Register      Login
Environmental Chemistry Environmental Chemistry Society
Environmental problems - Chemical approaches

Articles citing this paper

Investigating the Mechanism of Uranium Removal by Zerovalent Iron

Chicgoua Noubactep A D , Günther Meinrath B C and Broder J. Merkel C
+ Author Affiliations
- Author Affiliations

A Centre of Geosciences – Applied Geology, 37077 Göttingen, Germany.

B RER Consultants, Schießstattweg 3a, 94032 Passau, Germany.

C Institute of Geology, Technical University Mining Academy Freiberg, 09596 Freiberg, Germany.

D Corresponding author. Email: cnoubac@gwdg.de

Environmental Chemistry 2(3) 235-242 https://doi.org/10.1071/EN05003
Submitted: 24 November 2004  Accepted: 12 July 2005   Published: 27 September 2005



47 articles found in Crossref database.

Investigating the mechanism of clofibric acid removal in Fe0/H2O systems
Ghauch Antoine, Abou Assi Hala, Tuqan Almuthanna
Journal of Hazardous Materials. 2010 176(1-3). p.48
Remediation technology for the uranium contaminated environment: a review
Li J., Zhang Y.
Procedia Environmental Sciences. 2012 13 p.1609
Understanding the Operating Mode of Fe0/Fe-Sulfide/H2O Systems for Water Treatment
Xiao Minhui, Hu Rui, Cui Xuesong, Gwenzi Willis, Noubactep Chicgoua
Processes. 2020 8(4). p.409
Making Fe0-Based Filters a Universal Solution for Safe Drinking Water Provision
Naseri Elham, Ndé-Tchoupé Arnaud, Mwakabona Hezron, Nanseu-Njiki Charles, Noubactep Chicgoua, Njau Karoli, Wydra Kerstin
Sustainability. 2017 9(7). p.1224
Enhancing the Sustainability of Household Fe0/Sand Filters by Using Bimetallics and MnO2
Noubactep Chicgoua, Caré Sabine, Btatkeu K. Brice Donald, Nanseu‐Njiki Charles Péguy
CLEAN – Soil, Air, Water. 2012 40(1). p.100
Removal of Uranium from Contaminated Water by Clay Ceramics in Flow-Through Columns
Florez Charles, Park Young, Valles-Rosales Delia, Lara Antonio, Rivera Emilio
Water. 2017 9(10). p.761
Metallic Iron for Water Treatment: A Critical Review
Noubactep Chicgoua
CLEAN – Soil, Air, Water. 2013 41(7). p.702
Impact of MnO2 on the efficiency of metallic iron for the removal of dissolved CrVI, CuII, MoVI, SbV, UVI and ZnII
Noubactep C., Btatkeu K.B.D., Tchatchueng J.B.
Chemical Engineering Journal. 2011 178 p.78
Removing molybdate from water using a hybridized zero-valent iron/magnetite/Fe(II) treatment system
Huang Yong H., Tang Cilai, Zeng Hui
Chemical Engineering Journal. 2012 200-202 p.257
Performance of field-scale permeable reactive barriers: An overview on potentials and possible implications for in-situ groundwater remediation applications
Singh Rahul, Chakma Sumedha, Birke Volker
Science of The Total Environment. 2023 858 p.158838
Simultaneous removal of CUII, NIIIand ZNIIby a granular mixture of zero-valent iron and pumice in column systems
Bilardi S., Calabró P.S., Moraci N.
Desalination and Water Treatment. 2015 55(3). p.767
Testing Metallic Iron Filtration Systems for Decentralized Water Treatment at Pilot Scale
Tepong-Tsindé Raoul, Crane Richard, Noubactep Chicgoua, Nassi Achille, Ruppert Hans
Water. 2015 7(3). p.868
Review of soluble uranium removal by nanoscale zero valent iron
Jing C., Li Y.L., Landsberger S.
Journal of Environmental Radioactivity. 2016 164 p.65
Characterizing the impact of MnO2 on the [47–49]efficiency of Fe0-based filtration systems
Btatkeu-K B.D., Olvera-Vargas H., Tchatchueng J.B., Noubactep C., Caré S.
Chemical Engineering Journal. 2014 250 p.416
The mechanism of contaminant removal in Fe(0)/H2O systems: The burden of a poor literature review
Cao Viet, Ndé-Tchoupé Arnaud Igor, Hu Rui, Gwenzi Willis, Noubactep Chicgoua
Chemosphere. 2021 280 p.130614
Advances in Drinking Water Purification (2024)
Noubactep Chicgoua
Investigating the processes of contaminant removal in Fe0/H2O systems
Noubactep Chicgoua
Korean Journal of Chemical Engineering. 2012 29(8). p.1050
Characterizing the ion-selective nature of Fe 0 /H 2 O systems in batch experiments
Phukan Meghalim, Noubactep Chicgoua, Licha Tobias
Journal of Environmental Chemical Engineering. 2016 4(1). p.65
Validating the Efficiency of the FeS2 Method for Elucidating the Mechanisms of Contaminant Removal Using Fe0/H2O Systems
Xiao Minhui, Cui Xuesong, Hu Rui, Gwenzi Willis, Noubactep Chicgoua
Processes. 2020 8(9). p.1162
Conceptualizing the Fe0/H2O System: A Call for Collaboration to Mark the 30th Anniversary of the Fe0-Based Permeable Reactive Barrier Technology
Cao Viet, Bakari Omari, Kenmogne-Tchidjo Joseline Flore, Gatcha-Bandjun Nadège, Ndé-Tchoupé Arnaud Igor, Gwenzi Willis, Njau Karoli N., Noubactep Chicgoua
Water. 2022 14(19). p.3120
Fe0/pumice mixtures: from laboratory tests to permeable reactive barrier design
Moraci Nicola, Bilardi Stefania, Calabrò Paolo S.
Environmental Geotechnics. 2017 4(4). p.245
Long-term efficiency and kinetic evaluation of ZVI barriers during clean-up of copper containing solutions
Komnitsas K., Bartzas G., Fytas K., Paspaliaris I.
Minerals Engineering. 2007 20(13). p.1200
Elemental metals for environmental remediation: Learning from cementation process
Noubactep C.
Journal of Hazardous Materials. 2010 181(1-3). p.1170
A CRITICAL REVIEW ON THE PROCESS OF CONTAMINANT REMOVAL IN FE0–H2O SYSTEMS
Noubactep C.
Environmental Technology. 2008 29(8). p.909
Pollution Control Technologies (2021)
Karthikeyan Perumal, Sirajudheen Palliyalil, Sivakumar Vigneshwaran, Meenakshi Sankaran
Interactions of aqueous U(VI) with soil minerals in slightly alkaline natural systems
Qafoku Nikolla P., Icenhower Jonathan P.
Reviews in Environmental Science and Bio/Technology. 2008 7(4). p.355
Redirecting Research on Fe0 for Environmental Remediation: The Search for Synergy
Hu Rui, Noubactep Chicgoua
International Journal of Environmental Research and Public Health. 2019 16(22). p.4465
Characterizing the reactivity of metallic iron for water defluoridation in batch studies
Ndé-Tchoupé Arnaud Igor, Nanseu-Njiki Charles Péguy, Hu Rui, Nassi Achille, Noubactep Chicgoua, Licha Tobias
Chemosphere. 2019 219 p.855
The Suitability of Hybrid Fe0/Aggregate Filtration Systems for Water Treatment
Tao Ran, Yang Huichen, Cui Xuesong, Xiao Minhui, Gatcha-Bandjun Nadège, Kenmogne-Tchidjo Joseline Flore, Lufingo Mesia, Konadu Amoah Bernard, Tepong-Tsindé Raoul, Ndé-Tchoupé Arnaud Igor, Touomo-Wouafo Marquise, Btatkeu-K Brice Donald, Gwenzi Willis, Hu Rui, Tchatchueng Jean Bosco, Ruppert Hans, Noubactep Chicgoua
Water. 2022 14(2). p.260
Progress in Understanding the Mechanism of CrVI Removal in Fe0-Based Filtration Systems
Gheju Marius
Water. 2018 10(5). p.651
Relevant Reducing Agents in Remediation Fe0/H2O Systems
Noubactep Chicgoua
CLEAN – Soil, Air, Water. 2013 41(5). p.493
Remediation of Contaminated Environments (2009)
Zhu Yong-Guan, Chen Bao-Dong
Contemporary Environmental Issues and Challenges in Era of Climate Change (2020)
Gupta Pankaj K., Yadav Basant, Kumar Ajay, Singh Rajeev Pratap
Characterizing the impact of MnO2 addition on the efficiency of Fe0/H2O systems
Cao Viet, Alyoussef Ghinwa, Gatcha-Bandjun Nadège, Gwenzi Willis, Noubactep Chicgoua
Scientific Reports. 2021 11(1).
Materials for sustainable metallic iron-based water filters: a review
Xiao Minhui, Hu Rui, Gwenzi Willis, Tao Ran, Cui Xuesong, Yang Huichen, Noubactep Chicgoua
Environmental Chemistry Letters. 2024 22(4). p.2113
Metallic Iron for Environmental Remediation: Starting an Overdue Progress in Knowledge
Hu Rui, Yang Huichen, Tao Ran, Cui Xuesong, Xiao Minhui, Amoah Bernard Konadu, Cao Viet, Lufingo Mesia, Soppa-Sangue Naomi Paloma, Ndé-Tchoupé Arnaud Igor, Gatcha-Bandjun Nadège, Sipowo-Tala Viviane Raïssa, Gwenzi Willis, Noubactep Chicgoua
Water. 2020 12(3). p.641
Characterizing the impact of pyrite addition on the efficiency of Fe0/H2O systems
Hu Rui, Cui Xuesong, Xiao Minhui, Gwenzi Willis, Noubactep Chicgoua
Scientific Reports. 2021 11(1).
Characterizing the discoloration of methylene blue in Fe0/H2O systems
Noubactep C.
Journal of Hazardous Materials. 2009 166(1). p.79
Metallic iron for water treatment: leaving the valley of confusion
Makota Susanne, Nde-Tchoupe Arnaud I., Mwakabona Hezron T., Tepong-Tsindé Raoul, Noubactep Chicgoua, Nassi Achille, Njau Karoli N.
Applied Water Science. 2017 7(8). p.4177
Investigating the Fe0/H2O systems using the methylene blue method: Validity, applications, and future directions
Konadu-Amoah Bernard, Ndé-Tchoupé Arnaud Igor, Hu Rui, Gwenzi Willis, Noubactep Chicgoua
Chemosphere. 2022 291 p.132913
A theoretical study of the qualitative reaction mechanism for the homogeneous disproportionation of pentavalent uranyl ions
Wander Matthew C.F., Shuford Kevin L.
Geochimica et Cosmochimica Acta. 2012 84 p.177
Sustaining the efficiency of the Fe(0)/H2O system for Cr(VI) removal by MnO2 amendment
Gheju Marius, Balcu Ionel
Chemosphere. 2019 214 p.389
Fe0/H2O Systems for Environmental Remediation: The Scientific History and Future Research Directions
Hu Rui, Cui Xuesong, Gwenzi Willis, Wu Shuanghong, Noubactep Chicgoua
Water. 2018 10(12). p.1739
Adsorption properties and mechanism of sepiolite modified by anionic and cationic surfactants on oxytetracycline from aqueous solutions
Wu Jiayan, Wang Yanhua, Wu Zixuan, Gao Ya, Li Xiaoping
Science of The Total Environment. 2020 708 p.134409
Advances in Remediation Techniques for Polluted Soils and Groundwater (2022)
Gupta Pankaj Kumar, Saxena Gaurav, Yadav Basant
Arsenic Release from a Natural Rock under Near‐natural Oxidizing Conditions
Noubactep C., Chen‐Braucher D., Schlothauer T.
Engineering in Life Sciences. 2008 8(6). p.622
Evaluation of the effects of shaking intensity on the process of methylene blue discoloration by metallic iron
Noubactep C., Kurth A.-M.F., Sauter M.
Journal of Hazardous Materials. 2009 169(1-3). p.1005

Committee on Publication Ethics


Abstract Export Citation Get Permission