Chicgoua Noubactep
Chicgoua Noubactep
Associate Professor with Habilitation, Universität Göttingen
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Cited by
Cited by
A critical review on the process of contaminant removal in Fe0–H2O systems
C Noubactep
Environmental technology 29 (8), 909-920, 2008
Nanoscale metallic iron for environmental remediation: prospects and limitations
C Noubactep, S Caré, R Crane
Water, Air, & Soil Pollution 223 (3), 1363-1382, 2012
The fundamental mechanism of aqueous contaminant removal by metallic iron
C Noubactep
Water Sa 36 (5), 2010
Adsorption of methylene blue from an aqueous solution on to activated carbons from palm-tree cobs
J Avom, JK Mbadcam, C Noubactep, P Germain
Carbon 35 (3), 365-369, 1997
Processes of contaminant removal in Fe0-H2O systems revisited: the importance of co-precipitation
C Noubactep
The@ open environmental journal 1, 9-13, 2007
A multi-method approach to study the stability of natural slopes and landslide susceptibility mapping
M Fall, R Azzam, C Noubactep
Engineering geology 82 (4), 241-263, 2006
Characterisation of novel modified active carbons and marine algal biomass for the selective adsorption of lead
DJ Malik, V Strelko Jr, M Streat, AM Puziy
Water Research 36 (6), 1527-1538, 2002
Biochar-based water treatment systems as a potential low-cost and sustainable technology for clean water provision
W Gwenzi, N Chaukura, C Noubactep, FND Mukome
Journal of environmental management 197, 732-749, 2017
Mechanism of uranium removal from the aqueous solution by elemental iron
C Noubactep, A Schöner, G Meinrath
Journal of hazardous materials 132 (2-3), 202-212, 2006
A CFD study of the effect of cyclone size on its performance parameters
M Azadi, M Azadi, A Mohebbi
Journal of hazardous materials 182 (1-3), 835-841, 2010
An analysis of the evolution of reactive species in Fe0/H2O systems
C Noubactep
Journal of Hazardous materials 168 (2-3), 1626-1631, 2009
Nano-scale metallic iron for the treatment of solutions containing multiple inorganic contaminants
TB Scott, IC Popescu, RA Crane, C Noubactep
Journal of hazardous materials 186 (1), 280-287, 2011
Metallic iron filters for universal access to safe drinking water
C Noubactep, A Schöner, P Woafo
CLEAN–Soil, Air, Water 37 (12), 930-937, 2009
Mitigating uranium in groundwater: Prospects and limitations
C Noubactep, G Meinrath, P Dietrich, B Merkel
Environmental science & technology 37 (18), 4304-4308, 2003
Metallic iron for environmental remediation: A review of reviews
C Noubactep
Water research 85, 114-123, 2015
Modeling the permeability loss of metallic iron water filtration systems
S Caré, R Crane, PS Calabrò, A Ghauch, E Temgoua, C Noubactep
Clean–Soil, Air, Water 41 (3), 275-282, 2013
Testing the suitability of zerovalent iron materials for reactive walls
C Noubactep, G Meinrath, P Dietrich, M Sauter, BJ Merkel
Environmental Chemistry 2 (1), 71-76, 2005
Characterizing the discoloration of methylene blue in Fe0/H2O systems
C Noubactep
Journal of hazardous materials 166 (1), 79-87, 2009
Metallic iron for safe drinking water worldwide
C Noubactep
Chemical Engineering Journal 165 (2), 740-749, 2010
Dimensioning metallic iron beds for efficient contaminant removal
C Noubactep, S Caré
Chemical Engineering Journal 163 (3), 454-460, 2010
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