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Adsorption of Pt(IV) and Pd(II) from Aqueous Solution by Calcined Gibbsite (Aluminum Hydroxide)
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- Ogata Fumihiko
- Faculty of Pharmacy, Kinki University, Japan
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- Inoue Kenji
- Faculty of Pharmacy, Kinki University, Japan
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- Tominaga Hisato
- Faculty of Pharmacy, Kinki University, Japan
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- Iwata Yuka
- Faculty of Pharmacy, Kinki University, Japan
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- Ueda Ayaka
- Faculty of Pharmacy, Kinki University, Japan
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- Tanaka Yuko
- Faculty of Pharmacy, Kinki University, Japan
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- Kawasaki Naohito
- Faculty of Pharmacy, Kinki University, Japan
Description
In the present study, calcined gibbsite (GB) was prepared by calcination treatment between 200 and 1000°C (GB200-GB1000). The properties of GBs (i.e., the amount of hydroxyl groups, specific surface area, mean pore diameter, and pore volume) were evaluated. GB400 had the highest amount of hydroxyl groups (0.46 mmol/g), as well as the highest specific surface area (295.3 m2/g) and micropore volume (0.036 mL/g). It also provided the highest amount of the adsorbed Pt(IV) and Pd(II), which suggests that the adsorption of Pt(IV) and Pd(II) onto GB is related to the amount of hydroxyl groups, specific surface area, and micropore volume. The optimal pH values for the adsorption of Pt(IV) and Pd(II) onto GB400 were 4.5-5.0 and about 6.0, respectively. The equilibrium adsorption of both cations onto GB400 was reached within 30 min. Moreover, the experimental data of the adsorption of Pt(IV) and Pd(II) onto GB400 was fitted by pseudo-second-order model (r = 0.997-0.999) and the Langmuir equation (r = 0.934-0.953). The calculated thermodynamic parameters ΔG, ΔH, and, ΔS indicate that the adsorption of Pt(IV) onto GB400 is feasible, spontaneous, and exothermic. In addition, the amount of Pt(IV) and Pd(II) adsorbed onto GB400 decreased with increasing chloride ion concentration. [DOI: 10.1380/ejssnt.2013.40]
Journal
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- e-Journal of Surface Science and Nanotechnology
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e-Journal of Surface Science and Nanotechnology 11 (0), 40-46, 2013
The Japan Society of Vacuum and Surface Science
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Keywords
Details 詳細情報について
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- CRID
- 1390282680163713408
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- NII Article ID
- 130004438851
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- ISSN
- 13480391
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- Text Lang
- en
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- Data Source
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- JaLC
- Crossref
- CiNii Articles
- OpenAIRE
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- Abstract License Flag
- Disallowed