Pradhan Harapriya, Jain Sumat Chand, Ghangrekar Makarand M
Department of Civil Engineering, Indian Institute of Technology, Kharagpur, 721302, India.
Appl Biochem Biotechnol. 2015 Dec;177(8):1638-53. doi: 10.1007/s12010-015-1842-5. Epub 2015 Sep 15.
Microbial desalination cell (MDC) has great potential toward direct electricity generation from wastewater and concurrent desalination through potential difference developed due to microbial activity. Degradation of phenol by isolate Pseudomonas aeruginosa in anodic chamber and simultaneous desalination of water in middle desalination chamber of multichamber MDC is demonstrated in this study. Performance of the MDCs with different anodic inoculum conditions, namely pure culture of P. aeruginosa (MDC-1), 50 % v/v mixture of P. aeruginosa and anaerobic mixed consortia (MDC-2) and anaerobic mixed consortia (MDC-3), was evaluated to compare the phenol degradation in anodic chamber, bioelectricity generation, and simultaneous total dissolved solids (TDS) removal from saline water in desalination chamber. Synergistic effect between P. aeruginosa and mixed anaerobic consortia as inoculum was evident in MDC-2 demonstrating phenol degradation of 90 %, TDS removal of 75 % in 72 h of reaction time along with higher power generation of 27.5 mW/m(2) as compared to MDC-1 (95 %, 64 %, 12.8 mW/m(2), respectively) and MDC-3 (58 %, 52 %, 4.8 mW/m(2), respectively). The results illustrate that the multichamber MDC-2 is effective for simultaneous removal of phenol and dissolved solids contained in industrial wastewaters.
微生物脱盐电池(MDC)在利用废水直接发电以及通过微生物活动产生的电位差同时进行脱盐方面具有巨大潜力。本研究展示了在多室MDC的阳极室中,分离出的铜绿假单胞菌对苯酚的降解以及中间脱盐室中水的同步脱盐过程。评估了具有不同阳极接种条件的MDC的性能,即铜绿假单胞菌纯培养物(MDC-1)、铜绿假单胞菌与厌氧混合菌群的50% v/v混合物(MDC-2)以及厌氧混合菌群(MDC-3),以比较阳极室中的苯酚降解、生物电产生以及脱盐室中从盐水中同步去除总溶解固体(TDS)的情况。在MDC-2中,铜绿假单胞菌与混合厌氧菌群作为接种物之间的协同效应明显,在72小时的反应时间内苯酚降解率达90%,TDS去除率达75%,同时与MDC-1(分别为95%、64%、12.8 mW/m²)和MDC-3(分别为58%、52%、4.8 mW/m²)相比,发电功率更高,为27.5 mW/m²。结果表明,多室MDC-2对于同时去除工业废水中的苯酚和溶解固体是有效的。