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Proposal of a neutron transmutation doping facility for n-type spherical silicon solar cell at high-temperature engineering test reactor

机译:高温工程试验反应器中N型球形硅太阳能电池中子嬗变掺杂设施的提议

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The p-type spherical silicon solar cell is a candidate for future solar energy with low fabrication cost, however, its conversion efficiency is only about 10%. The conversion efficiency of a silicon solar cell can be increased by using n-type silicon semiconductor as a substrate. This study proposed a new method of neutron transmutation doping silicon (NTD-Si) for producing the n-type spherical solar cell, in which the Si-particles are irradiated directly instead of the cylinder Si-ingot as in the conventional NTD-Si. By using a 'screw', an identical resistivity could be achieved for the Si-particles without a complicated procedure as in the NTD with Si-ingot. Also, the reactivity and neutron flux swing could be kept to a minimum because of the continuous irradiation of the Si particles. A high temperature engineering test reactor (HTTR), which is located in Japan, was used as a reference reactor in this study. Neutronic calculations showed that the HTTR has a capability to produce about 40 t/EFPY of 10 Omega cm resistivity Si-particles for fabrication of the n-type spherical solar cell.
机译:P型球形硅太阳能电池是未来太阳能的候选者,其制造成本低,但其转换效率仅为约10%。通过使用N型硅半导体作为基板,可以增加硅太阳能电池的转换效率。该研究提出了一种新的中子嬗变掺杂硅(NTD-Si)的新方法,用于制造N型球形太阳能电池,其中Si-颗粒直接被照射而不是常规NTD-Si中的气缸Si-锭。通过使用“螺钉”,可以对Si-颗粒实现相同的电阻率,而没有与Si-ingot中的NTD中的复杂过程。而且,由于Si颗粒的连续照射,可以保持反应性和中子通量摆动至最小值。位于日本的高温工程测试反应器(HTTR)被用作本研究中的参考反应器。中性计算表明,HTTR具有生产约40吨/ eFPy的10个OMEGA CM电阻率Si-颗粒的能力,用于制造n型球形太阳能电池。

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