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Separation and characterization of magnetic fractions from waste-to-energy bottom ash with an emphasis on the leachability of heavy metals

机译:废能对能底灰磁性馏分的分离与表征,重点对重金属透明性的重点

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摘要

Magnetic fractions were extracted from pulverized waste-to-energy (WTE) bottom ashes using a combined wet-dry extraction method. The resulting magnetic and non-magnetic fractions were subjected to compositional, mineralogical, and redox state analyses by X-ray diffraction (XRD), X-ray fluorescence, and X-ray photoelectron spectroscopy (XPS), respectively. The distribution and leaching toxicity of heavy metals were assessed to evaluate potential effects on the environment. Compositional analyses revealed that Fe accounted for 35% of the magnetic fraction of pulverized ashes, which was approximately seven times that of the raw ash. In addition to Fe, elemental Ni, Mn, and Cr were also significantly enriched in the magnetic fractions. The mineralogical analysis determined that Fe was primarily present as hematite and magnetite, and metallic iron was also identified in the magnetic fraction samples. The XPS analysis further proved the existence of zero-valence Fe. However, a significant amount of Fe remained in the non-magnetic fractions, which could partially be ascribed to the intergrowth structure of the various minerals. The elevated concentrations of toxicity characteristic leaching procedure (TCLP)-extracted Mn, Ni, Cr, Cu, Pb, and Zn were primarily ascribed to the lower buffering capability of the magnetic fractions, with the enrichment of Mn, Ni, and Cr in the magnetic fractions also contributing to this elevation.
机译:使用组合的湿干萃取方法从粉碎的废物到能量(WTE)底部萃取磁性级分。通过X射线衍射(XRD),X射线荧光和X射线光电子光谱(XPS)进行所得磁性和非磁性级分的组成,矿物学和氧化还原状态分析。评估重金属的分布和浸出毒性,以评估对环境的潜在影响。组成分析表明,Fe占粉碎灰磁性分数的35%,这约为原料灰的七倍。除了Fe,元素Ni,Mn和Cr之外还显着富集在磁性级分中。矿物学分析确定Fe主要作为赤铁矿和磁铁矿存在,并且还在磁性级分样品中鉴定金属铁。 XPS分析进一步证明了零价零的存在。然而,在非磁性级分中仍有大量的Fe,其可以部分地归因于各种矿物的栖息性。尿性浓度浓度的毒性特征浸出程序(TCLP) - 萃取Mn,Ni,Cr,Cu,Pb和Zn主要归因于磁性级分的较低缓冲能力,富集Mn,Ni和Cr中的富集磁性部分也有助于该升高。

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