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首页> 外文期刊>Journal of Materials Research and Technology >Application of multi-stage vacuum distillation for secondary resource recovery: potential recovery method of cadmium telluride photovoltaic waste
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Application of multi-stage vacuum distillation for secondary resource recovery: potential recovery method of cadmium telluride photovoltaic waste

机译:多级真空蒸馏在二级资源回收中的应用:碲化镉光伏废料的潜在回收方法

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摘要

With the widespread use of cadmium telluride solar cells, environmental protection, and effective recycling approaches for solar cell component waste have become topics of concern. As an emerging metal smelting technology, vacuum metallurgy technology has broad application prospects in primary metal refining and the recycling of secondary non-ferrous scraps. Thus, this study proposes a new method for the separation and recovery of rare metals from cadmium telluride waste through sulfur smelting and vacuum distillation. In this process, sulfur is smelted with cadmium telluride to produce tellurium with a high vapor pressure. The tellurium was then separated and purified by multi-stage vacuum distillation. The results show that the tellurium purity can reach up to 99.97% and the tellurium recovery rate was above 99%. The cadmium and sulfur contents in the tellurium were 0.0061% and 0.0194%, respectively. Moreover, the cadmium sulfide produced during the smelting process can be enriched by vacuum distillation, resulting in 99.6% purity. This technology strongly aligns with the “reduce, reuse, and recycle” principle for solid waste, and provides a basis for the sustainable development of the photovoltaic industry.
机译:随着碲化镉太阳能电池,环境保护和太阳能电池成分废物的有效回收方法的广泛使用已成为关注的主题。作为一种新兴金属冶炼技术,真空冶金技术在初级金属精炼中具有广泛的应用前景,以及二次有色金属碎屑的再循环。因此,该研究提出了一种新方法,用于通过硫冶炼和真空蒸馏来分离和从碲化物废物中稀有稀有金属的分离和回收。在该方法中,用碲化镉冶炼硫以产生具有高蒸气压的碲。然后通过多级真空蒸馏分离并纯化碲。结果表明,碲纯度可达99.97%,碲回收率高于99%。碲中镉和硫含量分别为0.0061%和0.0194%。此外,在冶炼过程中产生的硫化镉可以通过真空蒸馏来富集,得到99.6%的纯度。该技术与固体废物的“减少,重用和回收”原则强烈对准,为光伏行业的可持续发展提供了基础。

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