微生物对Cu2+的固定和适应增强了微生物Fe2+的氧化,用于在混合金属离子存在下对印刷电路板的生物浸出。

IF 2.5 4区 生物学 Q3 MICROBIOLOGY Research in microbiology Pub Date : 2024-01-01 DOI:10.1016/j.resmic.2023.104148
Musa D. Maluleke, Athanasios Kotsiopoulos, Elaine Govender-Opitz, Susan T.L. Harrison
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引用次数: 0

摘要

循环经济需要有效地重复使用有限的资源,例如废弃电气和电子设备(WEEE)中的金属。在回收贵金属之前,从印刷电路板中提取和回收贱金属的生物浸出有可能增加金属的圆形度。然而,从多氯联苯中释放并在多氯联苯浸出液中积累的碱金属对微生物Fe2+氧化的抑制作用可能会限制这种方法,Fe2+氧化是Fe3+再生的关键生物浸出子过程。在这里,我们探索了微生物固定在聚氨酯泡沫(PUF)上的潜力,以及对铜离子的适应,以最大限度地减少多氯联苯释放的混合金属,特别是锌、镍和锡的抑制,并提高多氯联苯生物浸出系统中的Fe2+氧化率。以嗜铁钩端螺旋体(Leptospirillum ferriphilum)、嗜铜酸浆菌(Acidiplasma cuicumulans)和嗜酸硫杆菌(Acidithiobacillus caldus)为优势菌的混合嗜温培养基固定在PUF上,并适应6g/L的Cu2+。将Cu适应的固定化细胞对抑制性金属离子Zn2+、Ni2+和Sn2+的耐受性(作为个体(0-10g/L))以及在0-20%(质量/体积)的固体负载下通常从PCB浸出的浓度下的混合金属离子与未适应的固定细胞的耐受性进行比较。此外,还评估了多氯联苯浸出液中溶质的影响。单个金属离子的抑制作用依次为Sn2+>Ni2+>Zn2+。混合金属离子对亚铁氧化的抑制作用相对于单个金属离子是协同作用的。即使在金属浓度较低的情况下,PCB浸出液也比混合金属离子和单个金属离子更具抑制性。Cu适应的固定化细胞比未适应的细胞对抑制性金属离子浓度的增加表现出更高的耐受性。这些结果对铜适应细胞在多氯联苯和多种金属精矿的生物浸出中的应用具有前景。
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Microbial immobilisation and adaptation to Cu2+ enhances microbial Fe2+ oxidation for bioleaching of printed circuit boards in the presence of mixed metal ions

A circular economy requires effective re-use of finite resources, such as metals from waste electrical and electronic equipment (WEEE). Bioleaching for extraction and recovery of base metals from printed circuit boards (PCBs) before recovering precious metals has potential to increase metal circularity. However, inhibition by base metals released from the PCBs and accumulated in PCB leachates on microbial Fe2+ oxidation, a critical bioleaching sub-process for Fe3+ regeneration, can limit this approach. Here, we explore the potential of microbial immobilisation on polyurethane foam (PUF) and adaptation to cupric ions to minimise inhibition by mixed metals released from PCBs, particularly zinc, nickel, and tin, and enhancing Fe2+ oxidation rates in PCB bioleaching systems. A mixed mesophilic culture dominant in Leptospirillum ferriphilum, Acidiplasma cupricumulans and Acidithiobacillus caldus was immobilised on PUF and adapted to 6 g/L Cu2+. Tolerance of Cu-adapted immobilised cells to the inhibitory metal ions Zn2+, Ni2+, and Sn2+, as individual (0–10 g/L) and mixed metal ions at concentrations typically leached from PCBs at solids loadings of 0–20% (mass/volume) was compared to that of non-adapted immobilised cells. Further, the impact of solutes from PCB leachates was evaluated. Inhibition by individual metal ions decreased in the order Sn2+ > Ni2+ > Zn2+. Inhibition of ferrous iron oxidation by mixed metal ions was synergistic with respect to individual metal ions. PCB leachates were more inhibitory than both mixed and individual metal ions even where metal concentration was low. Cu-adapted immobilised cells exhibited higher tolerance to increasing concentrations of inhibitory metal ions than non-adapted cells. These results are promising for the application of Cu-adapted cells in the bioleaching of PCBs and multi-metal concentrates.

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来源期刊
Research in microbiology
Research in microbiology 生物-微生物学
CiteScore
4.10
自引率
3.80%
发文量
54
审稿时长
16 days
期刊介绍: Research in Microbiology is the direct descendant of the original Pasteur periodical entitled Annales de l''Institut Pasteur, created in 1887 by Emile Duclaux under the patronage of Louis Pasteur. The Editorial Committee included Chamberland, Grancher, Nocard, Roux and Straus, and the first issue began with Louis Pasteur''s "Lettre sur la Rage" which clearly defines the spirit of the journal:"You have informed me, my dear Duclaux, that you intend to start a monthly collection of articles entitled "Annales de l''Institut Pasteur". You will be rendering a service that will be appreciated by the ever increasing number of young scientists who are attracted to microbiological studies. In your Annales, our laboratory research will of course occupy a central position, but the work from outside groups that you intend to publish will be a source of competitive stimulation for all of us."That first volume included 53 articles as well as critical reviews and book reviews. From that time on, the Annales appeared regularly every month, without interruption, even during the two world wars. Although the journal has undergone many changes over the past 100 years (in the title, the format, the language) reflecting the evolution in scientific publishing, it has consistently maintained the Pasteur tradition by publishing original reports on all aspects of microbiology.
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