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Ozone and chlorine reactions with dissolved organic matter - Assessment of oxidant-reactive moieties by optical measurements and the electron donating capacities
Önnby, L., Salhi, E., McKay, G., Rosario-Ortiz, F. L., & von Gunten, U. (2018). Ozone and chlorine reactions with dissolved organic matter - Assessment of oxidant-reactive moieties by optical measurements and the electron donating capacities. Water Research, 144, 64-75. https://doi.org/10.1016/j.watres.2018.06.059
UV-B stress changes the electron flow on photosystem II complex in<i>Synechococcus</i> sp. PCC 7002
Chis, C., Druga, B., Carmel, D., Chis, I., Ardelean, A., & Sicora, C. I. (2016). UV-B stress changes the electron flow on photosystem II complex inSynechococcus sp. PCC 7002. Romanian Biotechnological Letters, 21(6), 12142-12146.
Development of surrogate correlation models to predict trace organic contaminant oxidation and microbial inactivation during ozonation
Gerrity, D., Gamage, S., Jones, D., Korshin, G. V., Lee, Y., Pisarenko, A., … Snyder, S. A. (2012). Development of surrogate correlation models to predict trace organic contaminant oxidation and microbial inactivation during ozonation. Water Research, 46(19), 6257-6272. https://doi.org/10.1016/j.watres.2012.08.037
Cytometric methods for measuring bacteria in water: advantages, pitfalls and applications
Hammes, F., & Egli, T. (2010). Cytometric methods for measuring bacteria in water: advantages, pitfalls and applications. Analytical and Bioanalytical Chemistry, 397(3), 1083-1095. https://doi.org/10.1007/s00216-010-3646-3
A comparison of methods for detection of phosphate limitation in microalgae
Beardall, J., Berman, T., Heraud, P., Kadiri, M. O., Light, B. R., Patterson, G., … Wood, B. (2001). A comparison of methods for detection of phosphate limitation in microalgae. Aquatic Sciences, 63(1), 107-121. https://doi.org/10.1007/Pl00001342