|
个人信息Personal Information
职称:特聘教授(人才)
博士生导师
学科:材料学
学位:博士
所在单位:材料科学与工程学院
联系方式:邮箱:wangxiang25@ustb.edu.cn
Facet-Dependent Adsorption of Pb (II) on Hematite (001),(116), and (104) Surfaces
点击次数:
影响因子:13.1
DOI码:10.1021/acs.est.5c05288
发表刊物:Environmental Science & Technology
摘要:Hematite’s common (001) and (012) facets are frequently used in model studies of lead (Pb) adsorption behavior, but there is a lack of research on the high-energy facets, e.g., (104), present in nature. Also, few studies have attempted to connect the molecular details of facet-specific Pb adsorption to the macroscopic uptake behavior. To address these knowledge gaps, we investigated Pb(II) adsorption behaviors on facet-engineered hematite nanoparticles dominated by (001), (104), and (116). Adsorption experiments revealed significant variations in Pb(II) uptake among the three samples, with (001) demonstrating the highest capacity and (116) showing the best adsorption efficiency when normalized to the specific surface area. Adsorption kinetics followed the pseudo-second-order model, indicating that the adsorption process is governed mostly by chemisorption. Adsorption isotherms were well fitted by the Langmuir model, indicating that uptake proceeds until roughly monolayer adsorption. Detailed characterization revealed Pb(II) was adsorbed as single atoms with complex inner-sphere binding modes that varied across different facets, indicating that adsorption is both structurally and energetically facet-dependent. Coadsorption experiments further demonstrated Cu2+, Zn2+, and humic acid significantly promoted Pb(II) adsorption. This study advances the understanding of hematite surface reactivity in controlling macroscopic wet adsorption behaviors, providing valuable insights into the environmental fate of Pb(II).
合写作者:Micah P Prange, Duo Song, Sungsik Lee, Sang Soo Lee, Juejing Liu, Yatong Zhao, Xiang Wang, Mark H Engelhard, Yadong Zhou, Yifu Feng, Nikita Basilyan, Xiaoxu Li, Carolyn I Pearce, Zheming Wang, Zihua Zhu
第一作者:Ping Chen
论文类型:期刊论文
通讯作者:Kevin M Rosso, Xin Zhang
学科门类:工学
文献类型:J
卷号:59
期号:23
页面范围:11862–11874
是否译文:否
发表时间:2025-06-02
收录刊物:SCI

