Arsenic behavior across soil-water interfaces in paddy soils: coupling, decoupling and speciation

YUAN, Zhao-Feng, GUSTAVE, Williamson, BOYLE, John, SEKAR, Raju, BRIDGE, Jonathan, REN, Yuxiang, TANG, Xianjin, GUO, Bin and CHEN, Zheng (2020). Arsenic behavior across soil-water interfaces in paddy soils: coupling, decoupling and speciation. Chemosphere, p. 128713.

[img] PDF
Bridge-ArsenicBehaviorAcross(AM).pdf - Accepted Version
Restricted to Repository staff only until 22 October 2021.
Creative Commons Attribution Non-commercial No Derivatives.

Download (1MB)
Official URL:
Link to published version::
Related URLs:


    The sharp redox gradient at soil-water interfaces (SWI) plays a key role in controlling arsenic (As) translocation and transformation in paddy soils. When Eh drops, As is released to porewater from solid iron (Fe) and manganese (Mn) minerals and reduced to arsenite. However, the coupling or decoupling processes operating within the redox gradient at the SWI in flooded paddy soils remain poorly constrained due to the lack of direct evidence. In this paper, we reported the mm-scale mapping of Fe, As and other associated elements across the redox gradient in the SWI of five different paddy soils. The results showed a strong positive linear relationship between dissolved Fe, Mn, As, and phosphorus (P) in 4 out of the 5 paddy soils, indicating the general coupling of these elements. However, decoupling of Fe, Mn and As was observed in one of the paddy soils. In this soil, distinct releasing profiles of Mn, As and Fe were observed, and the releasing order followed the redox ladder. Further investigation of As species showed the ratio of arsenite to total As dropped from 100% to 75.5% and then kept stable along depth of the soil profile, which indicates a dynamic equilibrium between arsenite oxidization and arsenate reduction. This study provides direct evidence of multi-elements’ interaction along redox gradient of SWI in paddy soils.

    Item Type: Article
    Uncontrolled Keywords: Environmental Sciences; Meteorology & Atmospheric Sciences
    Identification Number:
    Page Range: p. 128713
    SWORD Depositor: Symplectic Elements
    Depositing User: Symplectic Elements
    Date Deposited: 02 Nov 2020 19:57
    Last Modified: 17 Mar 2021 21:00

    Actions (login required)

    View Item View Item


    Downloads per month over past year

    View more statistics