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The Science of the Total Environment|September 5, 2020
Simplified chemical chloramine decay model for water distribution systemsReyad Roy, Arumugam Sathasivan, George KastlWater Research|September 12, 2017
New model of chlorine-wall reaction for simulating chlorine concentration in drinking water distribution systemsIan Fisher, George Kastl, Arumugam SathasivanWater Research|July 26, 2011
Evaluation of suitable chlorine bulk-decay models for water distribution systemsIan Fisher, George Kastl, Arumugam SathasivanEnvironmental Science & Technology|August 9, 2005
Simple method for quantifying microbiologically assisted chloramine decay in drinking waterArumugam Sathasivan, Ian Fisher, George KastlWater Research|May 8, 2012
A suitable model of combined effects of temperature and initial condition on chlorine bulk decay in water distribution systemsIan Fisher, George Kastl, Arumugam SathasivanChemosphere|December 3, 2014
Effectiveness of breakpoint chlorination to reduce accelerated chemical chloramine decay in severely nitrified bulk watersK C Bal Krishna, Arumugam Sathasivan, George KastlWater Research|January 2, 2009
Effects of stratification on chloramine decay in distribution system service reservoirsIan Fisher, Arumugam Sathasivan, Paul Chuo, et al.Water Research|July 28, 2020
Trihalomethane species model for drinking water supply systemsArumugam Sathasivan, George Kastl, Shashika Korotta-Gamage, et al.The Science of the Total Environment|October 8, 2022
Model for halo-acetic acids formation in bulk water of water supply systemsSajith Madhawa Premarathna, George Kastl, Ian Fisher, et al.The Science of the Total Environment|August 31, 2019
Hydrogen sulphide control in sewers by catalysing the reaction with oxygenDileepa Rathnayake, Arumugam Sathasivan, George Kastl, et al.Pageof 2