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用于对有毒重金属具有强螯合能力的新型氨基官能化多孔碳。

New amino group functionalized porous carbon for strong chelation ability towards toxic heavy metals.

作者信息

Anfar Zakaria, Amedlous Abdallah, Majdoub Mohammed, El Fakir Abdellah Ait, Zbair Mohamed, Ait Ahsaine Hassan, Jada Amane, El Alem Noureddine

机构信息

Laboratory of Materials & Environment (LME), Ibn Zohr University Agadir 80000 Morocco

Institute of Materials Science of Mulhouse (IS2M-CNRS), Haute Alsace University (UHA) Mulhouse 68100 France

出版信息

RSC Adv. 2020 Aug 21;10(52):31087-31100. doi: 10.1039/d0ra05220e.

Abstract

Herein, ethylenediamine functionalized porous carbon (PC-ED/1.5) was synthesized, then characterized by various methods and finally used as a functional material for Cu(ii) and Pb(ii) ion removal from water. XPS revealed the presence of numerous functionalities within the surface of PC including -NH and C-N-C groups. Furthermore, , RS, XRD and FTIR analyses confirmed the changes implemented on the PC surface. Thereafter, a systematic study was implemented to analyze the interactions of the PC-ED/1.5 surface with Cu(ii) and Pb(ii) heavy metal ions. Hence, adsorption experiments showed that the PC-ED/1.5 exhibits maximum adsorption capacities of 123.45 mg g and 140.84 mg g for Cu(ii) and Pb(ii), respectively. Moreover, electrostatic interactions occurring between the divalent cation and the PC-ED/1.5 functional groups was investigated. The mechanism involves chelation processes, electrostatic interactions and mechanical trapping of the metal ions in the adsorbent pores. Interestingly, a synergistic effect of the pores and surface active sites was observed. Finally, by using alginate bio-polymer we prepared membrane films of PC-ED/1.5 which showed long-term stability, regeneration capabilities and high mass recovery.

摘要

在此,合成了乙二胺官能化的多孔碳(PC-ED/1.5),然后通过各种方法对其进行表征,最后将其用作从水中去除铜(II)和铅(II)离子的功能材料。X射线光电子能谱(XPS)显示PC表面存在许多官能团,包括-NH和C-N-C基团。此外,拉曼光谱(RS)、X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)分析证实了PC表面发生的变化。此后,进行了一项系统研究,以分析PC-ED/1.5表面与铜(II)和铅(II)重金属离子之间的相互作用。因此,吸附实验表明,PC-ED/1.5对铜(II)和铅(II)的最大吸附容量分别为123.45 mg/g和140.84 mg/g。此外,还研究了二价阳离子与PC-ED/1.5官能团之间发生的静电相互作用。其机制涉及螯合过程、静电相互作用以及金属离子在吸附剂孔中的机械截留。有趣的是,观察到了孔和表面活性位点的协同效应。最后,通过使用海藻酸盐生物聚合物,我们制备了PC-ED/1.5的膜,该膜具有长期稳定性、再生能力和高回收率。

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