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Energy efficiency of substance and energy recovery of selected waste fractions

机译:物质的能效和部分废物的能量回收

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摘要

In order to reduce the ecological impact of resource exploitation, the EU calls for sustainable options to increase the efficiency and productivity of the utilization of natural resources. This target can only be achieved by considering resource recovery from waste comprehensively. However, waste management measures have to be investigated critically and all aspects of substance-related recycling and energy recovery have to be carefully balanced. This article compares recovery methods for selected waste fractions with regard to their energy efficiency. Whether material recycling or energy recovery is the most energy efficient solution, is a question of particular relevance with regard to the following waste fractions: paper and cardboard, plastics and bio-waste and also indirectly metals. For the described material categories material recycling has advantages compared to energy recovery. In accordance with the improved energy efficiency of substance opposed to energy recovery, substance-related recycling causes lower emissions of green house gases. For the fractions paper and cardboard, plastics, biowaste and metals it becomes apparent, that intensification of the separate collection systems in combination with a more intensive use of sorting technologies can increase the extent of material recycling. Collection and sorting systems must be coordinated. The objective of the overall system must be to achieve an optimum of the highest possible recovery rates in combination with a high quality of recyclables. The energy efficiency of substance related recycling of biowaste can be increased by intensifying the use of anaerobic technologies. In order to increase the energy efficiency of the overall system, the energy efficiencies of energy recovery plants must be increased so that the waste unsuitable for substance recycling is recycled or treated with the highest possible energy yield.
机译:为了减少资源开发的生态影响,欧盟呼吁采取可持续的选择方案,以提高自然资源利用的效率和生产率。只有全面考虑从废物中回收资源,才能实现这一目标。但是,必须认真研究废物管理措施,并且必须仔细权衡与物质相关的回收和能量回收的所有方面。本文比较了选定废物级分的回收方法的能源效率。材料回收还是能量回收是最节能的解决方案,这是与以下废物部分特别相关的问题:纸张和纸板,塑料和生物废物以及间接金属。对于所描述的材料类别,材料回收与能量回收相比具有优势。根据与能量回收相反的物质提高的能源效率,与物质有关的再循环导致温室气体的排放量降低。对于纸和纸板,塑料,生物废料和金属的馏分,显而易见的是,单独收集系统的强化与更密集地使用分选技术的结合可以增加材料回收的程度。收集和分类系统必须协调。整个系统的目标必须是结合最高质量的可回收物料,以实现最佳的最高回收率。通过加强厌氧技术的使用,可以提高与物质相关的生物废料循环利用的能源效率。为了提高整个系统的能源效率,必须提高能源回收厂的能源效率,以便将不适合物质回收的废物进行回收或以尽可能高的能源产量进行处理。

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  • 来源
    《Waste Management》 |2011年第4期|p.644-648|共5页
  • 作者单位

    Technical University of Braunschweig, Leichtweiss-lnstitute, Department of Waste and Resource Management, Beethovenstrasse 51a, 38106 Braunschweig, Germany;

    Technical University of Braunschweig, Leichtweiss-lnstitute, Department of Waste and Resource Management, Beethovenstrasse 51a, 38106 Braunschweig, Germany;

    Bauhaus-Universitat Weimar, Faculty of Civil Engineering, Waste Management, Coudraystrasse 7, 99423 Weimar, Germany;

    Bauhaus-Universitat Weimar, Faculty of Civil Engineering, Waste Management, Coudraystrasse 7, 99423 Weimar, Germany;

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