Effect of Fe3O4@PDA morphology on the U(VI) entrapment from aqueous solution

被引:49
|
作者
Duan, Shengxia [1 ,2 ]
Xu, Xuetao [2 ]
Liu, Xia [1 ,2 ]
Sun, Ju [1 ,2 ]
Hayat, Tasawar [3 ]
Alsaedi, Ahmed [3 ]
Li, Jiaxing [1 ,3 ,4 ]
机构
[1] Chinese Acad Sci, Inst Plasma Phys, CAS Key Lab Photovolta & Energy Conservat Mat, POB 1126, Hefei 230031, Anhui, Peoples R China
[2] Wuyi Univ, Sch Chem & Environm Engn, Jiangmen 529020, Peoples R China
[3] King Abdulaziz Univ, Fac Sci, Jeddah 21589, Saudi Arabia
[4] Collaborat Innovat Ctr Radiat Med Jiangsu Higher, Suzhou, Peoples R China
基金
中国国家自然科学基金;
关键词
Fe3O4@PDA spheres; Polydopamine; In situ polymerization; U(VI); Adsorption; CARBON NANOTUBES; GRAPHENE OXIDE; FUNCTIONALIZED SBA-15; EFFICIENT ENRICHMENT; IRON NANOPARTICLES; SELECTIVE REMOVAL; URANIUM IONS; VI SORPTION; ADSORPTION; WATER;
D O I
10.1016/j.apsusc.2018.04.131
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
In this work, two kinds of core-shell Fe3O4@PDA materials with different morphologies were successfully prepared by a simple in situ polymerization method based on two kinds of pristine Fe3O4 spheres, which were obtained by hydrothermal method. Among the four obtained samples, Fe3O4@PDA porous nanospheres (MNS-4) have the best U(VI) entrapment performance, which can not only be owing to the structure characteristics (higher porosity and lower density) but also to the PDA shell with large amount of functional groups. Additionally, the maximum removal capacity of MNS-4 for U(VI) entrapment can be of 193.27 mg.g (1) at 298 K, which exceeds the adsorption capacity of most other reported magnetic materials. Moreover, the solution pH values have a significant effect on the adsorption performance of the adsorbents for U(VI) pre-concentration while that originated from ionic strength can be negligible, suggesting that the adsorption process can be achieved through inner-sphere surface complexation. Thermodynamic studies reveal that the U(VI) adsorption process is exothermic and spontaneous. The analysis of adsorption mechanism indicates that U(VI) pre-concentration process can be achieved by the interactions between -OH groups, pyridinic N and C-NH2 and U(VI). This work not only offers a new point of synthesizing undertaking adsorbents with targeting structures, but also provides a facile and versatile approach towards designing Fe3O4-based hybrid materials for their potential environmental applications. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:297 / 308
页数:12
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