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Deposition reactors for solar grade silicon: A comparative thermal analysis of a Siemens reactor and a fluidized bed reactor

机译:太阳能级硅的沉积反应器:西门子反应器和流化床反应器的比较热分析

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摘要

Polysilicon production costs contribute approximately to 25-33% of the overall cost of the solar panels and a similar fraction of the total energy invested in their fabrication. Understanding the energy losses and the behaviour of process temperature is an essential requirement as one moves forward to design and build large scale polysilicon manufacturing plants. In this paper we present thermal models for two processes for poly production, viz., the Siemens process using trichlorosilane (TCS) as precursor and the fluid bed process using silane (monosilane, MS).We validate the models with some experimental measurements on prototype laboratory reactors relating the temperature profiles to product quality. A model sensitivity analysis is also performed, and the efects of some key parameters such as reactor wall emissivity, gas distributor temperature, etc., on temperature distribution and product quality are examined. The information presented in this paper is useful for further understanding of the strengths and weaknesses of both deposition technologies, and will help in optimal temperature profiling of these systems aiming at lowering production costs without compromising the solar cell quality.
机译:多晶硅的生产成本约占太阳能电池板总成本的25-33%,而太阳能电池板制造成本中所占的比例却很小。随着人们继续设计和建造大型多晶硅制造厂,了解能量损失和过程温度的行为是一项基本要求。在本文中,我们介绍了两种生产过程的热模型,即使用三氯硅烷(TCS)作为前体的Siemens工艺和使用硅烷(甲硅烷,MS)的流化床工艺。通过对原型的一些实验测量来验证模型实验室反应器将温度曲线与产品质量联系起来。还进行了模型敏感性分析,并研究了一些关键参数(例如反应堆壁发射率,气体分配器温度等)对温度分布和产品质量的影响。本文中提供的信息可用于进一步了解这两种沉积技术的优缺点,并且有助于在不影响太阳能电池质量的前提下,以降低生产成本的方式优化这些系统的温度曲线。

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