Recent progress on the application of capacitive deionization for wastewater treatment

ET Sayed, M Obaid, AG Olabi, MA Abdelkareem… - Journal of Water …, 2023 - Elsevier
Capacitive deionization (CDI) is an emerging technology for removing charged ions from
wastewater or aqueous solutions, where the charged ions interact electrostatically with the …

Recent progress in high-performance environmental impacts of the removal of radionuclides from wastewater based on metal–organic frameworks: a review

SM Sheta, MA Hamouda, OI Ali, AT Kandil, RR Sheha… - RSC …, 2023 - pubs.rsc.org
The nuclear industry is rapidly developing and the effective management of nuclear waste
and monitoring the nuclear fuel cycle are crucial. The presence of various radionuclides …

Immobilization of novel bifunctional polymer with amide and amidoxime groups in biochar-chitosan composite gels for enhancing uranium (VI) uptake

Q Zhou, Y Du, Z Feng, Q Ren, Y Wang, X Chen… - Separation and …, 2025 - Elsevier
This work synthesized poly ethanolamine amidoxime modified winter melon and chitosan-
derived biochar (PEA-CTS@ WBC) using chemical crosslinking method for uranium (VI) …

Functionalization of MXene using iota-carrageenan, maleic anhydride, and N, N′-methylene bis-acrylamide for high-performance removal of thorium (IV), uranium (IV …

I Ijaz, A Bukhari, A Nazir, M Khan, E Gilani… - International Journal of …, 2024 - Elsevier
An increasing quantity of pollutants has been discharged into the aquatic media, posing a
serious hazard to public health. To address this issue, a new sorbent material, MXene@ i …

Efficient removal of uranium from acidic mining wastewater using magnetic phosphate composites

L Sheng, D Ding, H Zhang - Separation and Purification Technology, 2024 - Elsevier
Uranium mining operations produce large volumes of acidic uranium mining wastewater,
necessitating the development of environmentally friendly and recyclable materials for …

Novel positively-charged bioderived polymer nanofilms for nuclear wastewater decontamination

H Li, F Tian, H Liu, Y Bai, C Zhang, J Li, L Dong - Desalination, 2024 - Elsevier
In this study, we focused on the effective disposal of radioactive wastewater through the
development of nanofiltration membranes using biomass materials. We developed …

[HTML][HTML] Cobalt recovery from industrial and nuclear waste resources: A review

K Asghar, MF Ngulimi, S Kim, BK Seo, C Roh - Chemical Engineering …, 2024 - Elsevier
With the widespread applications of cobalt in energy storage, electronics, electric and hybrid
vehicles, and most importantly, and the production of 60 Co in nuclear industries, its …

Efficient removal of radioactive iodide from contaminated seawater by radiation-resistant Ag+-doping polypropylene nonwoven adsorbents

X Pan, MJ Jin, J Zu, G Han, J Diao, S Liu… - Separation and …, 2024 - Elsevier
For the efficient removal of radioactive iodide ions from medium and low radioactive
contaminated water, an Ag-doped adsorbent was designed via radiation grafting method …

Polyethyleneimine and chitosan incorporated winter melon-derived biochar composite gels for highly selective capture of uranium (VI)

Q Zhou, Y Du, Z Feng, Q Ren, Y Wang, X Chen… - Colloids and Surfaces A …, 2024 - Elsevier
This work synthesized polyethyleneimine and chitosan modified winter melon-derived
biochar (PEI-CTS@ WBC) using chemical crosslinking method for uranium (VI) removal. The …

Exploring the potential of artificial intelligence in nuclear waste management: Applications, challenges, and future directions

DC Selvam, Y Devarajan, T Raja - Nuclear Engineering and Design, 2025 - Elsevier
This study examines the increasing potential of artificial intelligence (AI) to transform nuclear
waste management by enhancing procedures related to waste classification, treatment …