Synthesis of Starch-g-Poly-(N-methylacrylamide-co-acrylic acid) and its application for the removal of mercury (II) from aqueous solution by adsorption

被引:55
作者
Kolya, Haradhan [1 ]
Das, Subhadip [1 ]
Tripathy, Tridib [1 ]
机构
[1] Midnapore Coll, Postgrad Div Chem, Paschim Medinipur 721101, W Bengal, India
关键词
Graft-copolymer; N-methylacrylamide; Acrylic acid; Starch; Hg (II) removal; METAL-IONS; CHITOSAN; DERIVATIVES; ADSORBENT;
D O I
10.1016/j.eurpolymj.2014.05.019
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Starch-g-Poly-(N-methylacrylamide-co-acrylic acid) was synthesized by solution polymerization technique using potassium perdisulfate (K2S2O8) as the initiator at 90 +/- 1 degrees C. Various characterization techniques like molecular weight determination using size exclusion chromatography (SEC), FTIR and H-1 NMR spectroscopy and SEM studies were used to characterize the graft copolymer. Biodegradation of the graft copolymer was carried out by enzymatic cleavage using alpha-amylase as the enzyme. The number of carboxylic acid groups (-COOH) incorporated into the synthesized graft copolymer was calculated by measuring neutralization equivalent of the graft copolymer applying conductometric titration. This synthetic graft copolymer was used for removal of Hg (II) ions from its aqueous solution. Various operating variables affecting the Hg (II) sorption such as the amount of adsorbent, solution pH, contact time and the Hg (II) solution concentration were extensively investigated. FT1R and cyclic voltammetry were employed to study the metal complexation. The adsorption data could be well described by the pseudo-second-order and Langmuir isotherm model. Calculation of the various thermodynamic parameters for the adsorption was also done. FTIR spectra before and after adsorption of Hg (II) on the graft copolymer revealed that complexation was considered as the adsorption mechanism where ionic attraction are mainly responsible for binding Hg (H) ions with the -COOH groups of the graft copolymer. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1 / 10
页数:10
相关论文
共 35 条
[11]  
Kadir Velu K., 2001, BIORESOURCE TECHNOL, V76, P63
[12]  
Khalil MI, 1998, J APPL POLYM SCI, V69, P45, DOI 10.1002/(SICI)1097-4628(19980705)69:1<45::AID-APP6>3.0.CO
[13]  
2-M
[14]   Hydroxyethyl Starch-g-Poly-(N,N-dimethylacrylamideco-acrylic acid): An efficient dye removing agent [J].
Kolya, Haradhan ;
Tripathy, Tridib .
EUROPEAN POLYMER JOURNAL, 2013, 49 (12) :4265-4275
[15]   Preparation, investigation of metal ion removal and flocculation performances of grafted hydroxyethyl starch [J].
Kolya, Haradhan ;
Tripathy, Tridib .
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2013, 62 :557-564
[16]   Grafted Polysaccharides Based on Acrylamide and N,N-Dimethylacrylamide: Preparation and Investigation of Their Flocculation Performances [J].
Kolya, Haradhan ;
Tripathy, Tridib .
JOURNAL OF APPLIED POLYMER SCIENCE, 2013, 127 (04) :2786-2795
[17]   Mercury recovery by polymer-enhanced ultrafiltration: Comparison of chitosan and poly(ethylenimine) used as macroligand [J].
Kuncoro, EP ;
Roussy, J ;
Guibal, E .
SEPARATION SCIENCE AND TECHNOLOGY, 2005, 40 (1-3) :659-684
[18]   Water soluble dextran-polyacrylamide graft copolymers for capturing metal ions [J].
Kutsevol, N ;
Guenet, JM ;
Melnyk, N ;
Sarazin, D .
MACROMOLECULAR SYMPOSIA, 2006, 235 :201-205
[19]   Mercury(II) Removal with Modified Magnetic Chitosan Adsorbents [J].
Kyzas, George Z. ;
Deliyanni, Eleni A. .
MOLECULES, 2013, 18 (06) :6193-6214
[20]   Novel ion-imprinted polymer using crown ether as a functional monomer for selective removal of Pb(II) ions in real environmental water samples [J].
Luo, Xubiao ;
Liu, Lingling ;
Deng, Fang ;
Luo, Shenglian .
JOURNAL OF MATERIALS CHEMISTRY A, 2013, 1 (28) :8280-8286