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Solid residues from Italian municipal solid waste incinerators: A source for 'critical' raw materials

机译:意大利城市固体废物焚化炉中的固体残留物:“关键”原材料的来源

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摘要

The incineration of municipal solid wastes is an important part of the waste management system along with recycling and waste disposal, and the solid residues produced after the thermal process have received attention for environmental concerns and the recovery of valuable metals. This study focuses on the Critical Raw Materials (CRM) content in solid residues from two Italian municipal waste incinerator (MSWI) plants. We sampled untreated bottom ash and fly ash residues, i.e. the two main outputs of common grate-furnace incinerators, and determined their total elemental composition with sensitive analytical techniques such as XRF and ICP-MS. After the removal of a few coarse metallic objects from bottom ashes, the corresponding ICP solutions were obtained using strong digestion methods, to ensure the dissolution of the most refractory components that could host significant amounts of precious metals and CRM. The integration of accurate chemical data with a substance flow analysis, which takes into account the mass balance and uncertainties assessment, indicates that bottom and fly ashes can be considered as a low concentration stream of precious and high-tech metals. The magnesium, copper, antimony and zinc contents are close to the corresponding values of a low-grade ore. The distribution of the elements flow between bottom and fly ash, and within different grain size fractions of bottom ash, is appraised. Most elements are enriched in the bottom ash flow, especially in the fine grained fractions. However, the calculated transfer coefficients indicate that Sb and Zn strongly partition into the fly ashes. The comparison with available studies indicates that the CRM concentrations in the untreated solid residues are comparable with those residues that undergo post-treatment beneficiations, e.g. separation between ferrous and non-ferrous fractions. The suggested separate collection of "fresh" bottom ash, which could be processed for further mineral upgrading, can constitute an attractive option of the waste management system, when physical-mechanical devices are not available or could not be implemented in old MSWI systems. The suggested procedure may lead to the improvement of recovery efficiency up to 83% for CRM and 94% for other valuable metals.
机译:城市固体废物的焚化是废物管理系统的重要组成部分,包括回收利用和废物处置,热处理后产生的固体残留物已引起人们对环境问题和贵重金属回收的关注。这项研究的重点是来自两家意大利市政垃圾焚烧厂(MSWI)的固体残渣中关键原料(CRM)的含量。我们对未经处理的底灰和粉煤灰残留物(即普通g炉焚烧炉的两个主要输出)进行了采样,并使用XRF和ICP-MS等灵敏的分析技术确定了它们的总元素组成。从底灰中除去一些粗金属后,即可使用强力消化方法获得相应的ICP溶液,以确保溶解可能包含大量贵金属和CRM的最难熔成分。考虑到质量平衡和不确定性评估,将准确的化学数据与物质流分析相结合,表明底灰和飞灰可被视为低浓度的贵金属和高科技金属流。镁,铜,锑和锌的含量接近低品位矿石的相应值。评估了元素在底灰和粉煤灰之间以及底灰的不同粒度分数内流动的分布。大多数元素富含底灰流,尤其是细颗粒级分。但是,计算出的传递系数表明Sb和Zn强烈分配到粉煤灰中。与现有研究的比较表明,未经处理的固体残留物中的CRM浓度与经过后处理选择的残留物可比,例如CRM浓度。有色金属和有色金属之间的分离。当物理机械设备不可用或不能在旧的MSWI系统中实现时,建议将“新鲜”底灰分开收集,可以对其进行处理以进一步提高矿物质量,可以构成废物管理系统的一个有吸引力的选择。建议的步骤可能导致CRM的回收效率提高到83%,其他贵重金属的回收效率提高到94%。

著录项

  • 来源
    《Waste Management》 |2015年第11期|206-216|共11页
  • 作者单位

    Dipartimento di Scienze Biologiche, Geologiche e Ambientali - Geology Division, University of Bologna, Piazza di Porta San Donato 1, 40126 Bologna, Italy;

    Dipartimento di Scienze Biologiche, Geologiche e Ambientali - Geology Division, University of Bologna, Piazza di Porta San Donato 1, 40126 Bologna, Italy;

    General and Analytical Chemistry - Montanuniversitaet Leoben, Franz-Josef-Str. 18, 8700 Leoben, Austria;

    Dipartimento di Scienze Biologiche, Geologiche e Ambientali - Geology Division, University of Bologna, Piazza di Porta San Donato 1, 40126 Bologna, Italy;

    General and Analytical Chemistry - Montanuniversitaet Leoben, Franz-Josef-Str. 18, 8700 Leoben, Austria;

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

    MSWI residues; Critical element; Gravitational partitioning; Substance flow analysis;

    机译:MSWI残留物;关键要素引力分区;物质流分析;
  • 入库时间 2022-08-17 13:44:36

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