Amidoxime-Grafted Hydrothermal Carbon Microspheres for Highly Selective Separation of Uranium

被引:28
作者
Geng, Junxia [1 ]
Ma, Lijian [1 ]
Wang, Hang [1 ]
Liu, Jun [1 ]
Bai, Chiyao [1 ]
Song, Qiang [1 ]
Li, Juan [1 ]
Hou, Min [1 ]
Li, Shoujian [1 ]
机构
[1] Sichuan Univ, Coll Chem, Key Lab Radiat Phys & Technol, Minist Educ, Chengdu 610064, Peoples R China
基金
中国国家自然科学基金;
关键词
Uranium(VI); Hydrothermal Carbon; Amidoxime; Sorption; Selective Separation; SOLID-PHASE EXTRACTION; SILICA-GEL; NANOPOROUS SILICA; ADSORPTION; PRECONCENTRATION; REMOVAL; RECOVERY; SORPTION; IONS; CARBONIZATION;
D O I
10.1166/jnn.2012.6518
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A new amidoxime-functionalized carbonaceous sorbent has been successfully prepared using hydrothermal carbon microsphere as solid matrix and diaminomaleonitrile as precursor of amidoxime ligand. Effects of pH, sorbent dosage, contact time, temperature, initial U(VI) concentration and ionic strength on U(VI) sorption were investigated in detail through batch experiments. Sorption of U(VI) on the sorbent was pH-dependent. Sorption equilibrium was reached in 5 min. Distinctively, higher temperature was beneficial to the sorption of U(VI) in the range of 15-60 degrees C, high ionic strength up to 1 mol L-1 NaNO3 had almost no effect on the sorption, and the maximum U(VI) sorption capacity of 466 mg g(-1) was observed under the conditions tested. The as-synthesized sorbent exhibited a high selectivity for U(VI) over other 12 competing ions coexisting in a simulated nuclear industrial effluent sample and the U(VI) sorption amount reached up to 1.09 mmol g(-1), accounting for about 52% of the total sorption amount.
引用
收藏
页码:7354 / 7363
页数:10
相关论文
共 54 条
[1]   Aqueous Phase Adsorption of Cephalexin onto Bentonite and Activated Carbon [J].
Al-Khalisy, Rokayia S. ;
Al-Haidary, Abdul Muhsen A. ;
Al-Dujaili, Ammar H. .
SEPARATION SCIENCE AND TECHNOLOGY, 2010, 45 (09) :1286-1294
[2]   Removal of Copper(II) and Zinc(II) from Aqueous Solutions Using a Lignocellulosic-Based Polymeric Adsorbent Containing Amidoxime Chelating Functional Groups [J].
Anirudhan, T. S. ;
Divya, L. ;
Bringle, C. D. ;
Suchithra, P. S. .
SEPARATION SCIENCE AND TECHNOLOGY, 2010, 45 (16) :2383-2393
[3]   Synthesis and characterization of a functionalized graft copolymer of densified cellulose for the extraction of uranium(VI) from aqueous solutions [J].
Anirudhan, T. S. ;
Sreekumari, S. S. .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2010, 361 (1-3) :180-186
[4]  
Bae K-S., 1997, ENVIRON ENG RES, V2, P61
[5]   Studies on accumulation of uranium by fungus Lentinus sajor-caju [J].
Bayramoglu, Gulay ;
Celik, Gokce ;
Arica, M. Yakup .
JOURNAL OF HAZARDOUS MATERIALS, 2006, 136 (02) :345-353
[6]   Uranium removal from groundwater by natural clinoptilolite zeolite: Effects of pH and initial feed concentration [J].
Camacho, Lucy Mar ;
Deng, Shuguang ;
Parra, Ramona R. .
JOURNAL OF HAZARDOUS MATERIALS, 2010, 175 (1-3) :393-398
[7]   Simple approach to carboxyl-rich materials through low-temperature heat treatment of hydrothermal carbon in air [J].
Chen, Zhen ;
Ma, Lijian ;
Li, Shuqiong ;
Geng, Junxia ;
Song, Qiang ;
Liu, Jun ;
Wang, Chunli ;
Wang, Hang ;
Li, Juan ;
Qin, Zhi ;
Li, Shoujian .
APPLIED SURFACE SCIENCE, 2011, 257 (20) :8686-8691
[8]   Effects of phosphate on uranium(VI) adsorption to goethite-coated sand [J].
Cheng, T ;
Barnett, MO ;
Roden, EE ;
Zhuang, JL .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2004, 38 (22) :6059-6065
[9]   Silver nanoparticles embedded polymer sorbent for preconcentration of uranium from bio-aggressive aqueous media [J].
Das, Sadananda ;
Pandey, Ashok K. ;
Athawale, Anjali A. ;
Subramanian, M. ;
Seshagiri, T. K. ;
Khanna, Pawan K. ;
Manchanda, Vijay K. .
JOURNAL OF HAZARDOUS MATERIALS, 2011, 186 (2-3) :2051-2059
[10]   Exchanges of Uranium(VI) Species in Amidoxime-Functionalized Sorbents [J].
Das, Sadananda ;
Pandey, Ashok K. ;
Athawale, Anjali A. ;
Manchanda, Vijay K. .
JOURNAL OF PHYSICAL CHEMISTRY B, 2009, 113 (18) :6328-6335