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Material and energy recovery in integrated waste management systems. An evaluation based on life cycle assessment

机译:综合废物管理系统中的材料和能量回收。基于生命周期评估的评估

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摘要

This paper reports the environmental results, integrated with those arising from mass and energy balances, of a research project on the comparative analysis of strategies for material and energy recovery from waste, funded by the Italian Ministry of Education, University and Research. The project, involving the cooperation of five University research groups, was devoted to the optimisation of material and energy recovery activities within integrated municipal solid waste (MSW) management systems. Four scenarios of separate collection (overall value of 35%, 50% without the collection of food waste, 50% including the collection of food waste, 65%) were defined for the implementation of energetic, environmental and economic balances. Two sizes of integrated MSW management system (IWMS) were considered: a metropolitan area, with a gross MSW production of 750,000 t/year and an average province, with a gross MSW production of 150,000 t/year. The environmental analysis was conducted using Life Cycle Assessment methodology (LCA), for both material and energy recovery activities. In order to avoid allocation we have used the technique of the expansion of the system boundaries. This means taking into consideration the impact on the environment related to the waste management activities in comparison with the avoided impacts related to the saving of raw materials and primary energy. Under the hypotheses of the study, both for the large and for the small IWMS, the energetic and environmental benefits are higher than the energetic and environmental impacts for all the scenarios analysed in terms of all the indicators considered: the scenario with 50% separate collection in a drop-off scheme excluding food waste shows the most promising perspectives, mainly arising from the highest collection (and recycling) of all the packaging materials, which is the activity giving the biggest energetic and environmental benefits. Main conclusions of the study in the general field of the assessment of the environmental performance of any integrated waste management scheme address the importance of properly defining, beyond the design value assumed for the separate collection as a whole, also the yields of each material recovered; particular significance is finally related to the amount of residues deriving from material recovery activities, resulting on average in the order of 20% of the collected materials.
机译:本文报告了由意大利教育,大学和研究部资助的一项研究项目的环境结果,该结果与质量和能量平衡产生的结果相结合,该研究项目是从废物中回收材料和能量的策略的比较分析。该项目由五个大学研究小组合作,致力于优化城市生活垃圾综合管理系统中的材料和能源回收活动。为实现能源,环境和经济的平衡,定义了四个单独收集的方案(总价值35%,不收集食物垃圾的总价值的50%,包括食物垃圾收集的总价值的50%,65%)。考虑了两种规模的城市生活垃圾综合管理系统(IWMS):一个城市地区,城市生活垃圾的总产量为750,000吨/年;一个省份,每个城市平均生活垃圾的总产量为150,000吨/年。使用生命周期评估方法(LCA)对材料和能量回收活动进行了环境分析。为了避免分配,我们使用了扩展系统边界的技术。这意味着与避免与节约原材料和一次能源有关的影响相比,要考虑到与废物管理活动有关的环境影响。在该研究的假设下,无论是大型还是小型IWMS,就所考虑的所有指标而言,对于所分析的所有方案,其能量和环境效益均高于其对能量和环境的影响:单独收集50%的方案在一项下架计划中,排除食物垃圾的观点最有前途,主要来自所有包装材料的最高收集(和回收),这是赋予最大能量和环境效益的活动。在对任何综合废物管理计划的环境绩效进行评估的一般领域中,研究的主要结论是,除了为整个单独收集所设想的设计价值之外,还应适当地确定回收的每种物质的产量;最后,特别重要的是与材料回收活动中产生的残留物数量有关,平均约占所收集材料的20%。

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  • 来源
    《Waste Management》 |2011年第10期|p.2092-2101|共10页
  • 作者单位

    Politecnico di Milano - DIIAR, Environmental Section, P.zza Leonardo da Vinci, 32, 20133 Milano, Italy;

    Politecnico di Milano - DIIAR, Environmental Section, P.zza Leonardo da Vinci, 32, 20133 Milano, Italy;

    Politecnico di Milano - DIIAR, Environmental Section, P.zza Leonardo da Vinci, 32, 20133 Milano, Italy;

    Politecnico di Milano - DIIAR, Environmental Section, P.zza Leonardo da Vinci, 32, 20133 Milano, Italy;

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