State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China.
Bioresour Technol. 2010 Aug;101(15):5774-9. doi: 10.1016/j.biortech.2010.02.075. Epub 2010 Mar 15.
Equilibrium adsorption experiments, isothermal titration calorimetry and potentiometric titration techniques were employed to investigate the adsorption of Cu(II) by extracellular polymeric substances (EPS) extracted from Pseudomonas putida X4, minerals (montmorillonite and goethite) and their composites. Compared with predicted values of Cu(II) adsorption on composites, the measured values of Cu(II) on EPS-montmorillonite composite increased, however, those on EPS-goethite composite decreased. Potentiometric titration results also showed that more surface sites were observed on EPS-montmorillonite composite and less reactive sites were found on EPS-goethite composite. The adsorption of Cu(II) on EPS molecules and their composites with minerals was an endothermic reaction, while that on minerals was exothermic. The positive values of enthalpy change (Delta H) and entropy change (DeltaS) for Cu(II) adsorption on EPS and mineral-EPS composites indicated that Cu(II) mainly interacts with carboxyl and phosphoryl groups as inner-sphere complexes on EPS molecules and their composites with minerals.
采用平衡吸附实验、等温滴定微量热法和电位滴定技术研究了从假单胞菌 X4 中提取的细胞外聚合物(EPS)、矿物(蒙脱石和针铁矿)及其复合材料对 Cu(II)的吸附。与 Cu(II)在复合材料上吸附的预测值相比,在 EPS-蒙脱石复合材料上测量的 Cu(II)吸附值增加,而在 EPS-针铁矿复合材料上测量的 Cu(II)吸附值降低。电位滴定结果还表明,在 EPS-蒙脱石复合材料上观察到更多的表面位,而在 EPS-针铁矿复合材料上发现更少的反应位。Cu(II)在 EPS 分子及其与矿物的复合材料上的吸附是一个吸热反应,而在矿物上的吸附是放热反应。Cu(II)在 EPS 和矿物-EPS 复合材料上的吸附焓变(ΔH)和熵变(ΔS)的正值表明,Cu(II)主要与 EPS 分子及其与矿物的复合材料上的羧基和磷酸基相互作用,形成内球配合物。