首页> 外文会议>International Conference on Metallurgy and Materials >INVESTIGATION ON POSSIBLE USE OF PALM NUTSHELLS AS REDUCTANT FOR THE REDUCTION OF COPPER SLAG FOR COPPER RECOVERY
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INVESTIGATION ON POSSIBLE USE OF PALM NUTSHELLS AS REDUCTANT FOR THE REDUCTION OF COPPER SLAG FOR COPPER RECOVERY

机译:棕榈壳作为还原剂还原铜渣回收铜的可行性研究

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The depletion of ores from the first sources on one hand has led to using damped materials that contain valuable metals to be recycled while environmental threats are being targeted and on the other hand high price of reductant coupled with their depletion have caused a stir in the metallurgical industry. Many slags are currently recycled for the recovery of valuable metals while new reductants are being tested for eventually replace the generic reductants. In this work, copper slag from Water-jacket furnace have been used to recover copper in presence of raw palm nutshells as possible replacement of generic reductants. Characterisation of the copper slag, the palm nutshells and products were conducted using XRD, XRF and SEM-EDS. Results have shown that dominants elements in the slag were Fe 33.83 wt%, Zn 6.73 wt%, Cu 1.26 wt%. Raw palm nutshells analyses revealed 6.39 wt% moisture, 61.56 wt% volatile matters and 4.35 wt% ash content while fixed carbon amounted to be 27.89 % and loss of ignition (LOI) 91.8 %. The reduction experiments were conducted in a horizontal tube furnace at 1300 °C under argon to create an inert environment and efficiently test the reducing capability of the palm nutshells. The composition of the metal produced revealed 41.84 wt% Cu, 26.41 wt% Co and 31.75 wt% Fe. However, it was noticed that the miscibility of the metal and the slag was prominent. As a first attempt, results showed very promising and further investigations are required to reveal optimums conditions.
机译:一方面,第一来源矿石的枯竭导致使用含有贵重金属的潮湿材料进行回收,同时环境威胁正在成为目标,另一方面,还原剂的高价格及其枯竭在冶金行业引起了轰动。目前,许多炉渣被回收用于回收有价值的金属,而新的还原剂正在进行测试,以最终取代通用还原剂。在这项工作中,水套炉的铜渣被用于在生棕榈壳存在的情况下回收铜,作为通用还原剂的替代品。利用XRD、XRF和SEM-EDS对铜渣、棕榈壳和产品进行了表征。结果表明,炉渣中的主要元素为Fe 33.83 wt%、Zn 6.73 wt%、Cu 1.26 wt%。原始棕榈坚果壳分析显示水分含量为6.39 wt%,挥发性物质含量为61.56 wt%,灰分含量为4.35 wt%,而固定碳含量为27.89%,失火率(LOI)为91.8%。在1300°C水平管式炉中,在氩气下进行还原实验,以创造惰性环境,并有效测试棕榈果壳的还原能力。所生产的金属成分显示出41.84 wt%的铜、26.41 wt%的钴和31.75 wt%的铁。然而,人们注意到,金属和炉渣的相容性是显著的。作为第一次尝试,结果显示非常有希望,需要进一步研究以揭示最佳条件。

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