Publications
HOME > Achievement > Publications
Á¦¸ñ Fenton-like treatment for reduction of simulated carbon-14 spent resin (2021)

Fenton-like treatment for reduction of simulated carbon-14 spent resin

 

M. Aamir Hafeez, Junsung Jeon, Seokju Hong, Neil Hyatt, Jong Heo and Wooyong Um

 

Journal of Environmental Chemical Engineering

https://doi.org/10.1016/j.jece.2020.104740

Received 5 August 2020; Received in revised form 1 November 2020; Accepted 2 November 2020

Available online 7 November 2020

2213-3437/© 2020 Elsevier Ltd. All rights reserved.

 

Abstract

Spent resins with 14C are enlisted among the most problematic radioactive wastes. In current study, we successfully prepared the simulated 14C-loaded spent resins using HCO3 − , and for the first time the Fenton-like treatment of simulated 14C-loaded spent resins were compared with fresh Amberlite IRN-150 resin (without simulated 14C loading) by optimizing the influential reaction parameters. The experimental results revealed that 91.26 % weight loss and 85.47 % in TOC removal were achieved for fresh Amberlite IRN-150 resin (without simulated 14C loading) using 0.35 M Cu(II) catalyst, 30 % H2O2 as oxidant at pH 2, and 90 ¡¾ 3 ◦C temperature for 4 h reaction time. However, the simulated 14C-loaded spent resin using HCO3 − exhibited 87.34 % weight loss under the similar reaction conditions. The reduction in weight loss (%) of simulated 14C-loaded spent resin was attributed to the presence of HCO3 − on the resins, which could produce the carbonate radical (CO3 -∙ ) of lower oxidation capability as compared to hydroxyl radical and in turn affect the efficacy of Fenton-like treatment for simulated 14C-loaded spent resin. Scanning electron microscopy and energy dispersive spectroscopy (SEM-EDS) and Fourier transform infrared spectroscopy (FT-IR) analyses were used to characterize and the results also supported the resin¡¯s degradation.


¹øÈ£ Á¦¸ñ
32 Co2+/PMS based sulfate-radical treatment for effective mineralization of spent ion exchange resin (2022)
31 Efficient mercury sequestration from wastewaters using palm kernel and coconut shell derived biochars (2022)
30 Decontamination of radioactive metal wastes using underwater microwave plasma (2022)
29 The comprehensive evaluation of available pilot-scale H2S abatement process in a coke-oven gas: Efficiency, economic, energy, and environmental safety (4ES) (2021)
28 Chemical and Mechanical Sustainability of Silver Tellurite Glass Containing Radioactive Iodine-129 (2021)
27 Top-down Synthesis of NaP zeolite from Natural Zeolite for the Higher Removal Efficiency of Cs, Sr, and Ni (2021)
26 Process optimization and safety assessment on a pilot-scale Bunsen process in sulfur-iodine cycle (2021)
25 Removal of iodine (I− and IO3−) from aqueous solutions using CoAl and NiAl layered double hydroxides (2021)
24 Inorganic Waste Forms for Efficient Immobilization of Radionuclides (2021)
23 Development of geopolymer waste form for immobilization of radioactive borate waste (2021)
22 Efficient radon removal using fluorine-functionalized natural zeolite (2021)
21 Removal of Radioactive Cesium in Secondary Wastewater after Soil-washing Process (2021)
now_gul Fenton-like treatment for reduction of simulated carbon-14 spent resin (2021)
19 Effect of ion exchange resin particle size on homogeneity and leachability of Cs and Co in polymer waste form (2021)
18 Comparative Study Between Geopolymer and Cement Waste Forms for Solidification of Corrosive Sludge (2020)
first prv 1 2 3 4 5 next end