Kiliç Nur Koçberber, Nielsen Jeppe Lund, Yüce Meral, Dönmez Gönül
Faculty of Science, Biotechnology Division, Ankara University, Department of Biology, 06100 Beşevler, Ankara, Turkey.
Chemosphere. 2007 Mar;67(4):826-31. doi: 10.1016/j.chemosphere.2006.08.041. Epub 2007 Jan 10.
A microbial consortia consisting of three bacteria isolated from tanning and textile wastewaters revealed high capacity to simultaneously bioaccumulate dye and Cr(VI). The identity of the bacteria were determined by 16S rRNA gene analysis to be closely related to Ochrobactrium sp., Salmonella enterica and Pseudomonas aeruginosa. Dependence of initial pH values and range of concentrations of the dye Reactive Black B (33.2-103.1 mg l(-1)) and Cr(VI) (19.9-127.6 mg l(-1)) were examined to find the effect of pH on the dye and Cr(VI) bioaccumulation. Optimal pH for growth of the consortia in media containing 35 mg l(-1) dye and 50 mg l(-1) Cr(VI) was determined to be around 8. The Cr(VI) bioaccumulation by the consortia was rapid in media containing molasses with or without reactive dye with a maximum Cr(VI) bioaccumulation yield ranging from 90% to 99% within a 2-4d period. A slightly lower yield for the dye bioaccumulation was measured with a maximum dye bioaccumulation of 80% at 59.3 mg l(-1) dye and 69.8 mg l(-1) Cr(VI). The highest specific Cr uptake value was obtained as 76.7 mg g(-1) at 117.1 mg l(-1) Cr(VI) and 50.8 mg l(-1) dye concentration. This ability to bioaccumulate dye and Cr(VI) was more efficient than the enriched sludge from which they were isolated.
从制革和纺织废水中分离出的由三种细菌组成的微生物聚生体显示出同时生物累积染料和六价铬的高能力。通过16S rRNA基因分析确定这些细菌与苍白杆菌属、肠炎沙门氏菌和铜绿假单胞菌密切相关。研究了初始pH值以及染料活性黑B(33.2 - 103.1毫克/升)和六价铬(19.9 - 127.6毫克/升)浓度范围的依赖性,以发现pH对染料和六价铬生物累积的影响。在含有35毫克/升染料和50毫克/升六价铬的培养基中,该聚生体生长的最佳pH值确定为约8。在含有或不含有活性染料的糖蜜培养基中,聚生体对六价铬的生物累积迅速,在2 - 4天内六价铬的最大生物累积产率为90%至99%。测量到的染料生物累积产率略低,在染料浓度为59.3毫克/升和六价铬浓度为69.8毫克/升时,最大染料生物累积率为80%。在六价铬浓度为117.1毫克/升和染料浓度为50.8毫克/升时,获得的最高特定铬吸收值为76.7毫克/克。这种生物累积染料和六价铬的能力比分离出它们的富集污泥更有效。