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废旧电子电气设备和可移动电池在居民生活垃圾中的混入:错位垃圾的量化和特性描述。

WEEE and portable batteries in residual household waste: quantification and characterisation of misplaced waste.

机构信息

Technical University of Denmark, Department of Environmental Engineering, Miljøvej 113, 2500 Kgs. Lyngby, Denmark.

出版信息

Waste Manag. 2013 Nov;33(11):2372-80. doi: 10.1016/j.wasman.2013.05.019. Epub 2013 Jul 26.

Abstract

A total of 26.1Mg of residual waste from 3129 households in 12 Danish municipalities was analysed and revealed that 89.6kg of Waste Electrical and Electronic Equipment (WEEE), 11kg of batteries, 2.2kg of toners and 16kg of cables had been wrongfully discarded. This corresponds to a Danish household discarding 29g of WEEE (7 items per year), 4g of batteries (9 batteries per year), 1g of toners and 7g of unidentifiable cables on average per week, constituting 0.34% (w/w), 0.04% (w/w), 0.01% (w/w) and 0.09% (w/w), respectively, of residual waste. The study also found that misplaced WEEE and batteries in the residual waste constituted 16% and 39%, respectively, of what is being collected properly through the dedicated special waste collection schemes. This shows that a large amount of batteries are being discarded with the residual waste, whereas WEEE seems to be collected relatively successfully through the dedicated special waste collection schemes. Characterisation of the misplaced batteries showed that 20% (w/w) of the discarded batteries were discarded as part of WEEE (built-in). Primarily alkaline batteries, carbon zinc batteries and alkaline button cell batteries were found to be discarded with the residual household waste. Characterisation of WEEE showed that primarily small WEEE (WEEE directive categories 2, 5a, 6, 7 and 9) and light sources (WEEE directive category 5b) were misplaced. Electric tooth brushes, watches, clocks, headphones, flashlights, bicycle lights, and cables were items most frequently found. It is recommended that these findings are taken into account when designing new or improving existing special waste collection schemes. Improving the collection of WEEE is also recommended as one way to also improve the collection of batteries due to the large fraction of batteries found as built-in. The findings in this study were comparable to other western European studies, suggesting that the recommendations made in this study could apply to other western European countries as well.

摘要

对来自丹麦 12 个市的 3129 户家庭的 26.1 毫克剩余废物进行了分析,结果显示,有 89.6 公斤的废弃电气和电子设备(WEEE)、11 公斤的电池、2.2 公斤的碳粉和 16 公斤的电缆被错误丢弃。这相当于丹麦每户家庭每周平均丢弃 29 克 WEEE(每年 7 件)、4 克电池(每年 9 个)、1 克碳粉和无法识别的 7 克电缆,分别占剩余废物的 0.34%(重量/重量)、0.04%(重量/重量)、0.01%(重量/重量)和 0.09%(重量/重量)。研究还发现,残差废物中错位的 WEEE 和电池分别占通过专用特殊废物收集计划妥善收集的 WEEE 和电池的 16%和 39%。这表明大量电池与剩余废物一起被丢弃,而 WEEE 似乎通过专用特殊废物收集计划相对成功地收集。对错位电池的特性进行分析表明,20%(重量/重量)的废弃电池被作为内置 WEEE 的一部分丢弃。主要是碱性电池、碳锌电池和碱性纽扣电池被发现与家庭生活垃圾一起丢弃。对 WEEE 的特性分析表明,主要是小型 WEEE(WEEE 指令类别 2、5a、6、7 和 9)和光源(WEEE 指令类别 5b)被错位。电动牙刷、手表、时钟、耳机、手电筒、自行车灯和电缆是最常发现的物品。建议在设计新的或改进现有的特殊废物收集计划时考虑到这些发现。由于发现大量电池作为内置电池,因此建议改进 WEEE 的收集,这也是提高电池收集的一种方式。本研究的结果与其他西欧研究相似,表明本研究提出的建议也可能适用于其他西欧国家。

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