Nanoencapsulation of arsenate with nanoscale zero-valent iron(nZVI):A 3D perspective

被引:4
|
作者
Airong Liu
Wei Wang
Jing Liu
Rongbing Fu
Wei-xian Zhang
机构
[1] State Key Laboratory for Pollution Control and Resource Reuse,College of Environmental Science and Engineering,Tongji University
[2] Shanghai Institute of Pollution Control and Ecological Security
[3] School of Chemical Science and Engineering,Tongji University
基金
中国国家自然科学基金;
关键词
Arsenate; Nanoscale zero-valent iron; Spherical aberration corrected scanning; transmission electron microscopy; X-ray energy-dispersive spectroscopy; Electron energy-loss spectroscopy; X-ray photoelectron spectroscopy;
D O I
暂无
中图分类号
O647.11 [表面化学(界面化学)];
学科分类号
070304 ; 081704 ;
摘要
The principal forces driving the efficient enrichment and encapsulation of arsenic(As) into nanoscale zero-valent iron(nZVI) are the disordered arrangement of the atoms and the gradient chemical potentials within the core-shell interface. The chemical compositions and the fine structure of nZVI are characterized with a combination of spherical aberration corrected scanning transmission electron microscopy(Cs-STEM), X-ray energy-dispersive spectroscopy(XEDS), electron energy loss spectroscopy(EELS), and high-resolution X-ray photoelectron spectroscopy(HR-XPS). Atomically resolved EELS at the oxygen K-edge unfolds that the Fe species in nZVI are well stratified from Fe(Ⅲ) oxides in the outermost periphery to a mixed Fe(Ⅲ)/Fe(Ⅱ) interlayer, then Fe(Ⅱ) oxide and the pure Fe(0) phase. Reactions between As(Ⅴ)and nZVI suggest that a well-structured local redox gradient exists within the shell layer, which serves as a thermodynamically favorable conduit for electron transfer from the iron core to the surface-bound As(Ⅴ). HR-XPS with ion sputtering shows that arsenic species shift from As(Ⅴ), As(Ⅲ)/As(Ⅴ) to As(Ⅴ)/As(Ⅲ)/As(0) from the iron oxide shell–water interface to the Fe(0) core. Results reinforce previous work on the efficacy of nZVI for removing and remediating arsenic while the analytical TEM methods are also applicable to the study of environmental interfaces and surface chemistry.
引用
收藏
页码:1641 / 1648
页数:8
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