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Effects of operational parameters on the bio-assisted leaching of metals from pyrolysed printed circuit boards

机译:操作参数对热解式印刷电路板生物辅助浸出的影响

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End-of-life printed circuit boards have been subjected to proprietary pyrolysis resulting in a copper-rich char. This study details their downstream processing by hydrometallurgy for copper recovery. The pyrolysed PCBs were reacted with two different bi-oleaching solutions containing mixed mesophilic microbial consortia and a synthetic chemical solution for comparative purposes. The influence of char pre-treatment, reactor type, working temperature, and the origin of leaching solution on the dissolution of the zero valent copper was studied. It was found, that the type of reactor had a more pronounced effect than the origin of bacterial solu?tion in bringing copper in solution. Characterisation of the leached char confirmed the importance of the pre-treatment step. Other than ferric iron concentration and temperature, the leaching efficiency and kinetics were largely influenced by the bacterial activity. The fact that copper was brought into solution by ferric iron at starting concentrations well below the stoichiometric requirement, implies bacterial regeneration of the ferric iron and its cycling in the system.
机译:寿命终端印刷电路板已经受到专有的热解,导致富含铜的炭。本研究详细介绍了它们对铜回收的氢磨机的下游处理。使昏裂的PCB与含有混合嗜苯胺微生物聚集体的两种不同的双反果溶液和合成化学溶液反应,以进行比较目的。研究了Char预处理,反应器型,工作温度和浸出溶液对零价铜溶解的影响。结果发现,反应器的类型具有比细菌溶解于溶液中铜的起源更明显的效果。浸出炭的表征证实了预处理步骤的重要性。除了铁浓度和温度之外,浸出效率和动力学主要受细菌活性的影响。通过铁铁在开始浓度低于化学计量要求的浓度下将铜进入溶液的事实,意味着铁铁的细菌再生及其在系统中的循环。

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