首页> 外文期刊>Chemical engineering journal >Understanding the adsorption of Pb2+, Hg2+ and Zn2+ from aqueous solution on a lignocellulosic biomass char using advanced statistical physics models and density functional theory simulations
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Understanding the adsorption of Pb2+, Hg2+ and Zn2+ from aqueous solution on a lignocellulosic biomass char using advanced statistical physics models and density functional theory simulations

机译:使用先进的统计物理模型和密度泛函理论模拟,了解从木质纤维素生物量炭的水溶液吸附Pb2 +,Hg2 +和Zn2 +的吸附

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摘要

This study reports the combination of new statistical physics models and density functional theory (DFT) for the analysis and understanding of the adsorption of heavy metals on a flamboyant biomass-based adsorbent. Single and ternary isotherms of the adsorption of Pb2+, Hg2+ and Zn2+ ions on an adsorbent obtained from the pyrolysis of flamboyant biomass were determined experimentally at pH 5 and 298-313 K. Experimental studies showed that the adsorption of Hg2+ on flamboyant char was higher than those of Zn2+ and Pb2+ in both single and ternary solutions. A strong antagonistic effect for the multicomponent adsorption of Zn2+ was identified due to the presence of other competitive metal ions in the ternary solution. The endothermic adsorption mechanism involved in both mono-and multi-metallic solutions was explained via the integration of the results from the adsorbent physicochemical characterization and calculations using statistical physics models and density functional theory. Theoretical studies showed that the single-compound adsorption of heavy metals correlated with the calculated DFT binding energies of oxygen-containing functionalities of flamboyant surface. On the other hand, the electronegativity and the thermodynamic stability of the metal - active site complexes determined the adsorbent selectivity and adsorption capacities in the simultaneous removal of these heavy metals. In particular, the carboxylic functional groups of flamboyant char were the main active sites involved in the adsorption of these heavy metals in both mono- and multi-component aqueous solutions. These new findings contribute to a deeper understanding of the mechanisms involved in the multicomponent adsorption of relevant water pollutants such as heavy metals using carbon-based adsorbents.
机译:本研究报告了新的统计物理模型和密度泛函理论(DFT)的组合,用于分析和理解重金属对基于华氏体的吸附剂上的重金属的吸附。在PH5和298-313K的PH5和298-313 K中测定从Flameant生物量的热解的吸附剂上吸附的PB2 +,HG2 +和Zn2 +离子的单一和三元等温物。实验研究表明,HG2 +对Flamboyant Char的吸附高于单一和三元溶液中的Zn2 +和PB2 +的那些。由于三元溶液中的其他竞争金属离子存在,鉴定了Zn2 +多组分吸附的强烈拮抗作用。通过使用统计物理模型和密度泛函理论的吸附物理化学表征和计算的结果,解释了单金属和多金属溶液中涉及的吸热吸附机制。理论研究表明,重质金属的单复方吸附与含氧功能的含氧功能的计算的DFT结合能相关。另一方面,金属活性位点复合物的电负性和热力学稳定性确定了同时除去这些重金属的吸附选择性和吸附能力。特别地,华丽炭的羧基官能团是在单组分和多组分水溶液中吸附这些重金属的主要活性位点。这些新发现有助于利用碳基吸附剂更深入地了解相关水污染物的多组分吸附如重金属的机制。

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