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Cd(II) Sorption on Montmorillonite-Humic acid-Bacteria Composites

机译:蒙脱石-腐植酸-细菌复合材料对Cd(II)的吸附

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Soil components (e.g., clays, bacteria and humic substances) are known to produce mineral-organic composites in natural systems. Herein, batch sorption isotherms, isothermal titration calorimetry (ITC), and Cd K-edge EXAFS spectroscopy were applied to investigate the binding characteristics of Cd on montmorillonite(Mont)-humic acid(HA)-bacteria composites. Additive sorption and non-additive Cd(II) sorption behaviour is observed for the binary Mont-bacteria and ternary Mont-HA-bacteria composite, respectively. Specifically, in the ternary composite, the coexistence of HA and bacteria inhibits Cd adsorption, suggesting a “blocking effect” between humic acid and bacterial cells. Large positive entropies (68.1?~?114.4?J/mol/K), and linear combination fitting of the EXAFS spectra for Cd adsorbed onto Mont-bacteria and Mont-HA-bacteria composites, demonstrate that Cd is mostly bound to bacterial surface functional groups by forming inner-sphere complexes. All our results together support the assertion that there is a degree of site masking in the ternary clay mineral-humic acid-bacteria composite. Because of this, in the ternary composite, Cd preferentially binds to the higher affinity components-i.e., the bacteria.
机译:已知土壤成分(例如粘土,细菌和腐殖质)可在自然系统中产生矿物-有机复合物。在这里,分批吸附等温线,等温滴定热法(ITC)和Cd K边缘EXAFS光谱用于研究Cd在蒙脱石(蒙)-腐植酸(HA)-细菌复合材料上的结合特性。分别观察到二元Mont-细菌和三元Mont-HA-细菌复合物的加性吸附和非加性Cd(II)吸附行为。具体而言,在三元复合物中,HA和细菌的共存抑制了Cd的吸附,这表明腐殖酸和细菌细胞之间具有“阻断作用”。大的正熵(68.1 ~~ 114.4?J / mol / K),以及吸附在Mont-细菌和Mont-HA-细菌复合物中的Cd的EXAFS光谱的线性组合拟合,表明Cd主要与细菌表面功能结合通过形成内圈复合物进行分组。我们所有的结果共同支持这样的主张,即三元粘土矿物-腐殖酸-细菌复合物中存在一定程度的位点掩蔽。因此,在三元复合物中,Cd优先结合更高亲和力的成分,即细菌。

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