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基于石墨烯负载的金属有机框架混合气凝胶的吸附与催化协同作用促进染料去除

Synergistic effect of adsorption coupled with catalysis based on graphene-supported MOF hybrid aerogel for promoted removal of dyes.

作者信息

Wan Yinjia, Wang Jianzhi, Huang Fei, Xue Yanan, Cai Ning, Liu Jie, Chen Weimin, Yu Faquan

机构信息

Wuhan Institute of Technology Xiongchu Ave 693 Wuhan 430073 Hubei China

出版信息

RSC Adv. 2018 Oct 8;8(60):34552-34559. doi: 10.1039/c8ra05873c. eCollection 2018 Oct 4.

Abstract

A three-dimensional MIL-100(Fe)/graphene hybrid aerogel (MG-HA) was fabricated decoration of graphene oxide with MIL-100(Fe) nanoparticles. The resulting MG-HA with interconnected pore structure was applied as both adsorbent and catalyst for the removal of methylene blue (MB) from aqueous solutions. The result shows that the saturation adsorption capacity of the MG-HA was as high as 333.33 mg g, exceeding that of both the corresponding pristine graphene aerogel and MIL-100(Fe) nanoparticles. In the presence of hydrogen peroxide, MG-HA further exhibited catalytic degradation ability. The dual functions achieved a synergistic effect leading to the quick and complete removal of MB. The benefit was revealed in the treatment of high concentration of pollutants without leaving secondary pollution. The merit was intuitively demonstrated in the instant removal of MB through a model separation device in comparison with a series of common adsorbents. A feasible mathematic model was built based on the synergistic adsorption/catalysis process, which perfectly fitted the experimental data. A pseudo-second-order adsorption process and pseudo-first-order catalytic degradation kinetics were revealed. Additionally, the MG-HA was able to retain 93.4% of its initial removal efficiency after 5 cycles of application. The macro-material body can be easily separated and reused without a time-consuming and high-cost recycling process.

摘要

通过用MIL-100(Fe)纳米颗粒修饰氧化石墨烯制备了一种三维MIL-100(Fe)/石墨烯杂化气凝胶(MG-HA)。所得具有相互连接的孔结构的MG-HA被用作从水溶液中去除亚甲基蓝(MB)的吸附剂和催化剂。结果表明,MG-HA的饱和吸附容量高达333.33 mg/g,超过了相应的原始石墨烯气凝胶和MIL-100(Fe)纳米颗粒。在过氧化氢存在下,MG-HA进一步表现出催化降解能力。这两种功能实现了协同效应,导致MB被快速、完全去除。这种优势在处理高浓度污染物时得以体现,且不会产生二次污染。与一系列常见吸附剂相比,通过模型分离装置瞬间去除MB直观地证明了其优点。基于协同吸附/催化过程建立了一个可行的数学模型,该模型与实验数据完美拟合。揭示了伪二级吸附过程和伪一级催化降解动力学。此外,MG-HA在5次循环使用后能够保留其初始去除效率的93.4%。这种宏观材料体易于分离和重复使用,无需耗时且成本高昂的回收过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8bd/9087213/b3c119796b73/c8ra05873c-f1.jpg

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