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Greenhouse gas emission offsetting by refrigerant recovery from WEEE: A case study on a WEEE recycling plant in Korea

机译:由WEEE的制冷剂回收偏移温室气体排放:以韩国的WEEE回收厂为例

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摘要

The demand for new electrical and electronic equipment (EEE) has resulted in short replacement cycles for this equipment. This has led to the generation of a large amount of waste electrical and electronic equipment (WEEE). The proper disposal of WEEE is essential in order to manage greenhouse gas (GHG) emissions, as refrigerant injected EEE is a potential source of GHG emissions. In this study, carbon dioxide (CO2) emissions from recycling activities that resulted in GHG emissions via refrigerant recovery were quantitatively evaluated. The evaluation was conducted based on the operational data from a WEEE recycling plant in 2016. To estimate CO2 emission and offsetting effects, mass-balance and carbon-footprint analyses were conducted. The mass balance data showed that 22,804 t of WEEE were recycled in a plant. The carbon-footprint analysis estimated that CO2 emissions from all recycling activities, including all machinery and vehicles as well as fossil fuel and electricity use, reached approximately 4.097 x 10(3) tonne of CO2 eq. Meanwhile, the CO2 emissions prevented by the manual recovery of refrigerants (5186 kg) from WEEE accounted for approximately 2.877 x 10(4) tonne of CO2 eq. These results, based on data from a recycling plant and showing an offset of CO2 emissions by a factor of 7.02, demonstrate that refrigerant recovery could potentially reduce emissions by 2.467 x 10(4) tonne of CO2 eq. per year. This study will demonstrate the optimal methodologies for estimating CO2 emissions and offsetting, and inform environmental policy by providing an alternative approach to the problem of global warming.
机译:对新电气和电子设备(EEE)的需求导致该设备的更换循环。这导致了一代大量的废物电气和电子设备(WEEE)。 WEEE的适当处置对于管理温室气体(GHG)排放来说至关重要,因为制冷剂注射EEE是温室气体排放的潜在来源。在本研究中,定量评估了通过制冷剂回收导致GHG排放的再循环活性的二氧化碳(CO2)排放。根据2016年的WEEE回收植物的运营数据进行评价。为了估计二氧化碳排放和偏移效应,进行质量平衡和碳足迹分析。质量平衡数据显示,22,804吨WEEE在植物中再循环。碳足迹分析估计,所有回收活动的二氧化碳排放,包括所有机械和车辆以及化石燃料和电力使用,达到约4.097 x 10(3)吨二氧化碳等式。同时,通过从WEEE手动恢复制冷剂(5186 kg)的手动恢复约2.877×10(4)吨CO 2等式的二氧化碳排放。这些结果基于来自回收植物的数据并显示CO 2排放量的偏移量为7.02,表明制冷剂回收可能会通过2.467×10(4)吨CO 2 EQ的排放。每年。本研究将展示估算二氧化碳排放和抵消的最佳方法,并通过为全球变暖问题提供替代方法来告知环境政策。

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