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Element partitioning in combustion- and gasification-based waste-to-energy units

机译:基于燃烧和气化的废物转化能源单元中的元素分配

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摘要

A critical comparison between combustion- and gasification-based waste-to-energy systems needs a deep knowledge of the mass flows of materials and elements inside and throughout the units. The study collected and processed data from several moving grate conventional incinerators and high-temperature shaft gasiflers with direct melting, which are in operation worldwide. A material and substance flow analysis was then developed to systematically assess the flows and stocks of materials and elements within each waste-to-energy unit, by connecting the sources, pathways, and intermediate and final sinks of each species. The patterns of key elements, such as carbon, chloride and heavy metals, in the different solid and gaseous output streams of the two compared processes have been then defined. The combination of partitioning coefficients with the mass balances on atomic species and results of mineralogical characterization from recent literatures was used to estimate a composition of bottom ashes and slags from the two types of waste-to-energy technologies. The results also allow to quantify some of the performance parameters of the units and, in particular, the potential reduction of the amount of solid residues to be sent to final disposal.
机译:基于燃烧和气化的废物转化为能源的系统之间的关键比较,需要深入了解单元内部和整个单元中材料和元素的质量流。这项研究收集并处理了在全球范围内运行的几台移动炉排常规焚烧炉和直接熔化的高温竖炉气化炉的数据。然后,通过连接每种物种的来源,途径以及中间和最终汇聚区,进行了物质和物质流分析,以系统地评估每个废物转化为能源单元中物质和元素的流向和存量。然后定义了两个比较过程的不同固体和气体输出流中的关键元素(例如碳,氯化物和重金属)的模式。分配系数与原子种类上的质量平衡以及最新文献的矿物学表征结果相结合,用于估算两种能源转化技术产生的底灰和炉渣的组成。结果还可以量化单元的某些性能参数,尤其是可以减少要送至最终处置的固体残渣量的数量。

著录项

  • 来源
    《Waste Management》 |2013年第5期|1142-1150|共9页
  • 作者单位

    Department of Environmental Pharmaceutical and Biological Sciences and Technologies - Second University of Naples, Via Vivaldi, 43, 81100 Caserta, Italy,AMRA s.c.a r.l., Via Nuova Agnano, 11, 80125 Napoli, Italy;

    Department of Environmental Pharmaceutical and Biological Sciences and Technologies - Second University of Naples, Via Vivaldi, 43, 81100 Caserta, Italy;

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

    Combustion; Gasification; Substance flow analysis; Waste-to-energy; Heavy-metals partitioning;

    机译:燃烧;气化;物质流分析;废物转化为能源;重金属分区;

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