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首页> 外文期刊>Journal of Environmental Management >Bacterially-assisted recovery of cadmium and nickel as their metal sulfide nanoparticles from spent Ni-Cd battery via hydrometallurgical route
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Bacterially-assisted recovery of cadmium and nickel as their metal sulfide nanoparticles from spent Ni-Cd battery via hydrometallurgical route

机译:通过湿法冶金从废镍镉电池中细菌辅助回收镉和镍作为金属硫化物纳米粒子

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摘要

Soaring demand for technology metals (e.g., Cd, Ni) and its ever-depleting primary resources ask for alternative recovery from secondary sources. Ni-Cd battery is one such source that can abridge the gap between demand and supply of such metals. Biogenic recovery, being environmentally benign, is explored for Cd and Ni recovery to manage the menace of spent Ni-Cd battery. Studies with 20, 40 and 60 mg/L Cd~(2+) initial concentrations in batch mode (in triplicates) at pH 7.0 ± 0.2, 30 ± 0.5 ℃ and 120 rpm were conducted using sulfate-reducing bacteria for 10 days. Analysis of extracellular polymeric substance revealed that protein secretion was enhanced, thereby forming Cd-EPS binding. Biosolids were collected and freeze-dried for morphological analysis viz. FESEM/EDX, PXRD and TEM, which revealed the formation of CdS nanoparticles (JCPDS card #00-042-1411) in range of 2-6 nm. Similarly, combined effect with 5, 10 and 20 mg/L Ni~(2+) at 20 mg/L Cd~(2+) were also investigated. Furthermore, to test the efficacy for real field application, spent Ni-Cd battery was dismantled and its powder was characterized, digested with concentrated HC1 at 70 ℃ and was fed in batch mode after cooling, wherein nanoparticles of Ni and Cd sulfides were formed that has potential as semi-conducting material.
机译:对技术金属(例如Cd,Ni)的飙升需求及其不断消耗的主要资源要求从次要来源进行替代回收。镍镉电池就是其中一种,可以缩小此类金属的供需差距。探索了对环境有益的生物回收,以回收镉和镍,以管理废旧镍镉电池的危害。使用硫酸盐还原菌在20、40和60 mg / L Cd〜(2+)初始浓度下以分批模式(一式三份)在pH 7.0±0.2、30±0.5℃和120 rpm下进行了10天的研究。细胞外聚合物质的分析显示蛋白质分泌增加,从而形成Cd-EPS结合。收集生物固体并冷冻干燥以进行形态分析。 FESEM / EDX,PXRD和TEM揭示了在2-6 nm范围内形成CdS纳米颗粒(JCPDS卡号00-042-1411)。同样,还研究了在20 mg / L Cd〜(2+)下与5、10和20 mg / L Ni〜(2+)的联合作用。此外,为了测试其在现场应用的功效,将废旧的镍镉电池进行了表征,并对其粉末进行了表征,然后在70℃下用浓HCl对其进行消解,并在冷却后分批进料,从而形成了镍和镉硫化物的纳米颗粒,具有作为半导体材料的潜力。

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