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The Science of the Total Environment|December 13, 2021
Borohydride and metallic copper as a robust dehalogenation system: Selectivity assessment and system optimizationAli Shee, Frank-Dieter Kopinke, Katrin MackenzieThe Science of the Total Environment|February 13, 2019
Acceleration of microiron-based dechlorination in water by contact with fibrous activated carbonMaria Vogel, Frank-Dieter Kopinke, Katrin MackenzieEnvironmental Science & Technology|June 19, 2009
Highly active Pd-on-magnetite nanocatalysts for aqueous phase hydrodechlorination reactionsHeike Hildebrand, Katrin Mackenzie, Frank-Dieter KopinkeEnvironmental Science & Technology|August 30, 2008
Permanganate oxidation of sulfur compounds to prevent poisoning of Pd catalysts in water treatment processesDalia Angeles-Wedler, Katrin Mackenzie, Frank-Dieter KopinkeEnvironmental Pollution (Barking, Essex : 1987)|July 9, 2025
Mesoporous silica nanoparticles for rapid removal of PFOA: Impact of surface functional groups on adsorption efficiency and adsorbent regenerationAhmed M A Abdelsamad, Navid Saeidi, Katrin MackenzieJournal of Contaminant Hydrology|June 13, 2015
Colloidal activated carbon for in-situ groundwater remediation--Transport characteristics and adsorption of organic compounds in water-saturated sediment columnsAnett Georgi, Ariette Schierz, Katrin Mackenzie, et al.Water Research|May 18, 2012
Carbo-Iron - An Fe/AC composite - As alternative to nano-iron for groundwater treatmentKatrin Mackenzie, Steffen Bleyl, Anett Georgi, et al.Chemosphere|August 22, 2022
Uniform and dispersible carbonaceous microspheres as quasi-liquid sorbentMaria Balda, Katrin Mackenzie, Frank-Dieter Kopinke, et al.Chemosphere|April 18, 2020
Interaction of zero-valent iron and carbonaceous materials for reduction of DDTFrank-Dieter Kopinke, Sarah Sühnholz, Anett Georgi, et al.Environmental Science & Technology|October 22, 2002
Sorption of pyrene to dissolved humic substances and related model polymers. 2. Solid-phase microextraction (SPME) and fluorescence quenching technique (FHT) as analytical methodsKatrin Mackenzie, Anett Georgi, Michael Kumke, et al.Pageof 4