Mexel Industries SAS, Route de Compiègne, 60410, Verberie, France,
Appl Biochem Biotechnol. 2013 Nov;171(6):1313-27. doi: 10.1007/s12010-013-0343-7. Epub 2013 Aug 15.
Metal remediation was studied by the sorption of analytical grade copper Cu(II) and silver Ag(I) by four exopolysaccharides (EPS) produced by marine bacteria. Colorimetric analysis showed that these EPS were composed of neutral sugars, uronic acids (>20 %), acetate, and sulfate (29 %). Metal sorption experiments were conducted in batch process. Results showed that the maximum sorption capacities calculated according to Langmuir model were 400 mg g(-1) EPS (6.29 mmol g(-1)) and 333 mg g(-1) EPS (3.09 mmol g(-1)) for Cu(II) and Ag(I), respectively. Optimum pH values of Ag(I) sorption were determined as 5.7. Experiment results also demonstrated the influence of initial silver concentration and EPS concentrations. Microanalyzing coupled with scanning electron microscopy demonstrated the presence of metal and morphological changes of the EPS by the sorption of metallic cations. The Fourier transform infrared spectroscopy analysis indicated possible functional groups (e.g., carboxyl, hydroxyl, and sulfate) of EPS involved in the metal sorption processes. These results showed that EPS from marine bacteria are very promising for copper and silver remediation. Further development in dynamic and continuous process at the industrial scale will be established next.
采用海洋细菌产生的四种胞外多糖(EPS)吸附分析纯铜 Cu(II)和银 Ag(I),研究金属修复。比色分析表明,这些 EPS 由中性糖、糖醛酸(>20%)、醋酸盐和硫酸盐(29%)组成。采用间歇法进行金属吸附实验。结果表明,根据 Langmuir 模型计算的最大吸附容量分别为 400mg/gEPS(6.29mmol/g)和 333mg/gEPS(3.09mmol/g)用于 Cu(II)和 Ag(I)。Ag(I)吸附的最佳 pH 值确定为 5.7。实验结果还表明了初始银浓度和 EPS 浓度的影响。微分析结合扫描电子显微镜证明了金属阳离子吸附导致金属和 EPS 形态变化的存在。傅里叶变换红外光谱分析表明,EPS 中可能存在参与金属吸附过程的功能基团(如羧基、羟基和硫酸盐)。这些结果表明,海洋细菌产生的 EPS 非常适合铜和银的修复。下一步将在工业规模上建立动态和连续过程的进一步发展。