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Microwave-Leaching of Copper Smelting Dust for Cu and Zn Extraction

机译:铜熔炼粉尘中铜和锌的微波浸出

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摘要

Industrial wastes may contain high concentrations of valuable metals. Extraction and recovery of these metals have several economic and environmental advantages. Various studies showed positive effects of microwaves as a pretreatment method before the leaching of minerals. However, there are empty rooms for exploring simultaneous microwave and leaching (microwave-leaching) of industrial waste material for the production of valuable metals. This investigation examined the microwave-leaching method to extract copper and zinc from a copper-smelter dust (CSD). The results of microwave-leaching mechanism were compared with conventional heating leaching based on kinetics modelling. The final Cu recovery in the conventional heating and microwave irradiation was 80.88% and 69.83%, respectively. Kinetic studies indicated that the leaching reactions follow diffusion across the product layer. Based on X-ray powder diffraction (XRD) analyses, during conventional experiments sulfate; components formed with high intensity as an ash layer which prevents reagent access to the solid surface and decreases the Cu dissolution. While the sulfate components did not detect in the microwave-leaching residuals which means that microwave irradiation helped to decrease the ash layer formation. Taking all mentioned results into consider it can be concluded that microwave-leaching can be considered as an efficient method for extraction of valuable metals from waste materials.
机译:工业废物可能包含高浓度的贵重金属。这些金属的提取和回收具有若干经济和环境优势。各种研究表明,微波作为矿物浸出前的预处理方法具有积极作用。但是,这里有空房间,用于同时探索微波和工业废料的浸出(微波浸出),以生产有价值的金属。这项研究调查了微波浸提法从铜冶炼厂粉尘(CSD)中提取铜和锌的方法。基于动力学模型,将微波浸出机理的结果与常规加热浸出进行了比较。在常规加热和微波辐射下,最终的铜回收率分别为80.8%和69.83%。动力学研究表明,浸出反应跟随产物层中的扩散。根据X射线粉末衍射(XRD)分析,在常规实验中硫酸盐;以高强度形成的灰分成分作为灰分层,可防止试剂进入固体表面并减少Cu的溶解。尽管在微波浸出残留物中未检测到硫酸盐成分,这意味着微波辐射有助于减少灰分层的形成。考虑到所有提到的结果,可以得出结论,微波浸提可以被视为从废料中提取有价值的金属的有效方法。

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