State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China; Key Laboratory of Arable Land Conservation (Middle and Lower Reaches of Yangtze River), Ministry of Agriculture, Huazhong Agricultural University, Wuhan 430070, China.
State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan 430070, China.
Sci Total Environ. 2017 Dec 31;607-608:1408-1418. doi: 10.1016/j.scitotenv.2017.07.068. Epub 2017 Jul 20.
Surface complexation modeling, isothermal titration calorimetry, and batch adsorption were employed to characterize the adsorption of Cu onto montmorillonite, Pseudomonas putida X4, and their composites at mass ratios of 2:1, 6:1, and 12:1, respectively. Different enthalpy values were found for Cu adsorption to permanent (-6.43kJ/mol) and variable charge sites (8.51kJ/mol) on montmorillonite. The component additivity (CA) method was used to predict the adsorption of Cu on the composites by combining end member models for montmorillonite and P. putida. A reduced adsorption was observed at pH<5.5 due to physical blocking between montmorillonite and P. putida. By contrast, the enhanced binding at high pH levels was ascribed to the formation of bridging structures among the clay mineral-Cu-bacteria complexes. These deviations in the CA method were corrected by adding reactions of >RCOOH…XNa and >RCOOCuOHXNa. The increased adsorption of the composites confirmed the decrease of permanent negative charge sites and the formation of ternary complexes. The results help elucidate the effect of Cu adsorption onto clay minerals-bacteria composites. The newly developed "CA-site masking-bridging" model can be used to predict Cu speciation in systems in which the active interaction of bacteria and clay minerals occurs.
采用表面络合模型、等温热滴定法和批量吸附法,分别以质量比 2:1、6:1 和 12:1 研究了 Cu 在蒙脱石、假单胞菌 X4 及其复合材料上的吸附。发现 Cu 在蒙脱石上的永久负电荷(-6.43kJ/mol)和可变电荷(8.51kJ/mol)位点上的吸附具有不同的焓值。采用组分加和(CA)法,通过结合蒙脱石和假单胞菌的端元模型来预测复合材料上 Cu 的吸附。在 pH<5.5 时,由于蒙脱石和假单胞菌之间的物理阻塞,观察到吸附减少。相比之下,在高 pH 值下的增强结合归因于粘土矿物-Cu-细菌复合物之间形成桥接结构。通过添加 >RCOOH…XNa 和 >RCOOCuOHXNa 反应,对 CA 方法中的这些偏差进行了修正。复合材料吸附量的增加证实了永久负电荷位点的减少和三元配合物的形成。研究结果有助于阐明 Cu 吸附到粘土矿物-细菌复合材料上的影响。新开发的“CA-位掩蔽-桥接”模型可用于预测在细菌和粘土矿物发生积极相互作用的系统中 Cu 的形态。