用水淬硅锰渣改性铜渣复合材料

IF 1.6 4区 材料科学 Q2 METALLURGY & METALLURGICAL ENGINEERING Isij International Pub Date : 2024-07-31 DOI:10.2355/isijinternational.isijint-2023-471
Bin Zheng, Liang Jiang, Fenglan Han, Hui Su, Pengxiang Li, Xinwei Gong
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引用次数: 0

摘要

冶金工业在生产铜合金和硅锰合金时,经常会排放含有宝贵元素的炉渣,而这些元素的利用率却很低。为了提高利用率,本研究提出了一种将铜渣与水淬硅锰渣和 CaO 混合进行焙烧和改性的方法。本研究采用 FactSage 8.0、DSC-TG 和 XRD 来检测改性过程中的相变,并研究 CaO 含量、焙烧温度和保温时间对改性效果的影响。结果表明,添加水淬硅锰渣和 CaO 能有效地促进辉绿岩向(锰、镁、铁)Fe2O4 的转化,其中 CaO 含量为 10%时转化率最高。温度的升高和时间的延长有利于辉绿岩的转化,但过高的温度或过长的时间会导致铁的损失。在 1400 °C 下焙烧 60 分钟可达到最佳回收率和铁品位。该方法可提供适用于生产含铜抗菌不锈钢和耐磨铸铁的精矿,尾矿可用于生产陶瓷材料。
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Modification of Copper Slag Composite with Water-Quenched Silicon-Manganese Slag

Metallurgical industries often discharge slag containing valuable elements that are poorly utilized when producing copper alloys and silicon-manganese alloys. To improve the utilization rate, in this study, a method to mix copper slag with water-quenched silicon-manganese slag and CaO for roasting and modification was proposed. In this work, FactSage 8.0, DSC-TG, and XRD were used to examine the phase change during the modification process and investigate the impacts of the CaO content, roasting temperature, and holding time on the modification effect. The results showed that the addition of water-quenched silicon-manganese slag and CaO could effectively promote the transformation of fayalite to (Mn, Mg, Fe)Fe2O4, with the highest conversion rate occurring at a 10% CaO content. An increase in the temperature and prolongation of the time facilitated fayalite transformation, but excessive temperature or time could result in iron loss. The optimal recovery rate and iron grade were achieved with roasting at 1400 °C for 60 min. This method can provide a concentrate suitable for producing copper-containing antibacterial stainless steel and wear-resistant cast iron, and the tailings can be used to produce ceramic materials.

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来源期刊
Isij International
Isij International 工程技术-冶金工程
CiteScore
3.40
自引率
16.70%
发文量
268
审稿时长
2.6 months
期刊介绍: The journal provides an international medium for the publication of fundamental and technological aspects of the properties, structure, characterization and modeling, processing, fabrication, and environmental issues of iron and steel, along with related engineering materials.
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