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Europium adsorption by non-treated and chemically modified opuntia ficus indica cactus fibres in aqueous solutions

机译:未经处理和化学改性的仙人掌榕in纤维在水溶液中的吸附

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The sorption efficiency of Opuntia ficus indica cactus fibres regarding the removal of trivalent europium (Eu(III)) from aqueous solutions has been investigated prior and after the chemical treatment (phosphorylation and MnO2-coating) of the biomass. The removal efficiency has been studied as a function of pH, europium concentration, mass of the adsorbent, ionic strength, temperature and contact time. Evaluation of the experimental data shows that biosorption is strongly pH-depended and that the MnO2-coated product presents the highest sorption capacity followed by the non-treated and phosphorylated material. Results have been analysed by Langmuir, Freundlich and Dubinin-Radushkevich isotherms, and the Langmuir model is more suitable to describe the process. The sorption reactions are entropy-driven, and the kinetics follows a pseudo-first order rate expression, described by Lagergren. In addition, the results show that the fibres of the Opuntia ficus indica cactus possess significantly higher sorption capacity than other biomass by-products reported in literature and that the removal of europium from contaminated waters is expected to be more effective in the case of the chemically treated biomasses.
机译:在对生物质进行化学处理(磷酸化和MnO2包覆)之前和之后,研究了仙人掌fi纤维对从水溶液中去除三价euro(Eu(III))的吸附效率。已经研究了去除效率与pH,euro浓度,吸附剂质量,离子强度,温度和接触时间的关系。对实验数据的评估表明,生物吸附强烈依赖于pH,并且MnO2包覆的产品具有最高的吸附能力,其次是未经处理的磷酸化材料。结果已通过Langmuir,Freundlich和Dubinin-Radushkevich等温线进行了分析,Langmuir模型更适合描述这一过程。吸附反应是熵驱动的,动力学遵循Lagergren描述的伪一级速率表达式。此外,结果表明,Op仙人掌仙人掌的纤维比文献中报道的其他生物量副产物具有更高的吸附能力,并且从化学污染的角度看,从污染水中去除euro有望更有效。处理过的生物量。

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