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Dynamic visualisation of municipal waste management performance in the EU using Ternary Diagram method

机译:三元图法动态可视化欧盟城市垃圾管理绩效

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摘要

This contribution describes the dynamic visualisation of European (EU 28) municipal waste management performance, using the Ternary Diagram Method. Municipal waste management performance depends primarily on three treatment categories: recycling & composting, incineration and landfilling. The framework of current municipal waste management including recycling targets, etc. is given by the Waste Framework Directive - 2008/98/EC. The proposed Circular Economy Package should stimulate Europe's transition towards more sustainable resources and energy oriented waste management. The Package also includes a revised legislative proposal on waste that sets ambitious recycling rates for municipal waste for 2025 (60%) and 2030 (65%). Additionally, the new calculation method for monitoring the attainment of the targets should be applied. In 2014, ca. 240 million tonnes of municipal waste were generated in the EU. While in 1995, 17% were recycled and composted, 14% incinerated and 64% landfilled, in 2014 ca. 71% were recovered but 28% landfilled only. Considering the treatment performance of the individual EU member states, the EU 28 can be divided into three groups, namely: "Recovery Countries", "Transition Countries" and "Landfilling Countries". Using Ternary Diagram Method, three types of visualization for the municipal waste management performance have been investigated and extensively described. Therefore, for better understanding of municipal waste management performance in the last 20 years, dynamic visualisation of the Eurostat table-form data on all 28 member states of the EU has been carried out in three different ways: 1. "Performance Positioning" of waste management unit(s) at a specific date; 2. "Performance dynamics" over a certain time period and; 3. "Performance development" expressed as a track(s). Results obtained show that the Ternary Diagram Method is very well suited to be used for better understanding of past developments and coherences, for monitoring of current situations and prognosis of future paths. One of the interesting coherences shown by the method is the linked development of recycling & composting (60-65%) with incineration (40-35%) performance over the last 20 years in the EU 28.
机译:本文使用三元图方法描述了欧洲(EU 28)城市垃圾管理绩效的动态可视化。城市废物管理的绩效主要取决于三个处理类别:回收与堆肥,焚化和填埋。废物框架指令-2008/98 / EC给出了当前的城市废物管理框架,包括回收目标等。拟议的《循环经济计划》应刺激欧洲向更可持续的资源和以能源为导向的废物管理过渡。该一揽子计划还包括有关废物的修订立法提案,为2025年(60%)和2030年(65%)的城市废物设定了雄心勃勃的回收率。此外,应使用新的计算方法来监控目标的实现。 2014年,欧盟产生了2.4亿吨城市垃圾。在1995年,大约有17%进行了回收和堆肥,14%的焚化和64%的垃圾掩埋,2014年。回收了71%,但只有28%被填埋。考虑到各个欧盟成员国的待遇表现,欧盟28号可分为三类:“回收国”,“过渡国”和“填埋国”。使用三元图法,已经研究并广泛描述了三种类型的可视化的市政废物管理绩效。因此,为了更好地了解过去20年中的市政废物管理绩效,已通过三种不同方式对欧盟所有28个成员国的欧盟统计局表格数据进行了动态可视化:1.废物的“绩效定位”在特定日期的管理单位; 2.一定时期内的“性能动态”;以及3.“性能发展”表示为一个或多个轨道。获得的结果表明,三元图法非常适合用于更好地了解过去的发展和连贯性,用于监视当前情况和预测未来的发展道路。该方法显示的有趣的一致性之一是,在过去的20年中,欧盟28中的回收和堆肥(60-65%)与焚烧(40-35%)性能的关联发展。

著录项

  • 来源
    《Waste Management》 |2017年第3期|558-571|共14页
  • 作者单位

    Department of Environmental and Energy Process Engineering, Waste Processing Technology and Waste Management, Montanuniversitaet Leoben - Franz-Josef-Strasse 18, 8700 Leoben, Austria;

    Department of Environmental and Energy Process Engineering, Waste Processing Technology and Waste Management, Montanuniversitaet Leoben - Franz-Josef-Strasse 18, 8700 Leoben, Austria;

    Department of Environmental and Energy Process Engineering, Waste Processing Technology and Waste Management, Montanuniversitaet Leoben - Franz-Josef-Strasse 18, 8700 Leoben, Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ternary Diagram; Visualisation; Municipal waste; Circular economy; Recycling; Incineration; Disposal;

    机译:三元图;可视化;城市垃圾;循环经济;回收;焚化;处置方式;

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