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Grading Characteristics of Texaco Gasification Fine Slag: Quality Distinction and Selective Distribution of Trace Elements

机译:德克萨科气化的分级特性精细渣:质量区分和微量元素的选择性分布

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Aiming at hard-to-reuse gasification fine slag, a new process of treating gasification fine slag by classification was presented. The screening treatment was carried out based on ensuring the original particle size composition of fine slag, and it was divided into six particle size ranges as follows: +0.5, 0.3–0.5, 0.125–0.3, 0.074–0.125, 0.045–0.074, and ?0.045 mm. The physical properties of different size range samples were examined by elemental analysis, X-ray diffraction, X-ray fluorescence, cold field emission scanning electron microscopy, and energy-dispersive spectrometry. The results showed that the carbon content of the median section (0.125–0.3 mm) fine slag had significant improvement compared with the other section fine slag. The carbon distribution of the +0.125 mm fine slag was concentrated, while the carbon distribution of ?0.125 mm was dispersed and closely mixed with minerals. The content of trace elements Cr, Mn, Ni, V, Cd, Pb, and Mo was determined by inductively coupled plasma–mass spectrometry, and the correlation between minerals and trace elements of different particle size-graded fine slag was evaluated by Pearson correlation analysis. The results suggested that high vaporization temperature and metallic oxide forms of trace elements had a strong correlation with feldspar.
机译:旨在难以重复使用气化细渣,提出了通过分类处理气化细渣的新方法。基于确保精细炉渣的原始粒度组成,分为六个粒径范围,如下:+ 0.5,0.3-0.5,0.125-0.3,0.074-0.125,0.045-0.074和?0.045毫米。通过元素分析,X射线衍射,X射线荧光,冷场发射扫描电子显微镜和能量分散光谱法检测不同尺寸范围样品的物理性质。结果表明,与其他段细炉渣相比,中值部分(0.125-0.3毫米)的碳含量具有显着的改善。浓缩+0.125mm细渣的碳分布,同时将碳分布分散,与矿物密切相关。通过电感耦合等离子体质谱法测定痕量元素Cr,Mn,Ni,V,Cd,Pb和Mo的含量,并通过Pearson相关评估不同粒度尺寸分级细渣的矿物质和痕量元素之间的相关性分析。结果表明,高汽化温度和金属氧化物形式的微量元素与长石有很强的相关性。

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