An improved approach for the evaluation of the environmental impact of nano-modified insulating oils in electrical transformers

IF 3.8 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IET Nanodielectrics Pub Date : 2024-08-18 DOI:10.1049/nde2.12089
Ioannis Chronis, Chao Tang, Constantinos S. Psomopoulos
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Abstract

Nano-modified electrical insulating fluids are a promising new family of insulating oils with enhanced characteristics. They can significantly improve many properties, such as fire point, breakdown voltage, partial discharge inception voltage and thermal conductivity etc. However, nanoparticles have raised concerns about the possible harm to human health and the ecosystems, but the environmental impact of nano-modified insulating oils is far more complicated than that. Following the recent research results on the stability of nano-modified particles, the authors introduce environmental aspects that have not attracted attention so far, such as the possible loss of stability of the insulating oil, mechanical erosion problems in parts of the electrical transformer and problems in recycling processes that may turn waste nano-modified insulating oils into an unwanted feed stock for recycling industries. An improved method for the environmental risk assessment (RA) of nano-modified insulating oils, based on an existing model for the RA of nanoparticles, is proposed. The authors reflect the complicated nature of the nanoliquids, mainly due to the stability of the element, which seems to have a paramount role on their environmental impact and is neglected by the current approach in RA.

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一种改进的变压器用纳米改性绝缘油环境影响评价方法
纳米改性电绝缘油是一种具有较强性能的新型绝缘油。可显著改善材料的燃点、击穿电压、局部放电起始电压、导热系数等性能。然而,纳米颗粒对人类健康和生态系统可能造成的危害引起了人们的关注,但纳米改性绝缘油的环境影响远比这复杂得多。根据最近对纳米改性颗粒稳定性的研究成果,作者介绍了迄今为止尚未引起注意的环境方面,例如绝缘油可能失去稳定性,变压器部分机械侵蚀问题以及回收过程中可能使废弃纳米改性绝缘油成为回收工业不需要的原料的问题。在已有的纳米颗粒环境风险评估模型的基础上,提出了一种改进的纳米改性绝缘油环境风险评估方法。作者反映了纳米液体的复杂性,主要是由于元素的稳定性,这似乎在它们的环境影响中起着至关重要的作用,而目前的RA方法却忽视了这一点。
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来源期刊
IET Nanodielectrics
IET Nanodielectrics Materials Science-Materials Chemistry
CiteScore
5.60
自引率
3.70%
发文量
7
审稿时长
21 weeks
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