Publications
HOME > Achievement > Publications
Á¦¸ñ Assessment of sulfidated nanoscale zerovalent iron for in-situ remediation of cadmium-contaminated acidic groundwater near zinc smelter (2023)

Assessment of sulfidated nanoscale zerovalent iron for in-situ remediation of cadmium-contaminated acidic groundwater near zinc smelter (2023)

 

In-Gyu Song, Yu-Gyeong Kang, Jae-Hwan Kim, Hakwon Yoon, Woo Yong Um, Yoon-Seok Chang

 

Journal of Hazardous Materials, Volume 441, 5 January 2023, 129915

 

DOI : https://doi.org/10.1016/j.jhazmat.2022.129915

 

 

ABSTRACT 

 

Unprecedented high concentrations of heavy metals have been detected in the groundwater at a zinc smelter in Seokpo, South Korea. The outflow of the contaminated groundwater into the nearby Nakdong River must be prevented by some means such as permeable reactive barrier (PRB). As a reactive material for injection-type PRB, we have tested sulfidated nanoscale zerovalent iron (S-nZVI) to assess its efficacy in remediating the groundwater from the smelter. The S-nZVI efficiently removed Zn, Ni, and Al in the groundwater, and neutralized the groundwater to pH > 6. Sulfidation of nZVI greatly increased the removal of Cd (99.8%) compared to that by nZVI (7.2%). MINEQL+ modeling and particle characterization were performed to elucidate the forms of heavy metals in the solution and on the surface of S-nZVI. Raman and XPS results suggested that FeS on the surface of S-nZVI reacted with Cd(II) and Zn(II), forming more-stable CdS and ZnS. Sequential application of NaHCO3 after S-nZVI treatment in a column setup was suited for the removal of remaining Zn and Fe as well as the reduction of microbial toxicity. This study guides to use of S-nZVI for in-situ remediation of cadmium-contaminated groundwater with other coexisting heavy metals from a zinc smelter.


¹øÈ£ Á¦¸ñ
now_gul Assessment of sulfidated nanoscale zerovalent iron for in-situ remediation of cadmium-contaminated acidic groundwater near zinc smelter (2023)
46 Prediction of stable radon fluoride molecules and geometry optimization using first-principles calculations (2023)
45 Recent advances in Fenton-like treatment of radioactive ion exchange resins (2023)
44 Decontamination of neutron-activated radioactive concrete waste by separating Eu, Co, Fe, and Mn-containing sand particles using dense medium separation (2023)
43 Comparative study of PMS oxidation with Fenton oxidation as an advanced oxidation process for Co-EDTA decomplexation (2022)
42 Heat, economic and multi-path safety (HEMPS) management on co-generation of hydrogen and sulfuric acid through modified sulfur-iodine cycle (2022)
41 Kinetics and mechanism of rhenium-ethylenediaminetetraacetic acid (Re(IV)-EDTA) complex degradation; For 99Tc-EDTA degradation in the natural environment (2022)
40 The evolution of hydrated lime-based cementitious waste forms during leach testing leading to enhanced technetium retention (2022)
39 Metallic technetium sequestration in nickel Core/Shell microstructure during Fe(OH)2 transformation with Ni doping (2022)
38 Separation of light rare-earth elements using gas-pressurized extraction chromatography (2022)
37 Recycle Glass Waste as a Host for Solidification of Oil Sludge (2022)
36 Safety Assessment for the Landfill Disposal of Decommissioning Waste Solidified by Magnesium Potassium Phosphate Cement (2022)
35 Immobilization mechanism of radioactive borate waste in phosphate-based geopolymer waste forms (2022)
34 Surface Modification of Bentonite for the Improvement of Radionuclide Sorption (2022)
33 Simultaneous removal of cesium and iodate using prussian blue functionalized CoCr layered double hydroxide (PB-LDH) (2022)
first prv 1 2 3 4 5 next end