Note: Zr(IV)-Immobilized Resin Prepared by Surface Template Polymerization for Fluoride Ion Removal

被引:7
作者
Mizuki, Hidenobu [1 ]
Ito, Yudai [1 ]
Samatya, Saba [1 ]
Harada, Hisashi [1 ]
Kawakita, Hidetaka [2 ]
Uezu, Kazuya [1 ]
机构
[1] Univ Kitakyushu, Dept Chem Proc & Environm, Fukuoka 8080135, Japan
[2] Saga Univ, Dept Appl Chem, Saga 840, Japan
关键词
Fluoride; adsorption; large macropore; Zr(IV)-phosphate complex; computational chemistry; WASTE-WATER; IMPRINTED RESINS; AQUEOUS-SOLUTION; METAL; ELECTRODIALYSIS; DEFLUORIDATION; ADSORPTION; ACID;
D O I
10.1080/07366299.2011.539417
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A novel adsorbent Zr(IV)-immobilized resin was prepared to remove fluoride ions from tap water and industrial wastewater. In order to enhance both the kinetics and efficiency, large pathways were formed in the resin for fluoride ion adsorption and the Zr(IV)-phosphate complexes were immobilized on the polymer surface by surface-template polymerization. The Zr(IV)-immobilized resin had a fluoride adsorption capacity of 0.30 mmol/g. The morphology of the Zr(IV)-immobilized resin was evaluated by measuring the specific surface area, pore volume, and pore size distribution. The resin possessed large amounts of large macropores with diameters around 300 nm. The molecular structure at the fluoride adsorption sites was investigated by measuring the amounts of phosphorus, zirconium, and fluoride ion in the resin, and developing a model complex using computational chemistry. On the polymer surface, a fluoride ion/Zr(IV)/dioleyl phosphoric acid complex with an ideal F:Zr:P mole ratio of 3:1:3 could be formed.
引用
收藏
页码:146 / 156
页数:11
相关论文
共 28 条
[1]   Removal of fluoride using some lanthanum(III)-loaded adsorbents with different functional groups and polymer matrices [J].
Fang, L ;
Ghimire, KN ;
Kuriyama, M ;
Inoue, K ;
Makino, K .
JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2003, 78 (10) :1038-1047
[2]   Investigations on the column performance of fluoride adsorption by activated alumina in a fixed-bed [J].
Ghorai, S ;
Pant, KK .
CHEMICAL ENGINEERING JOURNAL, 2004, 98 (1-2) :165-173
[3]   Precipitate flotation of fluoride-containing wastewater from a semiconductor manufacturer [J].
Huang, CJ ;
Liu, JC .
WATER RESEARCH, 1999, 33 (16) :3403-3412
[4]   Separation of fluoride from aqueous solution by electrodialysis:: Effect of process parameters and other ionic species [J].
Kabay, Nalan ;
Arar, Ozgur ;
Samatya, Saba ;
Yuksel, Umran ;
Yuksel, Mithat .
JOURNAL OF HAZARDOUS MATERIALS, 2008, 153 (1-2) :107-113
[5]   METAL-ION COMPLEXATION BEHAVIOR OF RESINS PREPARED BY A NOVEL TEMPLATE POLYMERIZATION TECHNIQUE [J].
KIDO, H ;
MIYAJIMA, T ;
TSUKAGOSHI, K ;
MAEDA, M ;
TAKAGI, M .
ANALYTICAL SCIENCES, 1992, 8 (06) :749-753
[6]  
Ma G., 1999, CHIN ENV SCI, V04, P345
[7]   Fluoride in drinking water and its removal [J].
Meenakshi ;
Maheshwari, R. C. .
JOURNAL OF HAZARDOUS MATERIALS, 2006, 137 (01) :456-463
[8]   Caries and fluorosis in 6-and 9-year-old children residing in three communities in Iran [J].
Meyer-Lueckel, H ;
Paris, S ;
Shirkhani, B ;
Hopfenmuller, W ;
Kielbassa, AM .
COMMUNITY DENTISTRY AND ORAL EPIDEMIOLOGY, 2006, 34 (01) :63-70
[9]   Immobilized-metal affinity sorbents based on hydrophilic methacrylate polymers and their interaction with immunoglobulins [J].
Mézárosová, K ;
Tishchenko, G ;
Bouchal, K ;
Bleha, M .
REACTIVE & FUNCTIONAL POLYMERS, 2003, 56 (01) :27-35
[10]   SELECTIVE REMOVAL OF FLUORIDE IONS FROM WATER BY THE ALUMINUM FORM OF THE AMINOMETHYLPHOSPHONIC ACID-TYPE ION-EXCHANGER [J].
POPAT, KM ;
ANAND, PS ;
DASARE, BD .
REACTIVE POLYMERS, 1994, 23 (01) :23-32