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Tehokondensaattoreiden elinkaariarviointi

机译:电力电容器的寿命周期评估

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摘要

During the recent years, the debate concerning climate change and other environmental threats has been in focus often. This discussion has also created pressure to business, individuals, public administrators and policymakers to integrate environmental considerations into the future decisions. Life cycle assessment is one potential tool developed to help with these decisions.In power capacitors, polypropene or other polymer materials have been applied as a dielectric medium for several years. The recent developments in nanotechnology suggest that polymer nanocomposites could possess better qualities compared with traditional polymers not only in breakdown voltage but also in the mechanical properties such as tensile strength and Young’s modulus.In this thesis, the environmental impacts of a traditional capacitor bank and a novel polymer nanocomposite capacitor bank were assessed with the help of life cycle assessment. Process-based life cycle assessment was used to model the environmental impacts of both the traditional capacitor bank and the novel polymer nanocomposite bank. It was assumed that when a nanocomposite film is used instead of traditional polypropene film in a capacitor unit, the number of capacitor units needed would decrease by 20%. The sensitivity and the error of the assessment were studied with the help of sensitivity analysis and Monte Carlo simulation.On average, the nanocomposite capacitor bank presented 15% smaller impacts than the traditional capacitor bank. This was also observed in the Monte Carlo simulation results. Few impact categories stood out: climate change, metal depletion and natural land transformation. The LCA results indicate clearly that especially for tin an alternative material in electronics should be searched.It was shown in this thesis that even though nanotecnology could decrease the environmental impacts, it will not solve completely the major issues pointed out in this thesis work.
机译:近年来,关于气候变化和其他环境威胁的辩论经常成为焦点。这种讨论也给企业,个人,公共管理者和决策者带来了压力,要求将环境因素纳入未来的决策中。生命周期评估是为帮助做出这些决定而开发的一种潜在工具。在功率电容器中,聚丙烯或其他聚合物材料已被用作介电介质已有好几年了。纳米技术的最新发展表明,与传统聚合物相比,聚合物纳米复合材料不仅在击穿电压方面而且在机械性能(如拉伸强度和杨氏模量)方面都具有更好的质量。在生命周期评估的帮助下评估了新型聚合物纳米复合电容器组。基于过程的生命周期评估用于模拟传统电容器组和新型聚合物纳米复合材料组的环境影响。假设在电容器单元中使用纳米复合膜代替传统的聚丙烯膜时,所需的电容器单元数将减少20%。借助灵敏度分析和蒙特卡洛模拟研究了评估的灵敏度和误差。平均而言,纳米复合电容器组的影响比传统电容器组小15%。在蒙特卡洛模拟结果中也观察到了这一点。很少有影响类别突出:气候变化,金属消耗和自然土地转化。 LCA的结果清楚地表明,尤其是对于锡,应该寻找电子学中的替代材料。本论文表明,即使纳米技术可以减少对环境的影响,也不能完全解决本文工作中指出的主要问题。

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    Alaviitala Tiina;

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  • 年度 2013
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