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The application of SRF vs. RDF classification and specifications to the material flows of two mechanical-biological treatment plants of Rome: Comparison and implications

机译:SRF与RDF分类和规范在罗马两家机械生物处理厂的物料流中的应用:比较和意义

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摘要

This work assessed the quality in terms of solid recovered fuel (SRF) definitions of the dry light flow (until now indicated as refuse derived fuel, RDF), heavy rejects and stabilisation rejects, produced by two mechanical biological treatment plants of Rome (Italy). SRF classification and specifications were evaluated first on the basis of RDF historical characterisation methods and data and then applying the sampling and analytical methods laid down by the recently issued SRF standards. The results showed that the dry light flow presented a worst SRF class in terms of net calorific value applying the new methods compared to that obtained from RDF historical data (4 instead of 3). This lead to incompliance with end of waste criteria established by Italian legislation for SRF use as co-fuel in cement kilns and power plants. Furthermore, the metal contents of the dry light flow obtained applying SRF current methods proved to be considerably higher (although still meeting SRF specifications) compared to those resulting from historical data retrieved with RDF standard methods. These differences were not related to a decrease in the quality of the dry light flow produced in the mechanical-biological treatment plants but rather to the different sampling procedures set by the former RDF and current SRF standards. In particular, the shredding of the sample before quartering established by the latter methods ensures that also the finest waste fractions, characterised by higher moisture and metal contents, are included in the sample to be analysed, therefore affecting the composition and net calorific value of the waste. As for the reject flows, on the basis of their SRF classification and specification parameters, it was found that combined with the dry light flow they may present similar if not the same class codes as the latter alone, thus indicating that these material flows could be also treated in combustion plants instead of landfilled. In conclusion, the introduction of SRF definitions, classification and specification procedures, while not necessarily leading to an upgrade of the waste as co-fuel in cement kilns and power plants, may anyhow provide new possibilities for energy recovery from waste by increasing the types of mechanically treated waste flows that may be thermally treated.
机译:这项工作根据罗马(意大利)的两家机械生物处理厂生产的干光流的固体回收燃料(SRF)定义(直至现在表示为垃圾衍生燃料,RDF),重质次品和稳定度次品来评估质量。 。首先根据RDF的历史表征方法和数据对SRF的分类和规格进行评估,然后根据最近发布的SRF标准制定的抽样和分析方法进行评估。结果表明,与使用RDF历史数据获得的净热值相比,采用新方法的净热值表示干光流最差的SRF类(从4代替3)。这导致不符合意大利立法规定的SRF在水泥窑和发电厂中用作辅助燃料的最终废物标准。此外,与使用RDF标准方法检索到的历史数据相比,使用SRF电流方法获得的干光流中的金属含量被证明要高得多(尽管仍满足SRF规范)。这些差异与机械生物处理厂中产生的干光流质量下降无关,而与以前的RDF和当前的SRF标准设定的不同采样程序有关。尤其是,通过后一种方法建立的四分之一样之前切碎样品,可以确保将要分析的样品中还包括水分和金属含量较高的最细的废物部分,从而影响样品的组成和净热值。浪费。至于废品流,根据它们的SRF分类和规格参数,发现与干光流结合使用时,它们可能呈现出与单独使用的分类代码相似甚至相同的类别代码,因此表明这些材料流可能是也要在燃烧厂处理而不是填埋。总之,SRF定义,分类和规范程序的引入虽然不一定导致废物在水泥窑和发电厂中作为辅助燃料的升级,但是无论如何,通过增加废物分类的类型,可能为从废物中回收能源提供新的可能性。机械处理过的可以经过热处理的废物流。

著录项

  • 来源
    《Waste Management》 |2016年第janaptab期|195-205|共11页
  • 作者单位

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico 1, 00133 Rome, Italy;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico 1, 00133 Rome, Italy;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico 1, 00133 Rome, Italy;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico 1, 00133 Rome, Italy;

    Laboratory of Environmental Engineering, Department of Civil Engineering and Computer Science Engineering, University of Rome 'Tor Vergata', Via del Politecnico 1, 00133 Rome, Italy;

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

    Mechanical-biological treatment; Municipal solid waste; Refuse derived fuel; Solid recovered fuel; Waste characterisation; Waste sampling;

    机译:机械生物处理;城市生活垃圾;拒绝衍生燃料;固体回收燃料;废物表征;废物取样;
  • 入库时间 2022-08-17 13:40:23

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