Physical-chemical characteristics of the band sawing dusts regarding to recovery of pure silicon from them were investigated.The experimental results show 50vol%-60vol% amorphous phases exist in the dusts,which is mos...Physical-chemical characteristics of the band sawing dusts regarding to recovery of pure silicon from them were investigated.The experimental results show 50vol%-60vol% amorphous phases exist in the dusts,which is mostly amorphous silica.The as-received saw dusts are found to form hard agglomerates of larger than 50 microns in diameter.The iron-based inclusions collected by magnets are found to match well with the band saw material in XRD patterns.Weight loss in heating was observed by thermal gravity tests,up to 900 ℃,presumably due to reaction of the amorphous silica with carbon contaminant in the dusts.The saw dusts were variously treated to examine their physical-chemical responses,and the results were also presented.展开更多
The silicon wafer accounts nearly half of the photovoltaic module cost, and hence on this issue an important opportunity remains for further decreasing the cost of photovoltaics. It is well known that ribbon technolog...The silicon wafer accounts nearly half of the photovoltaic module cost, and hence on this issue an important opportunity remains for further decreasing the cost of photovoltaics. It is well known that ribbon technology has a large potential for costs reduction by avoiding kerr losses since no saw processes are used, preventing material losses up to 50% of the initial feedstock. On the other hand we ought to ask ourselves why we should use solid silicon feedstock, which has already undergone a crystallization process with high energy content to recrystallize it again in a crucible, spending even more energy, when we can go directly from the gaseous feedstock source to the final ribbon. The cost cutting strategy that supports the Silicon over Dust Substrate (SDS) technology, here presented, is based on the belief that ribbon technology and the silicon feedstock issue will play an important role on "wafer" cost reduction.展开更多
以回收提纯硅片线锯屑粉与气相白炭黑为原料,合成出晶须状氮氧化硅粉体。实验研究了原料摩尔配比、保温温度、保温时间等工艺参数对氮氧化合成产物的影响。结果表明,回收提纯硅片线锯屑粉与气相白炭黑摩尔比为2.0∶1~2.6∶1、保温温度为...以回收提纯硅片线锯屑粉与气相白炭黑为原料,合成出晶须状氮氧化硅粉体。实验研究了原料摩尔配比、保温温度、保温时间等工艺参数对氮氧化合成产物的影响。结果表明,回收提纯硅片线锯屑粉与气相白炭黑摩尔比为2.0∶1~2.6∶1、保温温度为1380℃、保温时间为4 h条件下可获得较为纯净的氮氧化硅粉体。产物中同时伴生一种类似于O1-Si Al ON结构的氮氧化硅低温亚稳相(LM Si2N2O),且该亚稳相含量随着原料摩尔配比的降低、温度的升高、时间的延长逐渐降低。所形成的氮氧化硅呈晶须状的原因与白炭黑的气化挥发及随后的氮氧化硅气相沉积生长机制有关。展开更多
基金Funded by the LDK Solar(TC-NU-0004)the Science & Technology Project of Education Department of Jiangxi Province(No.GJJ10034)
文摘Physical-chemical characteristics of the band sawing dusts regarding to recovery of pure silicon from them were investigated.The experimental results show 50vol%-60vol% amorphous phases exist in the dusts,which is mostly amorphous silica.The as-received saw dusts are found to form hard agglomerates of larger than 50 microns in diameter.The iron-based inclusions collected by magnets are found to match well with the band saw material in XRD patterns.Weight loss in heating was observed by thermal gravity tests,up to 900 ℃,presumably due to reaction of the amorphous silica with carbon contaminant in the dusts.The saw dusts were variously treated to examine their physical-chemical responses,and the results were also presented.
文摘The silicon wafer accounts nearly half of the photovoltaic module cost, and hence on this issue an important opportunity remains for further decreasing the cost of photovoltaics. It is well known that ribbon technology has a large potential for costs reduction by avoiding kerr losses since no saw processes are used, preventing material losses up to 50% of the initial feedstock. On the other hand we ought to ask ourselves why we should use solid silicon feedstock, which has already undergone a crystallization process with high energy content to recrystallize it again in a crucible, spending even more energy, when we can go directly from the gaseous feedstock source to the final ribbon. The cost cutting strategy that supports the Silicon over Dust Substrate (SDS) technology, here presented, is based on the belief that ribbon technology and the silicon feedstock issue will play an important role on "wafer" cost reduction.
文摘以回收提纯硅片线锯屑粉与气相白炭黑为原料,合成出晶须状氮氧化硅粉体。实验研究了原料摩尔配比、保温温度、保温时间等工艺参数对氮氧化合成产物的影响。结果表明,回收提纯硅片线锯屑粉与气相白炭黑摩尔比为2.0∶1~2.6∶1、保温温度为1380℃、保温时间为4 h条件下可获得较为纯净的氮氧化硅粉体。产物中同时伴生一种类似于O1-Si Al ON结构的氮氧化硅低温亚稳相(LM Si2N2O),且该亚稳相含量随着原料摩尔配比的降低、温度的升高、时间的延长逐渐降低。所形成的氮氧化硅呈晶须状的原因与白炭黑的气化挥发及随后的氮氧化硅气相沉积生长机制有关。