TY - JOUR
T1 - Effect and mechanism of kaolinite loading amorphous zero-valent iron to stabilize cadmium in soil
AU - Ren, Jieling
AU - Zheng, Chunli
AU - Yong, Yingying
AU - Lin, Zishen
AU - Zhu, Aibin
AU - He, Chi
AU - Pan, Hua
N1 - Publisher Copyright:
© 2023 Elsevier B.V.
PY - 2023/12/15
Y1 - 2023/12/15
N2 - Amorphousness effectively improves the electron transfer rate of zero-valent iron. In this study, a novel kaolinite loading amorphous zero-valent iron composite (K-AZVI) was prepared and applied to the remediation of soils with cadmium (Cd) pollution concentrations of 20, 50, and 100 mg/kg respectively. The results showed that the application of K-AZVI increased the pH and cation exchange capacity (CEC) of soil, and decreased the dissolved organic carbon (DOC) and organic matter (OM) of soil, thus indirectly promoting the adsorption of Cd in the soil. After 28 days of stabilization, the stabilizing efficiency of K-AZVI on the water-soluble Cd content in soil reached 98.72 %. Under the amendment of 0.25 %–1.0 % (w/w), the available Cd content in 20–100 mg/kg contaminated soil decreased by 46.47 %–62.23 %, 24.10 %–41.52 %, and 16.09 %–30.51 % respectively compared with CK. More importantly, the addition of K-AZVI promoted the transformation of 33.18 %–48.42 % exchangeable fraction (EXC) to 10.09 %–20.14 % residual fraction (RES), which increased the abundance and diversity of soil bacterial communities. Comprehensive risk assessment showed that adding 1.0 % K-AZVI provided the best remediation on contaminated soil. In addition, the results of scanning electron microscopy (SEM), X-ray diffraction (XRD), and X-ray photoelectron spectroscopy (XPS) of K-AZVI before and after the reaction showed that the stabilization mechanism of K-AZVI to Cd in soil is mainly the stable metal species (Cd(OH)2, CdO and CdFe2O4) formed by the direct complexation and coprecipitation of a large number of iron oxides formed by the rapid corrosion of amorphous zero-valent iron (AZVI). Overall, this work provides a promising approach to the remediation of Cd-contaminated soil using K-AZVI composites.
AB - Amorphousness effectively improves the electron transfer rate of zero-valent iron. In this study, a novel kaolinite loading amorphous zero-valent iron composite (K-AZVI) was prepared and applied to the remediation of soils with cadmium (Cd) pollution concentrations of 20, 50, and 100 mg/kg respectively. The results showed that the application of K-AZVI increased the pH and cation exchange capacity (CEC) of soil, and decreased the dissolved organic carbon (DOC) and organic matter (OM) of soil, thus indirectly promoting the adsorption of Cd in the soil. After 28 days of stabilization, the stabilizing efficiency of K-AZVI on the water-soluble Cd content in soil reached 98.72 %. Under the amendment of 0.25 %–1.0 % (w/w), the available Cd content in 20–100 mg/kg contaminated soil decreased by 46.47 %–62.23 %, 24.10 %–41.52 %, and 16.09 %–30.51 % respectively compared with CK. More importantly, the addition of K-AZVI promoted the transformation of 33.18 %–48.42 % exchangeable fraction (EXC) to 10.09 %–20.14 % residual fraction (RES), which increased the abundance and diversity of soil bacterial communities. Comprehensive risk assessment showed that adding 1.0 % K-AZVI provided the best remediation on contaminated soil. In addition, the results of scanning electron microscopy (SEM), X-ray diffraction (XRD), and X-ray photoelectron spectroscopy (XPS) of K-AZVI before and after the reaction showed that the stabilization mechanism of K-AZVI to Cd in soil is mainly the stable metal species (Cd(OH)2, CdO and CdFe2O4) formed by the direct complexation and coprecipitation of a large number of iron oxides formed by the rapid corrosion of amorphous zero-valent iron (AZVI). Overall, this work provides a promising approach to the remediation of Cd-contaminated soil using K-AZVI composites.
KW - Amorphous zero-valent iron
KW - Cd-contaminated soil
KW - Immobilization
KW - Kaolinite
KW - Removal mechanism
UR - https://www.scopus.com/pages/publications/85168426018
U2 - 10.1016/j.scitotenv.2023.166319
DO - 10.1016/j.scitotenv.2023.166319
M3 - 文章
C2 - 37586509
AN - SCOPUS:85168426018
SN - 0048-9697
VL - 904
JO - Science of the Total Environment
JF - Science of the Total Environment
M1 - 166319
ER -