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Effective Gold Biosorption by Electrospun and Electrosprayed Bio-Composites with Immobilized Lysinibacillus sphaericus CBAM5

机译:电纺丝和电喷雾生物复合物与固定化的球形乳状芽孢杆菌CBAM5的有效金吸附

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摘要

Electro-hydrodynamic processing, comprising electrospinning and electrospraying techniques, is a novel technology used in the production of nano- and sub-micro-scale materials with specific properties suitable for environmental remediation processes. Polycaprolactone (PCL) micro-fibrous mats and alginate microcapsules were produced using electrospinning and electrospraying techniques respectively, and CBAM5, a bacterium capable of metal removal by adsorption and accumulation inside the cell, was immobilized in these matrices. The polymeric structure was able to protect and maintain cell viability and the bio-composite materials were used to capture gold from synthetic water samples. The micro-fibrous membranes with immobilized bacteria were able to remove 93% of the gold after 120 h of inclusion in the aqueous medium. Using a filtration system, an efficiency of 64% was obtained for the removal of the precious metal after 10 cycles of filtration (2 h of exposure to the gold solution). In contrast, the microencapsulated CBAM5 captured 64% of the gold after 4 h of the assay. Thus, both micro-structured matrices were suitable for the immobilization and protection of CBAM5 and they showed high efficiencies of gold biosorption. Hence, these bio-composite materials could be used to concentrate gold from industrial wastewaters.
机译:包括静电纺丝和电喷雾技术在内的电流体动力学处理是一种新型技术,用于生产具有适合环境修复工艺的特定性能的纳米级和亚微米级材料。聚己内酯(PCL)微纤维垫和藻酸盐微胶囊分别使用静电纺丝和电喷雾技术生产,CBAM5是一种能够通过在细胞内部吸附和积累而去除金属的细菌,被固定在这些基质中。聚合物结构能够保护和维持细胞活力,并且使用生物复合材料从合成水样品中捕获金。具有固定化细菌的微纤维膜在水介质中包含120 h后能够去除93%的金。使用过滤系统,在10个过滤循环(暴露于金溶液2小时)后,去除贵金属的效率为64%。相反,微囊化的CBAM5在测定4小时后捕获了64%的金。因此,两种微结构基质均适用于CBAM5的固定和保护,并显示出高的金生物吸附效率。因此,这些生物复合材料可用于从工业废水中浓缩金。

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