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Energy recovery from waste incineration: Assessing the importance of district heating networks

机译:垃圾焚烧的能量回收:评估区域供热网络的重要性

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Municipal solid waste incineration contributes with 20% of the heat supplied to the more than 400 district heating networks in Denmark. In evaluation of the environmental consequences of this heat production, the typical approach has been to assume that other (fossil) fuels could be saved on a 1:1 basis (e.g. 1 GJ of waste heat delivered substitutes for 1 GJ of coal-based heat). This paper investigates consequences of waste-based heat substitution in two specific Danish district heating networks and the energy-associated interactions between the plants connected to these networks. Despite almost equal electricity and heat efficiencies at the waste incinerators connected to the two district heating networks, the energy and CO_2 accounts showed significantly different results: waste incineration in one network caused a CO_2 saving of 48 kg CO_2/GJ energy input while in the other network a load of 43 kg CO_2/GJ. This was caused mainly by differences in operation mode and fuel types of the other heat producing plants attached to the networks. The paper clearly indicates that simple evaluations of waste-to-energy efficiencies at the incinerator are insufficient for assessing the consequences of heat substitution in district heating network systems. The paper also shows that using national averages for heat substitution will not provide a correct answer: local conditions need to be addressed thoroughly otherwise we may fail to assess correctly the heat recovery from waste incineration.
机译:市政固体废物焚烧为丹麦的400多个区域供热网络提供了20%的热量。在评估这种热量产生的环境后果时,通常的方法是假设可以以1:1的基础节省其他(化石)燃料(例如,提供1 GJ的废热替代了1 GJ的煤基热)。 )。本文研究了两个特定的丹麦区域供热网络中基于废物的热替代的后果以及与这些网络相连的工厂之间的能量相关相互作用。尽管连接到两个区域供热网络的废物焚化炉的电力和热效率几乎相等,但能源和CO_2帐户显示出显着不同的结果:一个网络中的废物焚化可节省48 kg CO_2 / GJ能源输入,而另一个网络网络负载43 kg CO_2 / GJ。这主要是由于与网络连接的其他热电厂的运行方式和燃料类型的差异所致。该文件清楚地表明,简单地评估焚化炉的废物转化为能源效率不足以评估区域供热网络系统中热替代的后果。该文件还表明,使用全国平均水平进行热量替代不会提供正确的答案:必须彻底解决当地条件,否则我们可能无法正确评估废物焚烧的热量回收。

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  • 来源
    《Waste Management》 |2010年第7期|1264-1272|共9页
  • 作者单位

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

    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;

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