Zhu Haotian, Chen Tao, Liu Jingquan, Li Da
Laboratory of Fiber Materials and Modern Textile, The Growing Base for State Key Laboratory, Qingdao University Qingdao 266071 PR China
School of Materials Science and Engineering, Qingdao University Qingdao 266071 PR China.
RSC Adv. 2018 Jan 10;8(5):2616-2621. doi: 10.1039/c7ra11964j. eCollection 2018 Jan 9.
In this study, we report the preparation of a novel environmentally friendly and highly efficient adsorbent, graphene oxide/calcium alginate (GO/CA) composite fibers, a freeze-drying method using calcium chloride as a cross-linking reagent between graphene oxide and sodium alginate. The maximum tetracycline adsorption capacity of the GO/CA composite fibers predicted by the Langmuir model reached 131.6 mg g. The adsorption properties of tetracycline onto the fibers were investigated through several parameters including the solution pH, the adsorbent dose, the initial concentration of tetracycline, and the agitation time. The Langmuir and Freundlich adsorption isotherms were used to investigate the adsorption equilibrium. The kinetics of the adsorption process was predicted using the pseudo-first-order and pseudo-second-order kinetic equations. Furthermore, the mechanism of adsorption was investigated, and it was found that the hydrogen bonding and π-π interaction should serve as predominant contributions to the significantly enhanced adsorption capability.
在本研究中,我们报道了一种新型环保高效吸附剂——氧化石墨烯/海藻酸钙(GO/CA)复合纤维的制备方法,该方法采用氯化钙作为氧化石墨烯与海藻酸钠之间的交联剂,通过冷冻干燥法制备。由朗缪尔模型预测,GO/CA复合纤维对四环素的最大吸附容量达到131.6 mg/g。通过溶液pH值、吸附剂用量、四环素初始浓度和搅拌时间等几个参数研究了四环素在纤维上的吸附性能。采用朗缪尔和弗伦德利希吸附等温线研究吸附平衡。用准一级和准二级动力学方程预测吸附过程的动力学。此外,还研究了吸附机理,发现氢键和π-π相互作用是吸附能力显著增强的主要原因。