Institute of Chemical Sciences Bahauddin Zakariya University, Multan, Punjab, 60800, Pakistan; Department of Engineering & Applied Technology, Institute of Southern Punjab, Multan, 60000, Pakistan.
Chemistry Division, Directorate of Science, Pakistan Institute of Nuclear Science and Technology (PINSTECH), Islamabad, 45650, Pakistan.
Chemosphere. 2022 Sep;303(Pt 2):135088. doi: 10.1016/j.chemosphere.2022.135088. Epub 2022 May 27.
In this study, a flower-like porous δ-MnO nanostructure was synthesized by a microwave-assisted hydrothermal process for adsorptive removal of strontium (Sr(II)) and cesium (Cs(I)) from wastewater. The prepared δ-MnO nanosorbent exhibited superior affinity for Sr(II) over Cs(I) in the single-solute system, with partition coefficient (PC) values of 10.2 and 2.3 L/g, respectively, at pH 6.0. In the two-solute system, the flower-like δ-MnO also adsorbed Sr(II) (PC = 3.81 L/g) more selectively than Cs(I) (PC 1.15 L/g). Further, their adsorption capacities decreased by 12 and 16%, respectively, relative to the single-solute system. In contrast, adsorption of the ions onto δ-MnO was affected less sensitively in dual than in single system when changes occurred in environmental variables such as pH (2-8) and ionic strength (1-100 mM). Adsorption kinetics, thermodynamics, and isotherm studies demonstrated the pivotal role of the monolayer surface active sites of endothermic δ-MnO (e.g., a complexation interaction with Mn-OH). Furthermore, the δ-MnO nanosorbent exhibited good regenerability, retaining more than 80% of its adsorption capacity when tested over four reuse cycles. The overall results of this study are expected to help establish strategies to effectively remove metal contaminants from wastewater using a green and low-cost hierarchical nanosorbent.
在这项研究中,通过微波辅助水热法合成了一种花状多孔δ-MnO 纳米结构,用于从废水中吸附去除锶(Sr(II))和铯(Cs(I))。所制备的 δ-MnO 纳米吸附剂在单溶质体系中对 Sr(II)具有优异的亲和力,在 pH 6.0 时,其分配系数(PC)值分别为 10.2 和 2.3 L/g。在双溶质体系中,花状 δ-MnO 对 Sr(II)(PC = 3.81 L/g)的吸附也比 Cs(I)(PC 1.15 L/g)更具选择性。此外,它们的吸附容量相对于单溶质体系分别下降了 12%和 16%。相比之下,当环境变量(pH 值 2-8 和离子强度 1-100 mM)发生变化时,离子在 δ-MnO 上的吸附在双溶质体系中的变化不如在单溶质体系中敏感。吸附动力学、热力学和等温线研究表明,内热 δ-MnO(例如,与 Mn-OH 的络合相互作用)的单层表面活性位点在吸附中起着关键作用。此外,δ-MnO 纳米吸附剂具有良好的再生性能,在经过四个重复使用循环测试后,其吸附容量保留了超过 80%。本研究的总体结果有望帮助建立使用绿色、低成本的分级纳米吸附剂从废水中有效去除金属污染物的策略。