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Environmental Science & Technology|June 26, 2020
Electrochemical Regeneration of Spent Alkaline Absorbent from Direct Air CaptureQingdian Shu, Louis Legrand, Philipp Kuntke, et al.Environmental Science & Technology|August 4, 2022
Direct Air Capture Using Electrochemically Regenerated Anion Exchange ResinsQingdian Shu, Marina Haug, Michele Tedesco, et al.Trends in Biotechnology|March 10, 2015
Source-separated urine opens golden opportunities for microbial electrochemical technologiesPablo Ledezma, Philipp Kuntke, Cees J N Buisman, et al.ACS Sustainable Chemistry & Engineering|May 17, 2024
Energy Efficient Carbon Capture through Electrochemical pH Swing Regeneration of Amine SolutionMu Lin, Clément Ehret, Hubertus V M Hamelers, et al.ACS Sustainable Chemistry & Engineering|August 1, 2022
Effects of Current on the Membrane and Boundary Layer Selectivity in Electrochemical Systems Designed for Nutrient RecoveryMariana Rodrigues, Tom Sleutels, Philipp Kuntke, et al.Water Research|May 7, 2022
Ammonia recovery from anaerobic digester centrate using onsite pilot scale bipolar membrane electrodialysis coupled to membrane strippingFederico Ferrari, Maite Pijuan, Sam Molenaar, et al.Environmental Science and Ecotechnology|March 14, 2023
Hybrid Donnan dialysis-electrodialysis for efficient ammonia recovery from anaerobic digester effluentZhinan Dai, Cong Chen, Yifan Li, et al.Water Research|January 21, 2017
Load ratio determines the ammonia recovery and energy input of an electrochemical systemMariana Rodríguez Arredondo, Philipp Kuntke, Annemiek Ter Heijne, et al.ACS Sustainable Chemistry & Engineering|June 12, 2018
Energy-Efficient Ammonia Recovery in an Up-Scaled Hydrogen Gas Recycling Electrochemical SystemPhilipp Kuntke, Mariana Rodrigues, Tom Sleutels, et al.Water Research|December 7, 2021
Electrochemically mediated precipitation of phosphate minerals for phosphorus removal and recovery: Progress and perspectiveYicheng Wang, Philipp Kuntke, Michel Saakes, et al.Pageof 2