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Rapid and efficient removal of fluoride ions from aqueous solution using a polypyrrole coated hydrous tin oxide nanocomposite
被引:52
|作者:
Parashar, Kamya
[1
]
Ballav, Niladri
[1
]
Debnath, Sushanta
[2
]
Pillay, Kriveshini
[1
,3
]
Maity, Arjun
[1
,3
]
机构:
[1] Univ Johannesburg, Dept Appl Chem, Johannesburg, South Africa
[2] Saha Inst Nucl Phys, Kolkata, W Bengal, India
[3] CSIR, DSTCSIR Natl Ctr Nanostruct Mat, ZA-0001 Pretoria, South Africa
基金:
新加坡国家研究基金会;
关键词:
Polypyrrole;
Hydrous tin oxide;
Adsorption;
Fluoride;
Isotherms;
Rapid kinetics;
DRINKING-WATER;
MIXED-OXIDE;
ADSORPTION-KINETICS;
CONDUCTING POLYMERS;
ACTIVATION-ENERGY;
GRAPHENE OXIDE;
ADSORBENT;
DEFLUORIDATION;
THERMODYNAMICS;
PERFORMANCE;
D O I:
10.1016/j.jcis.2016.05.013
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Polypyrrole/hydrous tin oxide nanocomposites (PPy/HSnO NC 1, 2, 3, 4 and 5) were synthesized through encapsulating HSnO by the PPy via an in situ polymerization for fluoride removal. The optimized adsorbent i.e. PPy/HSnO NC 3 was characterized using FE-SEM, HR-TEM, ATR-FTIR, XRD, BET, TGA and zeta sizer. Microscopic images revealed the encapsulation of HSnO by precipitating PPy during polymerization. The FTIR and XRD studies confirmed the presence of both constituents. The BET surface area and pH(pzc) of the adsorbent were estimated to be 65.758 m(2)/g and 7.6, respectively. The fluoride adsorption followed pseudo-second-order model and was commendably rapid. The monolayer adsorption capacity was found to be 26.16-28.99 mg/g at pH 6.5 +/- 0.1. The thermodynamic parameters indicated the sorption of F- was spontaneous, endothermic and that physisorption occurred. The calculated activation energy (E-a similar to 20.05 kJ/mol) provided further evidence of a physisorption mechanism. Moreover, the adsorbent performed very well over a considerably wide pH range of 3.5-8.5 and in the presence of other coexisting ions. The regeneration of the F- laden PPy/HSnO NC 3 showed a high desorption efficiency of 95.81% up to 3 cycles. Ground water tested results also demonstrate the potential utility of the PPy/HSnO NC as an effective adsorbent. (C) 2016 Elsevier Inc. All rights reserved.
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页码:103 / 118
页数:16
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