Xie Ruzhen, Jin Yan, Chen Yao, Jiang Wenju
College of Architecture and Environment, Sichuan University, Chengdu 610065, China E-mail:
Water Sci Technol. 2017 Dec;76(11-12):3022-3034. doi: 10.2166/wst.2017.471.
In this study, activated carbon (AC) was prepared from walnut shell using chemical activation. The surface chemistry of the prepared AC was modified by introducing or blocking certain functional groups, and the role of the different functional groups involved in the copper uptake was investigated. The structural and chemical heterogeneity of the produced carbons are characterized by Fourier transform infrared spectrometry, X-ray photoelectron spectroscopy, Boehm titration method and N/77 K adsorption isotherm analysis. The equilibrium and the kinetics of copper adsorption onto AC were studied. The results demonstrated that the functional groups on AC played an important role in copper uptake. Among various surface functional groups, the oxygen-containing group was found to play a critical role in the copper uptake, and oxidation is the most effective way to improve Cu (II) adsorption onto AC. Ion-exchange was identified to be the dominant mechanism in the copper uptake by AC. Some other types of interactions, like complexation, were also proven to be involved in the adsorption process, while physical force was found to play a small role in the copper uptake. The regeneration of copper-loaded AC and the recovery of copper were also studied to evaluate the reusability of the oxidized AC.
在本研究中,采用化学活化法由核桃壳制备了活性炭(AC)。通过引入或封闭某些官能团对制备的AC的表面化学进行了改性,并研究了不同官能团在铜吸附过程中的作用。采用傅里叶变换红外光谱、X射线光电子能谱、 Boehm滴定法和N/77 K吸附等温线分析对所制备碳材料的结构和化学不均匀性进行了表征。研究了AC对铜吸附的平衡和动力学。结果表明,AC上的官能团在铜吸附中起重要作用。在各种表面官能团中,含氧基团在铜吸附中起关键作用,氧化是提高AC对Cu(II)吸附的最有效方法。离子交换被确定为AC吸附铜的主要机制。还证实了一些其他类型的相互作用,如络合作用,也参与了吸附过程,而物理力在铜吸附中起的作用较小。还研究了负载铜的AC的再生和铜的回收,以评估氧化AC的可重复使用性。