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首页> 外文期刊>Journal of Cleaner Production >Engineered nanomaterials reduce but do not resolve life cycle environmental impacts of power capacitors
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Engineered nanomaterials reduce but do not resolve life cycle environmental impacts of power capacitors

机译:工程纳米材料减少但不能解决功率电容器生命周期对环境的影响

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Engineered nanomaterials are used to improve the properties of products. Often this results in size reduction or increased functionality, which may result in reduced environmental impacts. At the same time the manufacturing and disposal of the nanomaterials increases the life cycle impacts of the product. In this study the effects of using nano-silica polymers in power capacitors were investigated through life cycle assessment (LCA). The analysis was based on existing production technology which was modified to represent a prototype using nanomaterials. Based on the results, the nanomaterials would reduce impacts by c.a. 20% in the most relevant environmental life cycle impact categories. The main impact categories of the power capacitors were in metal depletion, land transformation and ecotoxicity. Although the nanomaterial based capacitor had slightly lower impacts, it did not resolve the main problems in these categories. Contribution analysis revealed that most of the impact is caused by only a few processes in the life cycle, especially raw materials supply for tin solders and waste treatment of insulating oil. Ecodesign alternatives for targeting the identified environmental hotspots are discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:工程纳米材料用于改善产品的性能。通常,这会导致尺寸减小或功能增加,从而可能减少对环境的影响。同时,纳米材料的制造和处置增加了产品的生命周期影响。在这项研究中,通过生命周期评估(LCA)研究了在功率电容器中使用纳米二氧化硅聚合物的效果。该分析基于现有的生产技术,该技术经过修改以代表使用纳米材料的原型。根据结果​​,纳米材料将减少c.a.的影响。在最相关的环境生命周期影响类别中占20%。功率电容器的主要影响类别是金属消耗,土地转化和生态毒性。尽管基于纳米材料的电容器的影响较小,但它并不能解决这些类别中的主要问题。贡献分析表明,大多数影响仅是生命周期中的少数几个过程造成的,尤其是锡焊料的原料供应和绝缘油的废料处理。讨论了针对已确定的环境热点的生态设计替代方案。 (C)2015 Elsevier Ltd.保留所有权利。

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