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二硫化碳功能化对氧化石墨烯增强 Pb(II)吸附的影响:吸附机制研究。

The effects of carbon disulfide driven functionalization on graphene oxide for enhanced Pb(II) adsorption: Investigation of adsorption mechanism.

机构信息

Department of Civil Engineering, University of Louisiana at Lafayette, P. O. Box 43598, Lafayette, LA, 70504, USA; Center for Environmental Technology, The Energy Institute of Louisiana, P. O. Box 43597, Lafayette, LA, 70504, USA.

Department of Civil Engineering, University of Louisiana at Lafayette, P. O. Box 43598, Lafayette, LA, 70504, USA.

出版信息

Chemosphere. 2020 Jun;248:126078. doi: 10.1016/j.chemosphere.2020.126078. Epub 2020 Jan 31.

Abstract

The surface properties of graphene oxide (GO) have been identified as the key effects on the adsorption of Pb(II) from aqueous solutions in this study. This study reveals the effect of the surface reactivity of GO via Carbon Disulfide (CS) functionalization for Pb(II) adsorption. After successfully preparing CS functionalized GO (GOCS), the specific techniques were applied to investigate Pb(II) adsorption onto GOCS. Results indicated that the new sulfur-containing functional groups incorporated onto GOCS significantly enhanced Pb(II) adsorption capacity on GOCS than that of GO, achieving an improvement of 31% in maximum adsorption capacity increasing from 292.8 to 383.4 mg g. The equilibrium adsorption capacity for GOCS was 280.2 mg g having an improvement of 83.2% over that of 152.97 mg g for GO at the same initial concentration of 150 mg L under the optimal pH of 5.7. Moreover, the results of adsorption experiments showed an excellent fit to the Langmuir and Pseudo-Second-Order models indicating the monolayer and chemical adsorption, respectively. The mechanism for Pb(II) adsorption on GOCS was proposed as the coordination, electrostatic interactions, cation-pi interactions, and Lewis acid-base interactions. The regeneration study showed that GOCS had an appreciable reusability for Pb(II) adsorption with the adsorption capacity of 208.92 mg g after five regeneration cycles. In summary, GOCS has been proved to be a novel, useful, and potentially economic adsorbent for the high-efficiency removal of Pb(II) from aqueous solutions.

摘要

本研究确定了氧化石墨烯(GO)的表面性质是影响其从水溶液中吸附 Pb(II)的关键因素。本研究通过二硫化碳(CS)功能化揭示了 GO 的表面反应性对 Pb(II)吸附的影响。在成功制备 CS 功能化 GO(GOCS)后,应用特定技术研究了 GOCS 对 Pb(II)的吸附。结果表明,新引入的含硫官能团显著提高了 GOCS 对 Pb(II)的吸附能力,最大吸附容量从 292.8 增加到 383.4mg/g,提高了 31%。GOCS 的平衡吸附容量为 280.2mg/g,在相同的初始浓度 150mg/L 下,最优 pH 值为 5.7 时,比 GO 的 152.97mg/g 提高了 83.2%。此外,吸附实验结果表明,Langmuir 和 Pseudo-Second-Order 模型均能很好地拟合吸附过程,分别表明了单层和化学吸附。提出了 GOCS 吸附 Pb(II)的机理为配位、静电相互作用、阳离子-π相互作用和路易斯酸碱相互作用。再生研究表明,GOCS 在五次再生循环后仍具有 208.92mg/g 的吸附容量,具有较好的可重复使用性。综上所述,GOCS 是一种新型、有用且具有潜在经济性的吸附剂,可高效去除水溶液中的 Pb(II)。

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