Department of Pretreatment and Finishing of Cellulosic Based Textiles, Textile Industries Research Division, National Research Centre, Scopus Affiliation ID 60014618, 33 EL Buhouth St., Dokki, Giza 12622, Egypt.
Chemistry Department, Faculty of Science, Helwan University, Ain-Helwan, Cairo 11795, Egypt.
J Colloid Interface Sci. 2019 Nov 15;556:193-205. doi: 10.1016/j.jcis.2019.08.051. Epub 2019 Aug 14.
Fuel purification from sulfur containing contaminants (SCCs) is concerned in the last decades. Herein, non-invasive and innovative method was carried out for synthesis of metal organic framework (MOF)@fabric composites to be applied in removing of thiophene from liquid fuel. MIL-53(Al)-NH as a type of MOF was selected to be in-situ prepared within fabrics (cotton & wool) by infrared-assisted technique. The contents of MOF/Al in-grown within fabrics were 81.97/9.92 mg/g for cotton and 95.70/11.58 mg/g for wool. Scanning microscope and X-ray confirmed that fluffy microcrystalline MIL-53(Al)-NH powder was formed directly within fabrics structure. The prepared MOF and MOF@fabric composites were exploited in adsorption of thiophene from n-heptane. Infrared spectra approved the presence of thiophene bands [CH, 833 cm and CS, 706 cm] onto the applied materials, after adsorption. The adsorption of thiophene onto the composites found to obey Langmuir isotherm and second-order kinetic model. The maximum adsorption capacities were followed the order of MIL-53(Al)-NH (739.0 mg/g) > MIL-53(Al)-NH@fabric (469.4-516.5 mg/g) ⋙ fabric (83.1-153.8 mg/g). After 4 restoration cycles, the adsorption capacities were lowered by percentage of 28.4-43.6, due to the decrement in MOF contents. The prepared MIL-53(Al)-NH@fabric composites could be widely applicable in the cleaning of liquid fuel from SCCs with high efficient.
过去几十年来,人们一直关注从含硫污染物 (SCC) 中净化燃料。在此,本文采用了一种非侵入性和创新性的方法,合成了金属有机骨架 (MOF)@织物复合材料,用于从液体燃料中去除噻吩。选择 MIL-53(Al)-NH 作为 MOF 类型,通过红外辅助技术在织物(棉和羊毛)内原位制备。MOF/Al 生长在织物内的含量为棉 81.97/9.92 mg/g,羊毛 95.70/11.58 mg/g。扫描显微镜和 X 射线证实,蓬松的微晶 MIL-53(Al)-NH 粉末直接在织物结构内形成。制备的 MOF 和 MOF@织物复合材料被用于从正庚烷中吸附噻吩。红外光谱证实,吸附后,噻吩的 [CH,833 cm 和 CS,706 cm] 带出现在应用材料上。噻吩在复合材料上的吸附遵循 Langmuir 等温线和二级动力学模型。最大吸附容量的顺序为 MIL-53(Al)-NH(739.0 mg/g)>MIL-53(Al)-NH@织物(469.4-516.5 mg/g)⋙织物(83.1-153.8 mg/g)。经过 4 次恢复循环后,由于 MOF 含量的减少,吸附容量降低了 28.4-43.6%。制备的 MIL-53(Al)-NH@织物复合材料可广泛应用于高效清洁液体燃料中的 SCC。