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Characterization of household waste in Greenland

机译:格陵兰的生活垃圾特征

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The composition of household waste in Greenland was investigated for the first time. About 2 tonnes of household waste was sampled as every 7th bag collected during 1 week along the scheduled collection routes in Sisimiut, the second largest town in Greenland with about 5400 inhabitants. The collection bags were sorted manually into 10 material fractions. The household waste composition consisted primarily of biowaste (43%) and the combustible fraction (30%), including anything combustible that did not belong to other clean fractions as paper, cardboard and plastic. Paper (8%) (dominated by magazine type paper) and glass (7%) were other important material fractions of the household waste. The remaining approximately 10% constituted of steel (1.5%), aluminum (0.5%), plastic (2.4%), wood (1.0%), non-combustible waste (1.8%) and household hazardous waste (1.2%). The high content of biowaste and the low content of paper make Greenlandic waste much different from Danish household waste. The moisture content, calorific value and chemical composition (55 elements, of which 22 were below detection limits) were determined for each material fraction. These characteristics were similar to what has been found for material fractions in Danish household waste. The chemical composition and the calorific value of the plastic fraction revealed that this fraction was not clean but contained a lot of biowaste. The established waste composition is useful in assessing alternative waste management schemes for household waste in Greenland.
机译:格陵兰岛的生活垃圾成分首次得到调查。在格陵兰岛第二大城镇西西米乌特(Sisimiut)的计划收集路线中,每7袋垃圾在1周内被收集到约2吨生活垃圾,居民约5400人。将收集袋手动分类为10种物料。家庭废物的组成主要包括生物废物(43%)和可燃物(30%),包括不属于其他清洁物的可燃物,如纸,纸板和塑料。纸张(8%)(以杂志类纸为主)和玻璃(7%)是生活垃圾中其他重要的材料部分。其余约10%的成分包括钢铁(1.5%),铝(0.5%),塑料(2.4%),木材(1.0%),不燃废物(1.8%)和家庭危险废物(1.2%)。高含量的生物废物和低含量的纸张使格陵兰废物与丹麦家庭废物大不相同。确定每种材料部分的水分含量,热值和化学成分(55种元素,其中22种低于检测极限)。这些特征与丹麦家庭垃圾中的物质含量相似。该塑料级分的化学成分和热值表明,该级分不干净,但含有大量生物废物。确定的废物成分可用于评估格陵兰岛家庭废物的替代废物管理计划。

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  • 来源
    《Waste Management》 |2011年第7期|p.1461-1466|共6页
  • 作者单位

    Department of Environmental Engineering, Technical University of Denmark, Kongens Lyngby, Denmark,Department of Environmental Engineering, Building 115, Technical University of Denmark, 2800 Kongens Lyngby, Denmark;

    Department of Environmental Engineering, Technical University of Denmark, Kongens Lyngby, Denmark;

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