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首页> 外文期刊>Journal of Minerals and Materials Characterization and Engineering >Effect of Blast Furnace Sludge (BFS) Characteristics on Suitable Recycling Process Determining
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Effect of Blast Furnace Sludge (BFS) Characteristics on Suitable Recycling Process Determining

机译:高炉污泥(BFS)特性对合适回收过程确定的影响

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The present study aims to give a detailed characterization of blast furnace sludge (BFS) by using different techniques, in order to determine the most effective recycling method to recover valuable metals from this waste. BFS is composed mainly of hematite, as its iron-bearing phase, and carbon, in addition to fractions of silicate and carbonate materials. The studied BFS shows relatively high contents of iron (Fe) (390 g.kg-1), and carbon (C) (290 g.kg-1), due to abundance of hematite and coke, while the concentration of zinc (Zn) (2.5 g.kg-1) is low. The XRD analyses indicated that, hematite is more concentrated in the fine fraction (<20 μm), while the coarser fraction (90 - 250 μm) is dominated by calcite, quartz and X-ray amorphous coke. SEM-EDX analyses confirmed that particles rich in iron and zinc were detected in the fine fraction (<20 μm) of the sludge. Due to high Fe and C content in BFS, it can be utilized as self-reducing material and briquetting represent a potential method for recycling of blast furnace sludge.
机译:本研究旨在通过使用不同的技术详细描述高炉污泥(BFS),以确定从该废物中恢复有价值金属的最有效的再循环方法。除了硅酸盐和碳酸盐材料的级分之外,BFS主要由赤铁矿和碳,作为其铁轴承阶段和碳组成。所研究的BFS显示出相对高的铁(Fe)(390g.kg-1)和碳(c)(290 g.kg-1)的含量相对较高,而含有丰富的赤铁矿和焦炭,而锌的浓度(Zn )(2.5 g.kg-1)低。 XRD分析表明,赤铁矿更浓缩,在细馏分(<20μm)中,同时较粗糙的级分(90-250μm)由方解石,石英和X射线无定形焦。 SEM-EDX分析证实,在污泥的细馏分(<20μm)中检测富含铁和锌的颗粒。由于BFS中的高Fe和C含量,它可以用作自降低材料和压块代表高炉污泥回收的潜在方法。

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