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Recovery of metal values from copper slag and reuse of residual secondary slag

机译:从铜渣中回收金属价值并再利用残余的二次渣

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Resource and environmental factors have become major forces in mining and metallurgy sectors driving research for sustainability purposes. The concept of zero-waste processing has been gaining ground readily. The scant availability of high quality raw materials has forced the researchers to shift their focus to recycling while the exceedingly stringent environmental regulations have forced researchers to explore new frontiers of minimizing/eliminating waste generation. The present work is aimed at addressing both aspects by employing recycling to generate wealth from copper slag and producing utilizable materials at the same time thus restoring the ecosystem. Copper slag was characterized and processed. The pyro-metallurgical processing prospects to generate utilizable materials were arrived at through rigorous ther-modynamic analysis. Carbothermal reduction at elevated temperature (near 1440 ℃) helped recover a majority of the metal values (e.g., Fe, Cu and Mo) into the iron-rich alloy product which can be a feed material for steel making. On the other hand, the non-metallic residue, the secondary slag, can be used in the glass and ceramic industries. Reduction time and temperature and carbon content were shown to be the most important process variables for the reaction which were optimized to identify the most favored operating regime that maximizes the metal recovery and simultaneously maximizes the hardness of the secondary slag and minimizes its density, the two major criteria for the secondary slag product to be utilizable. The flux addition level was shown to have relatively less impact on the process performance if these are maintained at an adequate level. The work established that the copper slag, a waste material, can be successfully processed to generate reusable products through pyrometallurgical processing.
机译:资源和环境因素已成为采矿和冶金领域推动可持续性研究的主要力量。零废物处理的概念已迅速普及。高质量原材料的匮乏迫使研究人员将重点转移到回收方面,而极其严格的环境法规迫使研究人员探索减少/消除废物产生的新领域。当前的工作旨在通过利用回收利用铜渣产生财富并同时生产可利用的材料从而恢复生态系统来解决这两个方面。表征铜渣并进行处理。通过严格的热力学分析得出了热冶金加工产生可利用材料的前景。高温(1440℃附近)的碳热还原有助于将大部分金属值(例如,Fe,Cu和Mo)回收到富铁合金产品中,该产品可以作为炼钢的原料。另一方面,非金属残留物,二次渣,可用于玻璃和陶瓷工业。还原时间,温度和碳含量是反应中最重要的工艺变量,已对其进行了优化,以确定最有利的操作方式,该操作方式可最大程度地提高金属回收率,同时使次生炉渣的硬度最大化并使其密度最小,这两个二级炉渣产品可利用的主要标准。如果将助焊剂添加量保持在适当的水平,则对工艺性能的影响相对较小。这项工作建立了铜渣(一种废料)可以通过火法冶炼成功加工以产生可重复使用的产品的方法。

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