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Chemical and microbial leaching of base metals from obsolete cell-phone printed circuit boards

机译:过时的手机印刷电路板中贱金属的化学和微生物浸出

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Bioleaching process is recommended for the recovery of metals from electronic waste (E-waste) due to its environment-friendly nature and a rich source of metals present in the E-waste. Each gram of cell phone printed circuit boards (PCBs) powder used in the study contained 275.5, 17.85 and 19.55?mg copper, zinc and nickel as major metal constituents respectively. The chemical leaching by mixture of ferric sulphate and ferrous sulphate (70:30) at 100?g?L?1pulp density was best for copper leaching among the studied systems in which after 4?d of reaction time, 2740?mg copper was solubilized from cell phone PCB powder, while ferric sulphate alone was best for zinc and nickel solubilisation, in which 88?mg zinc and 135?mg nickel were solubilised after 4?d and 7?d of reaction time, respectively.Bioleaching study showed that with acidophilic iron oxidizers, pH 1.8 and initial ferrous concentration 9?g?L?1were optimum for Cu–Zn–Ni extraction from discarded cell phone PCB powder. Cu–Zn–Ni extractions from 10?g?L?1cell phone PCB powder pulp density by the metabolites of iron-oxidizing consortium were 275, 5 and 11?mg, while at 50 and 100?g?L?1pulp density, extractions were 1350, 18 and 53?mg, and 2640, 25 and 100?mg, respectively. The process can be further scaled-up for higher pulp density.
机译:建议采用生物浸提工艺从电子废物(电子废物)中回收金属,因为它具有环境友好性,并且电子废物中存在丰富的金属来源。研究中使用的每克手机印刷电路板(PCB)粉末分别包含275.5、17.85和19.55mg的铜,锌和镍作为主要金属成分。在所研究的系统中,硫酸铁和硫酸亚铁(70:30)的混合物以100?g?L?1的纸浆密度进行化学浸出最适合于铜的浸出,其中反应4 d后溶解了2740mg的铜。从手机PCB粉末中提取,而硫酸铁最适合锌和镍的溶解,在反应4 d和7 d后,分别溶解了88 mg锌和135 mg镍。最适合从废弃手机PCB粉末中提取Cu-Zn-Ni的pH为1.8的嗜酸性铁氧化剂和初始亚铁浓度为9?g?L?1。铁氧化财团代谢产物从10?g?L?1手机PCB粉末浆密度中提取的Cu-Zn-Ni分别为275、5和11?mg,而在50和100?g?L?1浆密度下提取分别为1350、18和53?mg,以及2640、25和100?mg。该工艺可以进一步扩大规模,以获得更高的纸浆密度。

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