Bui Tung Xuan, Choi Heechul
Department of Environmental Science and Engineering, Gwangju Institute of Science and Technology, Buk-gu, Gwangju, Republic of Korea.
J Hazard Mater. 2009 Sep 15;168(2-3):602-8. doi: 10.1016/j.jhazmat.2009.02.072. Epub 2009 Feb 23.
The removal of five selected pharmaceuticals, viz., carbamazepine, clofibric acid, diclofenac, ibuprofen, and ketoprofen was examined by batch sorption experiments onto a synthesized mesoporous silica SBA-15. SBA-15 was synthesized and characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM), N(2) adsorption-desorption measurement, and point of zero charge (PZC) measurement. Pharmaceutical adsorption kinetics was rapid and occurred on a scale of minutes, following a pseudo-second-order rate expression. Adsorption isotherms were best fitted by the Freundlich isotherm model. High removal rates of individual pharmaceuticals were achieved in acidic media (pH 3-5) and reached 85.2% for carbamazepine, 88.3% for diclofenac, 93.0% for ibuprofen, 94.3% for ketoprofen, and 49.0% for clofibric acid at pH 3 but decreased with increase in pH. SBA-15 also showed high efficiency for removal of a mixture of 5 pharmaceuticals. Except for clofibric acid (35.6%), the removal of pharmaceuticals in the mixture ranged from 75.2 to 89.3%. Based on adsorption and desorption results, the mechanism of the selected pharmaceuticals was found to be a hydrophilic interaction, providing valuable information for further studies to design materials for the purpose. The results of this study suggest that mesoporous-silica-based materials are promising adsorbents for removing pharmaceuticals from not only surface water but also wastewater of pharmaceutical industrial manufactures.
通过在合成的介孔二氧化硅SBA - 15上进行批量吸附实验,研究了5种选定药物(即卡马西平、氯贝酸、双氯芬酸、布洛芬和酮洛芬)的去除情况。通过X射线衍射(XRD)、透射电子显微镜(TEM)、N₂吸附 - 解吸测量和零电荷点(PZC)测量对SBA - 15进行了合成和表征。药物吸附动力学很快,在几分钟内就会发生,遵循准二级速率表达式。吸附等温线最适合Freundlich等温线模型。在酸性介质(pH 3 - 5)中,各药物的去除率较高,在pH 3时,卡马西平的去除率达到85.2%,双氯芬酸为88.3%,布洛芬为93.0%,酮洛芬为94.3%,氯贝酸为49.0%,但随着pH值的升高而降低。SBA - 15对5种药物的混合物也显示出高效的去除效果。除氯贝酸(35.6%)外,混合物中药物的去除率在75.2%至89.3%之间。基于吸附和解吸结果,发现所选药物的作用机制是亲水相互作用,为进一步设计相关材料的研究提供了有价值的信息。本研究结果表明,介孔二氧化硅基材料不仅有望成为从地表水而且从制药工业生产废水中去除药物的吸附剂。