稳定。该文章证明,即使这些电池来自同一种类,由此类电池制成的模块也比由电子级硅制成的普通电池具有更大的电池失配损失。在相同条件下,模块电池的工作温度比普通模块高15-22°C。来自冶金工艺路线的太阳能级硅原料必须进一步改进才能用于光伏行业。

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