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Assessment and Study on the Impact on Environment by Multi-crystalline Silicon Preparation by Metallurgical Route

机译:冶金途径多晶硅制备对环境影响的评价与研究

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摘要

The process of the production of multi-crystalline silicon is also that of incessant purification of metallurgical grade silicon, during which high energy consumption and environmental pollutants are inevitable. The paper, which is based on life cycle assessment (LCA), presents calculation and analysis on resource input, energy consumption, emissions into and comprehensive impact on environment generated from the whole process in which 1 kg of solar grade multi-crystalline silicon (SoG-Si) is produced with metallurgical route. The program is based on its research on four representative processes in metallurgical route, namely slag refining, wet purification, directional solidification and electron beam melting. Key factors determining environmental load are sought out through contribution analysis and improvement evaluation. Measures and suggestions on how to improve are proposed. For the first time, the LCA model of comparison of metallurgical route and modified Siemens process to SoG-Si environmental impact is constructed. The environmental impacts of SoG-Si production via metallurgical route is compared with purification via modified Siemens process. Results show that the comprehensive environmental impact of metallurgical route SoG-Si is only 49.57% of modified Siemens process SoG-Si. The metallurgical route enjoys obvious environmental advantage. The improvement should be focused on the reduction of electric power consumption in production processes.
机译:多晶硅生产的过程也是冶金级硅的不停净化的过程,在此期间能耗高,环境污染物是不可避免的。该论文,基于生命周期评估(LCA),呈现资源投入,能源消耗,排放进入和全面影响对整个过程中的环境的计算和分析,其中1公斤太阳能级多晶硅(SOG -SI)用冶金路线生产。该计划基于其研究冶金途径中四种代表性过程,即渣精制,湿净化,定向凝固和电子束熔化。通过贡献分析和改进评估,寻求确定环境载荷的关键因素。提出了关于如何改进的措施和建议。第一次,建立了冶金途径和改性西门子对Sog-Si环境影响的改性西门子的比较模型。通过改性西门子工艺对冶金途径产生冶金途径的环境影响。结果表明,冶金路线Sog-Si的综合环境影响仅为修饰西门子的49.57%血清。冶金路线享有明显的环境优势。改善应专注于生产过程中的电力消耗。

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