Onal Seçil, Baysal Senay Hamarat, Ozdemir Guven
Ege University, Faculty of Science, Biochemistry Department, 35100 Bornova, Izmir, Turkey.
J Hazard Mater. 2007 Jul 19;146(1-2):417-20. doi: 10.1016/j.jhazmat.2007.03.005. Epub 2007 Mar 12.
Chryseomonas luteola TEM 05 cells were entrapped both in alginate and chitosan coated alginate beads. Biosorption of metal ions on alginate beads was investigated by using a batch stirred system at pH 6.0, 25 degrees C, in initial metal concentration of 1.92 mM of Cr6+, 0.89 mM Cd2+ and 1.69 mM Co2+. Then, a process of competitive biosorption of these metal ions was described and compared to single metal ion adsorption in solution. The apparent equilibrium biosorption was reached within the 180 min of contact for all metals. Although the competitive biosorption capacities of the beads for all metal ions were lower than those of single conditions, Cd2+ biosorption on alginate and alginate-chitosan beads did not change significantly.
浅黄 Chryseomonas luteola TEM 05 细胞被包埋在藻酸盐和壳聚糖包被的藻酸盐珠中。在pH 6.0、25℃、初始金属浓度为1.92 mM Cr6+、0.89 mM Cd2+和1.69 mM Co2+的条件下,使用间歇搅拌系统研究了金属离子在藻酸盐珠上的生物吸附。然后,描述了这些金属离子的竞争性生物吸附过程,并与溶液中单一金属离子的吸附进行了比较。所有金属在接触180分钟内达到表观平衡生物吸附。尽管珠子对所有金属离子的竞争性生物吸附能力低于单一条件下的能力,但藻酸盐和藻酸盐-壳聚糖珠上Cd2+的生物吸附没有显著变化。