State Key Joint Laboratory of Environment Simulation and Pollution Control, Tsinghua University - Veolia Environment Joint Research Center for Advanced Technology, School of Environment, POPs Research Center, Tsinghua University, Beijing 100084, PR China.
Water Res. 2013 Aug 1;47(12):4139-47. doi: 10.1016/j.watres.2012.11.062. Epub 2013 Mar 28.
A novel granular carbon nanotubes (CNTs)/alumina (Al2O3) hybrid adsorbent with good sorption and regeneration properties was successfully prepared by mixing CNTs with surfactant Brij 35 and pseudo boehmite, followed by calcining to remove surfactant and form porous granules. Alumina binder increased the mechanical strength, hydrophilicity and porosity of the granular adsorbent, while the dispersed CNTs in the granular adsorbent were responsible for the sorption of diclofenac sodium (DS) and carbamazepine (CBZ). Scanning electron microscopy (SEM) showed that the CNTs and Al2O3 were mixed well and the porous structure was formed in the granular adsorbent. The high surface area and appropriate pore size of granular CNTs/Al2O3 adsorbent were favorable for sorption. The sorption of DS decreased with increasing solution pH, while pH had little effect on CBZ sorption. The maximum sorption capacities of CBZ and DS on the CNTs/Al2O3 adsorbent were 157.4 and 106.5 μmol/g according to the Langmuir fitting. Moreover, the spent CNTs/Al2O3 adsorbent can be thermally regenerated at 400 °C in air due to the thermal stability of CNTs. The removal of CBZ and DS changed a little in the initial reuse cycles and then kept relatively constant until tenth cycles. The adsorbed CBZ and DS were decomposed in the regeneration process. This regenerable adsorbent may find potential application in water or wastewater treatment for the removal of some micropollutants such as pharmaceuticals.
一种新型颗粒状碳纳米管(CNTs)/氧化铝(Al2O3)混合吸附剂,具有良好的吸附和再生性能,通过将 CNTs 与表面活性剂 Brij 35 和假勃姆石混合,然后煅烧去除表面活性剂并形成多孔颗粒来制备。氧化铝粘合剂增加了颗粒状吸附剂的机械强度、亲水性和孔隙率,而分散在颗粒状吸附剂中的 CNTs 则负责吸附双氯芬酸钠(DS)和卡马西平(CBZ)。扫描电子显微镜(SEM)表明,CNTs 和 Al2O3 混合均匀,颗粒状吸附剂中形成了多孔结构。颗粒状 CNTs/Al2O3 吸附剂的高表面积和适当的孔径有利于吸附。DS 的吸附随溶液 pH 的增加而降低,而 pH 对 CBZ 吸附的影响较小。根据朗缪尔拟合,CBZ 和 DS 在 CNTs/Al2O3 吸附剂上的最大吸附容量分别为 157.4 和 106.5 μmol/g。此外,由于 CNTs 的热稳定性,用过的 CNTs/Al2O3 吸附剂可以在空气中于 400°C 进行热再生。在最初的重复使用循环中,CBZ 和 DS 的去除变化不大,然后保持相对稳定,直到第十个循环。吸附的 CBZ 和 DS 在再生过程中分解。这种可再生吸附剂可能在水或废水处理中具有去除一些微污染物(如药物)的潜在应用。