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Removal and Recovery of Copper (Ⅱ) Ions by Bacterial Biosorption

机译:通过细菌生物吸附去除和回收铜(Ⅱ)离子

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Studies were conducted to investigate the removal and recovery of copper (II) ions from aqueous solutions by Micrococcus sp., which was isolated from a local activated sludge process. The equilibrium of copper biosorption followed the Langmuir isotherm model very well with a maximum biosorption capacity (q_(max)) of 36.5 mg of Cu~(2+)/g of dry cell at pH 5.0 and 52.1 mg of Cu~(2+)/g of dry cell at pH 6.0. Cells harvested at exponential growth phase and stationary phase showed similar biosorption characteristics for copper. Copper uptake by cells was negligible at pH 2.0 and then increased rapidly with increasing pH until 6.0. In multimetal systems, Micrococcus sp. exhibited a preferential biosorption order: Cu ~ Pb > Ni ~ Zn. There is virtually no interference with copper uptake by Micrococcus sp. from solutions bearing high concentrations of Cl~-, SO_4~(2-), and NO_3~-(0-500 mg/L). Sulfuric acid (0.05 M) was the most efficient desorption medium, recovering >90% of the initial copper sorbed. The copper capacity of Micrococcus sp. remained unchanged after five successive sorption and desorption cycles. Immobilization of Micrococcus sp. in 2% calcium alginate and 10% polyacrylamide gel beads increased copper uptake by 61%. Biomass of Micrococcus sp. may be applicable to the development of potentially cost-effective biosorbent for removing and recovering copper from effluents.
机译:进行研究以研究通过微球菌水溶液从水溶液中除去和恢复铜(II)离子。从局部活化的污泥过程中分离出来。铜生物吸收的平衡沿着36.5mg Cu〜(2 +)/ g在pH 5.0和52.1mg Cu〜(2+)的最大生物吸附容量(Q_(最多))的最大生物吸附容量(Q_(最大))。(2+ )/ g在pH6.0处的干细胞。以指数增长阶段收获的细胞和固定相显示出铜的类似生物吸附特性。在pH 2.0时,细胞的铜吸收可忽略不计,然后随着pH的增加而迅速增加至6.0。在多传输系统中,Micrococcus sp。表现出优先生物吸附阶:Cu〜Pb> Ni〜Zn。微球菌的铜吸收几乎没有干扰。从轴承轴承高浓度的Cl〜 - ,SO_4〜(2-),NO_3〜 - (0-500 mg / L)。硫酸(0.05μm)是最有效的解吸培养基,回收> 90%的初始铜吸附。 Micrococcus sp的铜容量。在五次连续吸附和解吸周期后保持不变。固定体外部的固定化。在2%藻酸盐中,10%聚丙烯酰胺凝胶珠子增加铜吸收剂61%。 Micrococcus sp的生物量。可适用于潜在经济高效的生物吸附剂的开发,用于从流出物中去除和回收铜。

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