[HTML][HTML] Enhanced adsorptive removal of p-nitrophenol from water by aluminum metal–organic framework/reduced graphene oxide composite

Z Wu, X Yuan, H Zhong, H Wang, G Zeng, X Chen… - Scientific reports, 2016 - nature.com
Z Wu, X Yuan, H Zhong, H Wang, G Zeng, X Chen, H Wang, L Zhang, J Shao
Scientific reports, 2016nature.com
In this study, the composite of aluminum metal–organic framework MIL-68 (Al) and reduced
graphene oxide (MA/RG) was synthesized via a one–step solvothermal method, and their
performances for p–nitrophenol (PNP) adsorption from aqueous solution were
systematically investigated. The introduction of reduced graphene oxide (RG) into MIL-68
(Al)(MA) significantly changes the morphologies of the MA and increases the surface area.
The MA/RG-15% prepared at RG-to-MA mass ratio of 15% shows a PNP uptake rate 64 …
Abstract
In this study, the composite of aluminum metal–organic framework MIL-68(Al) and reduced graphene oxide (MA/RG) was synthesized via a one–step solvothermal method, and their performances for p–nitrophenol (PNP) adsorption from aqueous solution were systematically investigated. The introduction of reduced graphene oxide (RG) into MIL-68(Al) (MA) significantly changes the morphologies of the MA and increases the surface area. The MA/RG-15% prepared at RG-to-MA mass ratio of 15% shows a PNP uptake rate 64% and 123% higher than MIL-68(Al) and reduced graphene oxide (RG), respectively. The hydrogen bond and π – π dispersion were considered to be the major driving force for the spontaneous and endothermic adsorption process for PNP removal. The adsorption kinetics, which was controlled by film–diffusion and intra–particle diffusion, was greatly influenced by solution pH, ionic strength, temperature and initial PNP concentration. The adsorption kinetics and isotherms can be well delineated using pseudo–second–order and Langmuir equations, respectively. The presence of phenol or isomeric nitrophenols in the solution had minimal influence on PNP adsorption by reusable MA/RG composite.
nature.com
以上显示的是最相近的搜索结果。 查看全部搜索结果

Google学术搜索按钮

example.edu/paper.pdf
查找
获取 PDF 文件
引用
References