Industrial Catalysis and Adsorption Technology (INCAT), Faculty of Engineering and Architecture, Ghent University , Valentin Vaerwyckweg 1, 9000 Ghent, Belgium.
Laboratory for Chemical Technology, Faculty of Engineering and Architecture, Ghent University , Technologiepark 914, 9052 Zwijnaarde, Belgium.
Langmuir. 2017 Jul 11;33(27):6769-6777. doi: 10.1021/acs.langmuir.7b01099. Epub 2017 Jun 28.
Tunable large pore soft templated mesoporous carbons (SMC) were obtained via the organic self-assembly of resorcinol/formaldehyde with the triblock copolymer F127 and by investigating the effect of carbon precursor to surfactant (p/s) ratio and carbonization temperature on the material characteristics. The p/s ratio and carbonization temperature were varied respectively from 0.83 to 0.25 and from 400 to 1200 °C. The resulting SMCs had various average pore sizes, tunable from 7 up to 50 nm. At lower p/s ratios, the pore size increased, pore size distributions broadened, and pore volumes increased. An increase of hydrophobicity was observed at elevated carbonization temperatures. A 2D hexagonal ordered SMC with a narrow pore size distribution was obtained at a ratio of 0.83. Lower ratios (0.5 and 0.25) transformed into disordered porous carbons containing micropores, mesopores, and even macropores. The SMCs were tested for adsorption of a large organic molecule, humic acid (HA), from water. The material characteristics that significantly affected HA adsorption capacity were pore size and mass % (wt %) carbon. The novel SMCs showed an unprecedented high adsorption of HA in the entire molecular weight distribution range. SMCs with large mesopores resulted in higher maximum adsorption capacities and improved HA adsorption kinetics compared to activated carbon.
通过将间苯二酚/甲醛与三嵌段共聚物 F127 进行有机自组装,并研究碳前体与表面活性剂的比例(p/s)和碳化温度对材料特性的影响,获得了可调大孔软模板介孔碳(SMC)。分别改变 p/s 比和碳化温度,范围分别为 0.83 至 0.25 和 400 至 1200°C。所得 SMC 的平均孔径从 7nm 到 50nm 不等,可调。在较低的 p/s 比值下,孔径增大,孔径分布变宽,孔体积增大。随着碳化温度的升高,疏水性增加。在 p/s 比为 0.83 时,得到了具有窄孔径分布的二维六方有序 SMC。较低的 p/s 比(0.5 和 0.25)转变成含有微孔、中孔甚至大孔的无序多孔碳。研究了 SMC 对水中大有机分子腐殖酸(HA)的吸附性能。对 HA 吸附容量有显著影响的材料特性是孔径和质量%(wt%)碳。新型 SMC 在整个分子量分布范围内表现出前所未有的高 HA 吸附能力。与活性炭相比,具有大介孔的 SMC 具有更高的最大吸附容量和改善的 HA 吸附动力学。