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Developing Ecological Life Cycle Impact Assessment Characterization Factors for CdTe

机译:开发CdTe的生态生命周期影响评估特征因子

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A variety of regulated metals are currently being used in three generations of photovoltaic technologies. Understanding the potential life cycle environmental impacts from use of these materials requires data on their physico-chemical and (eco)toxicological properties. For the thin film semiconductor CdTe, the documentation of physical, chemical, and toxicological properties in conjunction with the consensus toxicity model USEtox can be used to evaluate the potential impact of CdTe emissions on ecosystems. The freshwater ecotoxicity characterization factors (CF) are in a low range compared to metal ions in the USEtox database, due primarily to lower ecotoxicity effects on freshwater ecosystems measured for three trophic levels (algae, crustaceans, fish). Potential ecotoxic impacts of CdTe are approximately 3 orders of magnitude lower than Cd. Given the uncertainty of a factor 10-100 for freshwater ecotoxicity characterization factors, this difference is superior to the uncertainty range.
机译:三代光伏技术中目前正在使用多种受管制的金属。要了解使用这些材料可能对生命周期造成的环境影响,需要有关其物理化学和(生态)毒理学特性的数据。对于薄膜半导体CdTe,可以将物理,化学和毒理学性质的文档与共识毒性模型USEtox结合使用,以评估CdTe排放对生态系统的潜在影响。与USEtox数据库中的金属离子相比,淡水生态毒性表征因子(CF)处于较低的范围,这主要是因为从三个营养水平(藻类,甲壳类,鱼类)测得的对生态系统的生态毒性影响较小。 CdTe的潜在生态毒性影响比Cd低约3个数量级。给定淡水生态毒性特征因子的不确定度为10-100,该差异优于不确定度范围。

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