Recovery of Metals from Acid Mine Drainage by Bioelectrochemical System Inoculated with a Novel Exoelectrogen, Pseudomonas sp. E8

被引:35
作者
Ai, Chenbing [1 ,2 ,3 ]
Hou, Shanshan [2 ,4 ]
Yan, Zhang [2 ,4 ,5 ]
Zheng, Xiaoya [2 ,4 ]
Amanze, Charles [2 ,4 ]
Chai, Liyuan [1 ,3 ]
Qiu, Guanzhou [2 ,4 ]
Zeng, Weimin [2 ,4 ]
机构
[1] Cent South Univ, Sch Met & Environm, Changsha 410083, Hunan, Peoples R China
[2] Cent South Univ, Sch Minerals Proc & Bioengn, Changsha 410083, Hunan, Peoples R China
[3] Cent South Univ, Chinese Natl Engn Res Ctr Control & Treatment Hea, Changsha 410083, Hunan, Peoples R China
[4] Cent South Univ, Key Lab Biomet, Minist Educ, Changsha 410083, Hunan, Peoples R China
[5] Fujian Normal Univ, Coll Environm Sci & Engn, Fujian Key Lab Pollut Control & Resource Reuse, Fuzhou 350007, Fujian, Peoples R China
基金
中国国家自然科学基金;
关键词
acid mine drainage; metal recovery; exoelectrogen; microbial fuel cell; microbial electrolysis cell; MICROBIAL FUEL-CELLS; METALLOSPHAERA-SEDULA; SELF-DRIVEN; WASTE-WATER; BIOELECTRICITY; ELECTROLYSIS; COPPER; CHALCOPYRITE; RESISTANCE; OXIDATION;
D O I
10.3390/microorganisms8010041
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Acid mine drainage (AMD) is a typical source of environmental pollution ascribing to its characteristics of high acidity and heavy metal content. Currently, most strategies for AMD treatment merely focus on metal removal rather than metal recovery. However, bioelectrochemical system (BES) is a promising technology to simultaneously remove and recover metal ions from AMD. In this study, both cupric ion and cadmium ion in simulated AMD were effectively recovered by BES inoculated with a novel exoelectrogen, Pseudomonas sp. E8, that was first isolated from the anodic electroactive biofilm of a microbial fuel cell (MFC) in this study. Pseudomonas sp. E8 is a facultative anaerobic bacterium with a rod shape, 0.43-0.47 mu m wide, and 1.10-1.30 mu m long. Pseudomonas sp. E8 can agglomerate on the anode surface to form a biofilm in the single-chamber MFC using diluted Luria-Bertani (LB) medium as an energy substrate. A single-chamber MFC containing the electroactive Pseudomonas sp. E8 biofilms has a maximum output voltage of 191 mV and a maximum power density of 70.40 mW/m(2), which is much higher than those obtained by most other exoelectrogenic strains in the genus of Pseudomonas. Almost all the Cu2+ (99.95% +/- 0.09%) and Cd2+ (99.86% +/- 0.04%) in simulated AMD were selectively recovered by a microbial fuel cell (MFC) and a microbial electrolysis cell (MEC). After the treatment with BES, the high concentrations of Cu2+(184.78 mg/L), Cd2+(132.25 mg/L), and total iron (49.87 mg/L) in simulated AMD were decreased to 0.02, 0.19, and 0 mg/L, respectively. Scanning electron micrograph (SEM), energy dispersive X-ray spectrometry (EDXS) and X-ray diffraction (XRD) analysis indicate that the Cu2+ and Cd2+ in simulated AMD were selectively recovered by microbial electrochemical reduction as Cu-0 (together with trace amounts of Cu2O) or Cd-0 on the cathode surface. Collectively, data suggest that Pseudomonas sp. E8 has great potential for AMD treatment and metal recovery.
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页数:15
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