1. Adanti, D. and Michelini, J.: 2005, ‘Treatability Study: Application of Persulfate Chemical Oxidation Technology on the Polycyclic Aromatic Hydrocarbons at a Superfund Site in Eastern Connecticut.’, Senior Design Project submitted to the Department of Civil and Environmental Eng, at the University of Connecticut.
2. Cuypers, M. P., Grotenhuis, J. T. C. and Rulkens, W. H.: 1999, ‘Prediction of PAH Bioavailability in Soils and Sediments by Persulfate Oxidation’, Proceedings of the International in Situ and On-Site Bioremediation Symposium, 5th, Editors: Bruce, C., Leeson, A., San Diego, CA, USA, 8 241–246.
3. Cuypers, C., Rina, C., Grotenhuis, T. and Rulkens, W.: 2001, ‘Prediction of Petroleum Hydrocarbon Bioavailability in Contaminated Soils and Sediments’, Soil and Sediment Contamination, 10(5), 459–482.
4. Cuypers, C., Grotenhuis, T., Joziasse, J. and Rulkens, W.: 2000, ‘Rapid Persulfate Prediction Bioavailability in Soils and Sediments’, Environmental Science and Technology, 34(10), 2057–2063.
5. Grotenhuis, T., Hendriks, W., Dijkhuis, E., Van der Gun, J., Doze, D. and Pancras, T.: 2001, ‘Determining Processes Related to in-situ Remediation of Contaminated Sediment’, Proceedings of the International in Situ and On-Site Bioremediation Symposium, 6th, Editor: Leeson, A., San Diego, CA, USA, June 4–7, 5 289–296.