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Thermal treatment of stabilized air pollution control residues in a waste incinerator pilot plant. part 1:fate of elements and dioxins

机译:在废物焚化炉中试工厂对稳定的空气污染控制残留物进行热处理。第1部分:元素和二恶英的命运

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Air pollution control (APC) residues from municipal solid waste incinerator plants that are treated by means of the Ferrox process can be more safely disposed of due to reduction of soluble salts and stabilization of heavy metals in an iron oxide matrix. Further stabilization can be obtained by thermal treatment inside a combustion chamber of a municipal solid waste incinerator. The influence of the Ferrox products on the combustion process, the quality of the residues, and the partitioning of heavy metals between the various solids and the gas have been investigated in the Karlsruhe TAMARA pilot plant for waste incineration. During the experiments only few parameters were influenced. An increase in the SO_2 concentration in the raw gas and slightly lower temperatures in the fuel bed could be observed compared with reference tests. Higher contents of Fe and volatile heavy metals such as Zn, Cd, Pb and partly Hg in ,the Ferrox products lead to increased concentration of these elements in the solid residues of the co-feeding tests. Neither the burnout nor the PCDD/F formation was altered by the addition of the Ferrox products. Co-feeding of treated APC residues seems to be a feasible approach for obtaining a single solid residue from waste incineration.
机译:由于减少了可溶性盐的含量并稳定了氧化铁基质中的重金属,因此可以更安全地处置通过Ferrox工艺处理的城市固体废物焚化厂的空气污染控制(APC)残留物。通过在城市固体废物焚化炉的燃烧室内进行热处理可以获得进一步的稳定性。在卡尔斯鲁厄塔玛拉(Karlsruhe TAMARA)垃圾焚烧试验工厂中,研究了Ferrox产品对燃烧过程,残留物质量以及重金属在各种固体和气体之间的分配的影响。在实验期间,只有很少的参数受到影响。与参考测试相比,可以观察到原料气中SO_2浓度的增加和燃料床中温度的略低。 Ferox产品中较高的Fe和挥发性重金属(如Zn,Cd,Pb和部分Hg)含量会导致这些元素在共同进料测试的固体残留物中的浓度增加。通过添加Ferrox产品,不会改变燃尽或PCDD / F的形成。共进料处理过的APC残留物似乎是从废物焚烧中获得单一固体残留物的可行方法。

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