广东省电力装备可靠性企业重点实验室(广东电网公司电力科学研究院),广州,510080
纸质出版:2025
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彭向阳, 张哲, 汪政, 等. 退役电工装备回收再利用技术挑战与路径规划[J]. 高电压技术, 2025,51(6):2583-2598.
PENG Xiangyang, ZHANG Zhe, WANG Zheng, et al. Technical Challenges and Path Planning for the Recycling and Reuse of Decommissioned Electrical Equipment[J]. 2025, 51(6): 2583-2598.
彭向阳, 张哲, 汪政, 等. 退役电工装备回收再利用技术挑战与路径规划[J]. 高电压技术, 2025,51(6):2583-2598. DOI: 10.13336/j.1003-6520.hve.20250545.
PENG Xiangyang, ZHANG Zhe, WANG Zheng, et al. Technical Challenges and Path Planning for the Recycling and Reuse of Decommissioned Electrical Equipment[J]. 2025, 51(6): 2583-2598. DOI: 10.13336/j.1003-6520.hve.20250545.
在国家实施双碳战略和加快经济社会发展全面绿色转型背景下,开展能源、电力领域退役电工装备生态循环和回收再利用技术研发和应用,是发展循环经济、推动资源可持续利用和生态文明建设的关键举措。文中围绕退役电工装备生态循环和回收利用这一主题,从发电、输电、变电、储能等方面,系统论述了风电机组叶片、太阳能电池光伏组件、复合绝缘子、电力电缆、变压器、SF6气体以及储能锂电设备等退役电工装备在回收再利用过程中的技术挑战与实施路径,以期推进建立电工装备生态循环体系,助力我国新型电力系统建设和循环经济高质量发展。研究表明:风机叶片中碳纤维高效回收需突破环氧树脂选择性降解与纤维强度保持的技术瓶颈,光伏组件无损回收虽能提升硅片的再生效率但EVA胶膜解离工艺需平衡化学试剂毒性与热解过程高能耗问题,复合绝缘子回收需兼顾硅橡胶降解产物高值化利用与设备腐蚀风险,电缆交联聚乙烯绝缘材料的高效转化利用仍需进一步探索。
Under the national carbon peaking and carbon neutrality goals and the accelerated green transformation of socioeconomic development
advancing research and innovation in ecological cycling and recycling technologies for decommissioned electrical equipment in the energy and power sectors has become a critical initiative for developing a circular economy
promoting sustainable resource utilization
and fostering ecological civilization. Centering on the theme of ecological cycling and recycling of decommissioned electrical equipment
this paper systematically introduces the technical challenges and pathway planning for the recycling of wind turbine blades
solar photovoltaic modules
composite insulators
cables
transformer insulation materials
and energy storage lithium battery devices from the aspects of power generation
transmission
substation
and energy storage domains. The study aims to facilitate the establishment of an ecological cycling system for electrical equipment
thereby supporting the construction of China's new power system and advancing high-quality development of the circular economy. Research has shown that efficient recycling of carbon fibers in wind turbine blades requires breaking through the technical bottleneck of selective degradation of epoxy resin and maintaining fiber strength. Although non-destructive recycling of photovoltaic modules can improve the regeneration efficiency of silicon wafers
the EVA film dissociation process needs to balance the toxicity of chemical reagents and high energy consumption during pyrolysis. The recycling of composite insulators needs to take into account the high-value utilization of silicone rubber degradation products and equipment corrosion risks. The efficient conversion of cable cross-linked polyethylene insulation materials still needs further exploration.
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