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A kinetics-coupled multi-surface complexation model deciphering arsenic adsorption and mobility across soil types
Yutong Liu; Liyang Zhang; Yubo Wen; Hanzhao Zhai; Yuli Yuan; Chao Guo; Lei Wang; Fei Wu; Chengshuai Liu; Jian Xiao; Juan Liu; Xiaofan Yang; Yuanfeng Cai; Junfeng Ji; Yuanyuan Liu
2024
Source PublicationScience of The Total Environment
Volume948Pages:174856
Abstract

The diversity of soil adsorbents for arsenic (As) and the often-overlooked influence of manganese (Mn) on As(III) oxidation impose challenges in predicting As adsorption in soils. This study uses Mössbauer spectroscopy, X-ray diffraction of oriented clay, and batch experiments to develop a kinetic coupled multi-surface complexation model that characterizes As adsorbents in natural soils and quantifies their contributions to As adsorption. The model integrates dynamic adsorption behaviors and Mn-oxide interactions with unified thermodynamic and kinetic parameters. The results indicate that As adsorption is governed by five primary adsorbents: poorly crystalline Fe oxides, well crystalline Fe oxides, Fe-rich clay, Fe-depletion clay, and organic carbon (OC). Fe oxides dominate As adsorption at low As concentrations. However, at higher As concentrations, soils from carbonate strata, with higher content of Fe-rich clay, exhibit stronger As adsorption capabilities than soils from Quaternary sediment strata. The enrichment in Fe-rich clay can enhance the resistance of adsorbed As to reduction processes affecting Fe oxides. Additionally, extensive redox cycles in paddy fields increase OC levels, enhancing their As adsorption compared to upland fields. This model framework provides novel insights into the intricate dynamics of As within soils and a versatile tool for predicting As adsorption across diverse soils.

 

DOI10.1016/j.scitotenv.2024.174856
URL查看原文
Indexed BySCI
Language英语
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Cited Times:1[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/15792
Collection环境地球化学国家重点实验室
Affiliation1.Key Laboratory of Surficial Geochemistry (Ministry of Education), School of Earth Sciences and Engineering, Nanjing University, Nanjing 210023, China
2.School of Geographical Science, Nantong University, Nantong, Jiangsu 226007, China
3.Office of Land Quality Geochemical Assessment of Guangxi, Nanning, Guangxi 530023, China
4.Geology Team No. 4 of Guangxi Zhuang Autonomic Region, Nanning, Guangxi 530031, China
5.State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China
6.Key Laboratory of Agrometeorology of Jiangsu Province, School of Ecology and Applied Meteorology, Nanjing University of Information Science & Technology, Nanjing 210044, China
7.Key Laboratory of Water and Sediment Sciences, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, China
8.State Key Laboratory of Earth Surface Processes and Resource Ecology, Faculty of Geographical Science, Beijing Normal University, Beijing, China
Recommended Citation
GB/T 7714
Yutong Liu,Liyang Zhang,Yubo Wen,et al. A kinetics-coupled multi-surface complexation model deciphering arsenic adsorption and mobility across soil types[J]. Science of The Total Environment,2024,948:174856.
APA Yutong Liu.,Liyang Zhang.,Yubo Wen.,Hanzhao Zhai.,Yuli Yuan.,...&Yuanyuan Liu.(2024).A kinetics-coupled multi-surface complexation model deciphering arsenic adsorption and mobility across soil types.Science of The Total Environment,948,174856.
MLA Yutong Liu,et al."A kinetics-coupled multi-surface complexation model deciphering arsenic adsorption and mobility across soil types".Science of The Total Environment 948(2024):174856.
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