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

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Abstract

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.

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Du, H., Chen, W., Cai, P., Rong, X., Dai, K., Peacock, C. L., & Huang, Q. (2016). Cd(II) Sorption on Montmorillonite-Humic acid-Bacteria Composites. Scientific Reports, 6. https://doi.org/10.1038/srep19499

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