中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Adsorptive removal of anionic dyes by graphene impregnated with MnO2 from aqueous solution

文献类型:期刊论文

作者Yusuf, Mohammed2; Song, Kang2; Geng, Shixian1; Xie Fazhi1
刊名COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS
出版日期2020-06-20
卷号595页码:12
关键词Graphene Manganese (IV) oxide Congo red Acid green 25 Batch and column operation
ISSN号0927-7757
DOI10.1016/j.colsurfa.2020.124667
通讯作者Song, Kang(sk@ihb.ac.cn)
英文摘要Graphene nanosheet-manganese dioxide (GN-MnO2) composite was synthesized by a microwave-assisted method. The physico-chemical properties of modified graphene (GN) were characterized by different techniques, such as scanning electron microscopes (SEM), Fourier-transform infrared spectrometers (FTIR), X-ray diffraction (XRD) and Raman spectroscopy. The effects of contact time, pH, concentration, temperature, and the dose of adsorbent on the adsorption attributes of Congo red (CR) and Acid green 25 (AG25) on GN-MnO2 composite was studied. The experimental facts of the isotherm were found to be more fitted with the Langmuir isotherm rather than the Freundlich one, while the pseudo-second-order kinetic model/curve was found to be fitted with experimental data, giving an indication that the experiment was controlled by chemical processes. The maximum adsorption capacities is derived from the Langmuir model equation at 303 K were 270.06 and 324.26 mg/g for CR and AG25, respectively. The thermodynamic study revealed that the adsorption of CR and AG25 dyes onto the GN-MnO2 was pretty much spontaneous in nature and showed that the GN-MnO2 was a decent adsorbent for the elimination of CR and AG25 ions in aqueous conditions. The column studies were conducted in varying flowrates (4-12 mL/min), and bed heights (0.5-1.5 cm), with a concentration of 100 mg/L, while at pH of 3 and 4 for CR and AG25, respectively. The adsorption capability increased with the increasing influent level and column depth while it was reduced by upturn in flow-rate. The results obtained were fitted well with the Bed Depth Service Time BDST and Thomas models.
WOS关键词HEAVY-METAL IONS ; CONGO RED ; ENHANCED ADSORPTION ; OXIDE COMPOSITE ; WATER ; CARBON ; BATCH ; BIOSORPTION ; ADSORBENT ; MICROSPHERES
资助项目Chinese Academy of Sciences ; National Water Science and Technology Projects, China[2018ZX07208001] ; Chinese Academy of Sciences[Y82Z08-1-401] ; Chinese Academy of Sciences[Y75Z01-1-401]
WOS研究方向Chemistry
语种英语
WOS记录号WOS:000528865400018
出版者ELSEVIER
资助机构Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; National Water Science and Technology Projects, China ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences ; Chinese Academy of Sciences
源URL[http://ir.ihb.ac.cn/handle/342005/36428]  
专题水生生物研究所_水环境工程研究中心_期刊论文
通讯作者Song, Kang
作者单位1.Anhui Jianzhu Univ, Sch Mat Sci & Chem Engn, Hefei 230022, Peoples R China
2.Chinese Acad Sci, Inst Hydrobiol, State Key Lab Freshwater Ecol & Biotechnol, Wuhan 430072, Peoples R China
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Yusuf, Mohammed,Song, Kang,Geng, Shixian,et al. Adsorptive removal of anionic dyes by graphene impregnated with MnO2 from aqueous solution[J]. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,2020,595:12.
APA Yusuf, Mohammed,Song, Kang,Geng, Shixian,&Xie Fazhi.(2020).Adsorptive removal of anionic dyes by graphene impregnated with MnO2 from aqueous solution.COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS,595,12.
MLA Yusuf, Mohammed,et al."Adsorptive removal of anionic dyes by graphene impregnated with MnO2 from aqueous solution".COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS 595(2020):12.

入库方式: OAI收割

来源:水生生物研究所

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