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Radioactive Wastewater Treatment Technologies: A Review [PDF]

open access: yesMolecules, 2023
With the wide application of nuclear energy, the problem of radioactive pollution has attracted worldwide attention, and the research on the treatment of radioactive wastewater is imminent.
Hailing Ma   +3 more
doaj   +6 more sources

Prediction of Uranium Adsorption Capacity in Radioactive Wastewater Treatment with Biochar. [PDF]

open access: goldToxics
Recently, Japan’s discharge of wastewater from the Fukushima nuclear disaster into the ocean has attracted widespread attention. To effectively address the challenge of separating uranium, the focus is on finding a healthy and environmentally friendly way to adsorb uranium using biochar.
Qu Z, Wang W, He Y.
europepmc   +8 more sources

Coupling uranyl upcycling with photoelectrochemical urea degradation for radioactive organic wastewater management [PDF]

open access: greenNature Communications
Radioactive organic wastewater management concerning metal source recovery and organic matter degradation conforms well to the notion of circular economy and environmental protection, but the concurrent conversion in an integrated process is challenging ...
Huihui Jin   +10 more
doaj   +3 more sources

Fouling and cleaning protocols for forward osmosis membrane used for radioactive wastewater treatment [PDF]

open access: yesNuclear Engineering and Technology, 2020
The membrane fouling is an important problem for FO applied to the radioactive wastewater treatment. The FO fouling characteristics for simulated radioactive wastewater treatment was investigated.
Xiaojing Liu   +3 more
doaj   +4 more sources

Decontamination of radioactive wastewater by two-staged chemical precipitation [PDF]

open access: yesNuclear Engineering and Technology, 2018
This article presented two-staged chemical precipitation for radioactive wastewater decontamination by using chemical agents. The total amount of radioactive wastewater was 35 m3, and main radionuclides were Cs-137, Cs-134, and Co-60.
Ahmet E. Osmanlioglu
doaj   +4 more sources

Removal of Cesium and Strontium for radioactive wastewater by Prussian blue nanorods [PDF]

open access: greenEnvironmental Science and Pollution Research, 2022
Abstract In this work, novel Prussian blue tetragonal nanorods were prepared by template-free solvothermal methods for removal of radionuclide Cs and Sr. It was worth that Prussian blue nanorods exhibited the better adsorption performance than co-precipitation PB or Prussian blue analogue composites.
Chuqing Yao   +3 more
openalex   +4 more sources

Highly Efficient Removal of Barium(II) from Nuclear Wastewater by Calcined Magnesium–Aluminum Layered Double Hydroxides [PDF]

open access: yesToxics
Radioactive Ba2+ poses significant risks to nuclear safety and environmental protection, yet its efficient removal from nuclear wastewater remains a considerable challenge.
Jun Wang   +12 more
doaj   +2 more sources

Electrochemical Approaches for Radioactive Wastewater Treatments [PDF]

open access: bronzeChemistrySelect
Abstract Radioactive waste has become a critical concern due to its adverse impacts on the sustainability of living organisms and the environment. The waste is widely generated from various nuclear activities, such as nuclear power generation, healthcare, industry, mining, and research.
Mu’nisatun Sholikhah   +5 more
openalex   +2 more sources

Advanced Membrane Technologies and Hybrid Treatment Systems for Sustainable Removal of Naturally Occurring Radioactive Materials from Industrial Wastewater [PDF]

open access: yesMembranes
Naturally Occurring Radioactive Materials (NORMs) in industrial wastewater present significant environmental and public health challenges due to their persistence and radiotoxic effects.
Amal S. Al Saadi   +9 more
doaj   +2 more sources

Study on Radioactive Organic Wastewater Treatment by Fenton Reagent

open access: hybridApplied Mechanics and Materials, 2014
The radioactive organics in wastewater were removed by Fenton reagent. The optimum conditions determined by single-factor test and orthogonal experiment are as following: [H2O2] =1.0mol·L-1, [Fe2+] =6.00mmol·L-1 and 30min at pH=4.0. Under these conditions, the COD removal efficiency was 81%. The dosage of Fe2+ was the most influential factor on organic
Ying Xiang, Yang Zhong, Chun Chen
openalex   +2 more sources

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