首页> 外文期刊>Journal of Hazardous Materials >A novel step-wise indirect bioleaching using biogenic ferric agent for enhancement recovery of valuable metals from waste light emitting diode (WLED)
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A novel step-wise indirect bioleaching using biogenic ferric agent for enhancement recovery of valuable metals from waste light emitting diode (WLED)

机译:使用生物铁试剂的新型分步间接生物浸提技术,可提高从废发光二极管(WLED)中回收有价值的金属的能力

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摘要

Waste light-emitting diodes (WLED) are of major interest as they are a considered secondary source of valuable metals with a high potential for polluting the environment. To recover the valuable metals from WLEDs, various methods have been applied such as direct and indirect bioleaching. A novel step-wise indirect bioleaching process has been developed in this study for recycling valuable metals from WLEDs using adapted Acidithiobacillus ferrooxidans. The ferric ion concentration was controlled at 4-5 g/L with step-wise addition of biogenic ferric for faster bioleaching rate. The results indicated the negative effect of bacterial attachment in bioleaching of WLEDs. A direct bioleaching offers low copper, nickel, and gallium leach yields, while all metals recovery improved with step-wise indirect bioleaching. At a pulp density of 20 g/L, the copper, nickel, and gallium recovery efficiency was 83%, 97%, 84%, respectively. In addition, leaching time was reduced to 15 days from 30 days. From a technological perspective, the study proved that step-wise indirect bioleaching by biogenic ferric resulted in maximum valuable metal recovery from WLEDs at a low cost and via a short, simple and environmentally-friendly process.
机译:废弃发光二极管(WLED)引起人们的极大关注,因为它们被认为是有价值的金属的二级来源,具有极高的污染环境的潜力。为了从WLED中回收有价值的金属,已经采用了各种方法,例如直接和间接生物浸出。在这项研究中,已经开发出一种新颖的逐步间接生物浸出工艺,用于使用适应性强酸铁硫杆菌从WLED回收有价值的金属。逐步加入生物铁,以加快生物浸出速度,将铁离子浓度控制在4-5 g / L。结果表明细菌附着对WLEDs的生物浸出具有负面影响。直接生物浸提的铜,镍和镓浸出率低,而逐步逐步间接生物浸提可提高所有金属的回收率。纸浆密度为20 g / L时,铜,镍和镓的回收率分别为83%,97%和84%。此外,浸出时间从30天减少到15天。从技术角度来看,该研究证明,通过成因铁的逐步分步间接生物浸出可以通过低成本,短时间,简单且环保的方法从WLED中最大程度地回收有价值的金属。

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