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| Content Provider | World Health Organization (WHO)-Global Index Medicus |
|---|---|
| Author | Tan, Lichao Jing, Xiaoyan Liu, Jingyuan Zhang, Hongsen Wang, Jun Song, Dalei Li, Rumin Liu, Qi Zhu, Jiahui Emelchenko, G. A. |
| Description | Author Affiliation: Liu Q ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com.); Zhu J ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com.); Tan L ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com.); Jing X ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com.); Liu J ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com.); Song D ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com.); Zhang H ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com.); Li R ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com and Harbin Shipbuilding Engineering Design & Research Academy, Harbin, 150001, China.); Emelchenko GA ( Institute of Solid State Physics, Russian Academy of Sciences, Chernogolovka, 142432, Russia.); Wang J ( Key Laboratory of Superlight Material and Surface Technology, Ministry of Education, Harbin Engineering University, Harbin 150001, China. zhqw1888@sohu.com and Harbin Shipbuilding Engineering Design & Research Academy, Harbin, 150001, China and Institute of Advanced Marine Materials, Harbin Engi) |
| Abstract | A novel rod-like, dual-shell structural adsorbent of polypyrrole/cobalt ferrite/multiwalled carbon nanotubes $(PPy/CoFe_{2}O_{4}/MWCNTs)$ was successfully synthesized by a hydrothermal method, which could easily separate uranium(VI) ions with an external magnetic field. The structure and morphology of $PPy/CoFe_{2}O_{4}/MWCNTs$ were characterized by VSM, XRD, XPS TEM and FT-IR. The results proved that the dual-shell structure was obtained in which a shell of cobalt ferrite and polypyrrole formed around the MWCNTs core. In batch adsorption experiments, including pH, equilibrium time and temperature on uranium adsorption, were investigated. The main results show that the $PPy/CoFe_{2}O_{4}/MWCNTs$ composite has a higher affinity towards the uptake of uranium(VI) from aqueous solutions. The highest adsorption capacity reached was 148.8 mg U per g at pH 7. A kinetic analysis showed that the adsorption process was best described by a pseudo-second-order kinetic model. The uranium sorption equilibrium data correlated well with the Langmuir sorption isotherm model in the thermodynamic analysis. 0.5 mol per L $NaHCO_{3}$ was used as the desorbent and good adsorption properties were shown after the desorption procedures were repeated three times. Thus, $PPy/CoFe_{2}O_{4}/MWCNTs$ was an excellent adsorbent for removing uranium(VI) ions. |
| ISSN | 14779226 |
| Issue Number | 22 |
| Journal | Dalton Trans. |
| Volume Number | 45 |
| e-ISSN | 13645447 |
| Language | English |
| Publisher | Royal Society of Chemistry |
| Publisher Date | 2016-05-31 |
| Publisher Place | Great Britain (UK) |
| Access Restriction | Subscribed |
| Subject Keyword | Chemistry |
| Content Type | Text |
| Resource Type | Article |
| Subject | Inorganic Chemistry |
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