Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, and Advanced Materials Laboratory, Fudan University , Shanghai 200433, PR China.
Environ Sci Technol. 2013 Aug 6;47(15):8633-41. doi: 10.1021/es400659b. Epub 2013 Jul 9.
To alleviate the environmental and health threats from water resources polluted by large-sized microcystins (MCs), we demonstrate for the first time that ordered mesoporous silica materials with large pore sizes of 2-12 nm can be used as adsorbents for rapid and efficient removal of MCs. The obvious correlations between adsorption performance of MCs and physicochemical properties of adsorbents including pore mesostructure, texture and size, and surface chemistry have been well established. Accordingly, an excellent candidate, mesoporous silica SBA-15 templated from Pluronic P123 has been sorted out, exhibiting extremely rapid rate (one minute) as well as high capacities of 5.99 and 13 mg g(-1) for removing high-concentration MC-LR and MC-RR, respectively, which are much higher than that of other silica-based adsorbents reported previously. The adsorption performance can be further improved from 50 to 95% at around pH 4 by grafting positively charged and/or hydrophobic groups onto pore surface of SBA-15. Furthermore, thermodynamic and kinetic evaluations provide additional valuable information for a better understanding of the adsorption process. Given the excellent adsorption performance, it is expected that mesoporous silica materials with unique characteristics are attractive for actual applications in removal of MCs from wastewater.
为缓解由大型微囊藻毒素(MCs)污染水资源带来的环境和健康威胁,我们首次证明具有 2-12nm 大孔径的有序介孔硅材料可用作吸附剂,可快速高效地去除 MCs。MCs 的吸附性能与吸附剂的物理化学性质(包括孔介观结构、质地和尺寸以及表面化学)之间存在明显的相关性。因此,筛选出了一种优秀的候选材料,即由 Pluronic P123 模板合成的介孔硅 SBA-15,其对高浓度 MC-LR 和 MC-RR 的去除率分别高达 5.99 和 13mg/g,具有极快的去除速率(一分钟内),远高于以前报道的其他基于硅的吸附剂。通过在 SBA-15 的孔表面接枝正电荷和/或疏水性基团,可将吸附性能从 50%提高到 95%左右,其 pH 值约为 4。此外,热力学和动力学评估为更好地理解吸附过程提供了更多有价值的信息。鉴于其出色的吸附性能,具有独特特性的介孔硅材料有望在从废水中去除 MCs 的实际应用中具有吸引力。