Citation:
	            
		            JIANG  Gui-Ming, GAO  Bao-Jiao, XU  Wen-Mei, WANG  Xiao-Hua. Adsorption Behavior and Thermodynamics of Iminodiacetic Acid-Type Material IDAA-PGMA/SiO2 for Heavy Metal Ions and Rare Earth Ions[J]. Acta Physico-Chimica Sinica,
							;2011, 27(06): 1474-1481.
						
							doi:
								10.3866/PKU.WHXB20110529
						
					
				
					
				
	        
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Glycidyl methacrylate (GMA) was grafted onto micron-sized silica gel particles and the grafted particles of PGMA/SiO2 were obtained. Subsequently, a ring-opening reaction of the epoxy groups on the grafted PGMA was carried out using iminodiacetic acid (IDAA) as a reagent, which resulted in IDAA group bonding and in the preparation of the composite chelating particles IDAA-PGMA/SiO2. In this work, the adsorption behavior and adsorption thermodynamics of IDAA-PGMA/SiO2 toward heavy metal ions and rare earth ions were investigated, and the adsorption mechanism was investigated in depth. The experimental results show that the particles IDAA-PGMA/SiO2 possess strong adsorption action for heavy metal ions and the adsorption capacity of the Pb2+ ions reached 0.235 g·g-1. The adsorption of heavy metal ions on IDAA-PGMA/SiO2 is exothermic and is driven by enthalpy, leading to a decrease in the adsorption capacity as temperature is raised. The adsorption of rare earth ions on IDAA-PGMA/SiO2 is driven by entropy. The adsorption ability of IDAA-PGMA/SiO2 toward heavy ions is much stronger than that toward the rare earth ions.
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                    [1]
                
			
1. Kumar, G. P.; Kumar, P. A.; Chakraborty, S.; Ray, M. Sep. Purif. Technol. 2007, 57, 47.
 - 
			
                    [2]
                
			
2 Sun, S. L.;Wang, A. Q. Sep. Purif. Technol. 2006, 49, 197.
 - 
			
                    [3]
                
			
3 Dinu, M .V.; Dragan, E .S. React. Funct. Polym. 2008, 68, 1346.
 - 
			
                    [4]
                
			
4 Özcan, A .S.; Gök, Ö.; Özcan, A. J. Hazard. Mater. 2009, 161, 499.
 - 
			
                    [5]
                
			
5 Cestari, A. R.; Vieira, E. F. S.; Mattos, C. R.S. J. Chem. Thermodyn. 2006, 38, 1092.
 - 
			
                    [6]
                
			
6 Sun, S. G.;Wang, A. Q. J. Hazard. Mater. 2006, 131, 103.
 - 
			
                    [7]
                
			
7 Sirola, K.; Laatikainen, M.; Lahtinen, M.; Paatero, E. Sep. Purif. Technol. 2008, 64, 88.
 - 
			
                    [8]
                
			
8 Atia, A. A.; Donia, A. M.; Yousif, A. M. Sep. Purif. Technol. 2008, 61, 348.
 - 
			
                    [9]
                
			
9 Atia, A. A.; Donia, A. M.; Elwakeel, K. Z. Sep. Purif. Technol. 2005, 43, 43.
 - 
			
                    [10]
                
			
10 Busche, B.;Wiacek, R.; Davidson, J.; Koonsiripaiboon, V.; Yantasee,W.; Addleman, R.S.; Fryxell, G .E. Inorg. Chem. Commun. 2009, 12, 312.
 - 
			
                    [11]
                
			
11 Chang, T. C.; Shih, C. C.; Yin, C. P.; Chen, H. B.;Wu, T. R. Polym. Degrad. Stab. 2005, 87, 87.
 - 
			
                    [12]
                
			
12 Hubicka, H.; Ko?odyńska, D. J. Rare Earths 2008, 26, 619.
 - 
			
                    [13]
                
			
13 Barron, L.; O′Toole, M.; Diamond, D.; Nesterenko, P. N.; Paull, B. J. Chromatogr. A 2008, 1213, 31.
 - 
			
                    [14]
                
			
14 Pons, C.; Forteza, R.; Cerdà,V. Anal. Chim. Acta 2005, 197.
 - 
			
                    [15]
                
			
15 Lin, L.C.; Li, J. K.; Juang, R. S. Desalination 2008, 225, 249.
 - 
			
                    [16]
                
			
16 Oshita, K.; Sabarudin, A.; Takayanagi, T.; Oshima, M.; Motomizu, S. Talanta 2009, 79, 1013.
 - 
			
                    [17]
                
			
17 Ma, Z. Y.; Liu, X. Q.; Guan, Y. P.; Liu, H. Z. Colloids Surf. A 2006, 87.
 - 
			
                    [18]
                
			
18 Wu, X. M.;Wang, Y. Chin. Chem. Lett. 2010, 21, 51.
 - 
			
                    [19]
                
			
19 Zainol, Z.; Nicol, M. J. Hydrometallurgy 2009, 96, 283.
 - 
			
                    [20]
                
			
20 Lin, L. C.; Juang, R. S. Chem. Eng. J. 2007, 132, 205.
 - 
			
                    [21]
                
			
21 Jiang, G. M.; Gao, B. J.; Zhang, R. X. J. Func. Poly. 2010, 23, 256.
 - 
			
                    [22]
                
			
[姜桂明, 高保娇, 张瑞霞. 功能高分子学报, 2010, 23, 256.]
 - 
			
                    [23]
                
			
22 Sun, M.; Qiu, H. D.;Wang, L. C.; Jiang, S. X. J. Chromatogr. A 2009, 1216, 3904.
 - 
			
                    [24]
                
			
23 Chen, C. Y.; Chiang, C. L.; Huang, P. C. Sep. Purif. Technol. 2006, 50, 15.
 - 
			
                    [25]
                
			
24 El-Shahat, M. F.; Moawed, E. A.; Burham, N. J. Hazard. Mater. 2008, 160, 629.
 - 
			
                    [26]
                
			
25 Anirudhan, T. S.; Ramachandran, M. Ind. Eng. Chem. Res. 2008, 47, 6175.
 - 
			
                    [27]
                
			
26 Ling, P. P.; Liu, F. Q.; Li, L. J.; Jing, X. S.; Yin, B. R.; Chen, K. B.; Li, A. M. Talanta 2010, 81, 424.
 - 
			
                    [28]
                
			
27 Christophi, C. A.; Axe, L. J. Environ. Eng. 2000, 126, 66.
 - 
			
                    [29]
                
			
28 Airoldi, C.; Alcântara, Edésio F. C. J. Chem. Thermodyn. 1995, 27, 623.
 - 
			
                    [30]
                
			
29 Anjos, Fernanda S. C.; Vieira, Eunice, F. S.; Cestari, A. R. J. Colloid Interface Sci. 2002, 253, 243.
 - 
			
                    [31]
                
			
30 Dinu, M. V.; Dragan, E. S. React. Funct. Polym. 2008, 68, 1346.
 - 
			
                    [32]
                
			
31 Baraka, A.; Hall, P. J.; Heslop, M. J. React. Funct. Polym. 2007, 67, 585.
 
 - 
			
                    [1]
                
			
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