Kinetic Model of Arsenic Sorption onto Zero-Valent Iron (ZVI)

被引:31
|
作者
Eljamal, Osama [1 ]
Sasaki, Keiko [1 ]
Tsuruyama, Shoichi [1 ]
Hirajima, Tsuyoshi [1 ]
机构
[1] Kyushu Univ, Dept Earth Resources Engn, Nishi Ku, Fukuoka 8190395, Japan
来源
WATER QUALITY EXPOSURE AND HEALTH | 2011年 / 2卷 / 3-4期
关键词
Arsenic sorption; Kinetic model; Zero-valent iron; Arsenate co-precipitation; Arsenite oxidation; Iron(III); ZEROVALENT IRON; REMOVAL; GROUNDWATER; ADSORPTION; FERRIHYDRITE;
D O I
10.1007/s12403-010-0030-7
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
This study investigated the mechanisms involved in removing arsenic from water using zero-valent iron (ZVI) as sorbent. Relatively limited information is available on the kinetics aspects of sorption of arsenic compounds onto ZVI. In order to gain an understanding of the sorption kinetics, a detailed study was conducted in a controlled batch test and developed sorption kinetic model. The effects of different arsenic concentrations on the kinetics sorption rates of arsenic(V) and arsenic(III) were investigated. Arsenic(V) was removed by two mechanisms-surface adsorption and co-precipitation with Fe(III) on ZVI, while arsenic(III) was removed by adsorption on ZVI and oxidized to arsenic(V). Reaction rate constants were calculated for arsenic(V) and arsenic(III) at different concentrations by a second-order kinetic model. The results indicate that ZVI could be employed as sorbent materials to enhance the adsorption and co-precipitation processes to improve the removal rate of arsenic from water. The results also showed that the arsenic(III) oxidized to arsenic(V), while the analyses indicated that there was no measurable reduction of arsenic(V) to arsenic(III).
引用
收藏
页码:125 / 132
页数:8
相关论文
共 50 条
  • [11] Immobilizing arsenic in contaminated anoxic aquifer sediment using sulfidated and uncoated zero-valent iron (ZVI)
    Formentini, Thiago Augusto
    Cornelis, Geert
    Gustafsson, Jon Petter
    Leicht, Kathrin
    Tiberg, Charlotta
    Planer-Friedrich, Britta
    Durant, Neal
    Fan, Dimin
    Kleja, Dan B.
    JOURNAL OF HAZARDOUS MATERIALS, 2024, 462
  • [12] Investigation into the Function of Zero-Valent Iron (ZVI) in the Process of Fayalite Formation
    Wang, Dawei
    Peng, Ning
    Zhao, Zongwen
    Peng, Bing
    Wang, Zhongbing
    Gong, Dandan
    JOM, 2020, 72 (07) : 2721 - 2729
  • [13] Hexavalent Chromium Reduction with Zero-Valent Iron (ZVI) in Aquatic Systems
    Gheju, Marius
    WATER AIR AND SOIL POLLUTION, 2011, 222 (1-4): : 103 - 148
  • [14] Application and development of zero-valent iron (ZVI) for groundwater and wastewater treatment
    K. Plessl
    A. Russ
    D. Vollprecht
    International Journal of Environmental Science and Technology, 2023, 20 : 6913 - 6928
  • [15] Insights into kinetics, isotherms and thermodynamics of phosphorus sorption onto nanoscale zero-valent iron
    Maamoun, Ibrahim
    Eljamal, Ramadan
    Falyouna, Omar
    Bensaida, Khaoula
    Sugihara, Yuji
    Eljamal, Osama
    JOURNAL OF MOLECULAR LIQUIDS, 2021, 328
  • [16] Implementation of zero-valent iron (ZVI) into drinking water supply - Role of the ZVI and biological processes
    Kowalski, Krzysztof P.
    Sogaard, Erik G.
    CHEMOSPHERE, 2014, 117 : 108 - 114
  • [17] Application and development of zero-valent iron (ZVI) for groundwater and wastewater treatment
    Plessl, K.
    Russ, A.
    Vollprecht, D.
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2023, 20 (06) : 6913 - 6928
  • [18] Investigation into the Function of Zero-Valent Iron (ZVI) in the Process of Fayalite Formation
    Dawei Wang
    Ning Peng
    Zongwen Zhao
    Bing Peng
    Zhongbing Wang
    Dandan Gong
    JOM, 2020, 72 : 2721 - 2729
  • [19] Hexavalent Chromium Reduction with Zero-Valent Iron (ZVI) in Aquatic Systems
    Marius Gheju
    Water, Air, & Soil Pollution, 2011, 222 : 103 - 148
  • [20] The sorption of metal ions on nanoscale zero-valent iron
    Suponik, Tomasz
    Popczyk, Marcin
    Pierzyna, Piotr
    MINERAL ENGINEERING CONFERENCE (MEC2017), 2017, 18