Stepwise Increment of Salinity for Evaluating the Ammonium Removal Efficiency in Synthetic Wastewater Using an Aerated Bioreactor
Author:
Funder
Guam Waterworks Authority
Guam Hydrologic Survey
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11270-024-07444-3.pdf
Reference39 articles.
1. Bernhard, A. E., Landry, Z. C., Blevins, A., Torre, D. R., Giblin, A. E., & Stahl, D. A. (2010). Abundance of ammonia-oxidizing archaea and bacteria along an estuarine salinity gradient in relation to potential nitrification rates. Applied and Environmental Microbiology, 76, 1285–1289. https://doi.org/10.1111/j.1462-2920.2007.01260.x
2. Bernhard, A. E., Tucker, J., Giblin, A. E., & Stahl, D. A. (2007). Functionally distinct communities of ammonia-oxidizing bacteria along an estuarine salinity gradient. Environmental Microbiology, 9, 1439–1447. https://doi.org/10.1111/j.1462-2920.2007.01260.x
3. Brown & Caldwell. (2006). Water resource master plan: Volume 3, Wastewater system, Guam Waterworks Authority. http://guamwaterworks.org/wrmp_vol3.html. Accessed 1 Mar 2020
4. Chen, G., & Wong, M. (2004). Impact of increased chloride concentration on nitrifying-activated sludge cultures. Journal of Environmental Engineering, 130, 116–125. https://doi.org/10.1061/(ASCE)0733-9372(2004)130:2(116)
5. Cui, Y. W., Zhang, H. Y., Ding, J. R., & Peng, Y. Z. (2016). The effects of salinity on nitrification using halophilic nitrifiers in a Sequencing Batch Reactor treating hypersaline wastewater. Scientific Reports, 6, 24825. https://doi.org/10.1038/srep24825
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