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PalustrinePalustrine – Links and References
The conceptual models were compiled by researchers in collaboration with a wide range of stakeholders from Natural Resource Management groups, universities and government agencies and based on available scientific information[4]. Click on elements of the model or select from the tabs below Adame, MF, Vilas, MP, Franklin, H, Garzon-Garcia, A, Hamilton, D, Ronan, M & Griffiths, M (2021), 'A conceptual model of nitrogen dynamics for the Great Barrier Reef catchments', Marine Pollution Bulletin, vol. 173PA. https://www.sciencedirect.com/science/article/pii/S0025326X21009437 Adame, Franklin, H, Rodriguez, S, Kavehei, E, Turschwell, M, Balcombe, SR, Burford, M & Ronan, M (2019), 'Nitrogen removal through denitrification by tropical forested wetlands', Marine and Freshwater Research, vol. 70, pp. 1513-1521 Adame, Franklin, H, Waltham, NJ, Rodriguez, S, Kavehei, E, Turschwell, MP, Balcombe, SR, Kaniewska, P, Burford, MA & Ronan, M (2019), 'Nitrogen removal by tropical floodplain wetlands through denitrification', Marine and Freshwater Research, vol. doi.org/10, no. September Adame, MF, Arthington, AH, Waltham, N, Hasan, S, Selles, A & Ronan, M (2019), 'Managing threats and restoring wetlands within catchments of the Great Barrier Reef, Australia', Aquatic Conservation: Marine and Freshwater Ecosystems, vol. 29, no. 5, pp. 829-839 Adame, MF, Reef, R, Wong, V, Kavehei, E, Rodriguez, D, Kellaway, J, Masque, P & Ronan, M (2020), 'Carbon and Nitrogen Sequestration of Melaleuca Floodplain Wetlands in Tropical Australia', Ecosystems, vol. 23, pp. 454-466 Adame, MF, Reef, R, Wong, VNL, Balcombe, SR, Turschwell, MP, Kavehei, E, Rodríguez, DC, Kelleway, JJ, Masque, P & Ronan, M (2020), 'Carbon and nitrogen sequestration of Melaleuca floodplain wetlands in tropical Australia', Ecosystems, vol. doi.org/10. https://link.springer.com/article/10.1007%2Fs10021-019-00414-5 Adame, MF, Roberts, ME, Hamilton, DP, Ndehedehe, CE, Lu, J, Griffiths, M, Curwen, G & Ronan, M (2019), 'Tropical coastal wetlands ameliorate nitrogen exports during floods', Frontiers in Marine Science, vol. 6, 1-14 Beaulieu, JJ, Tank, JL, Hamilton, SK, Wollheim, WM, Hall, RO, Mulholland, PJ, Peterson, BJ, Ashkenas, LR, Cooper, LW, Dahm, CN, Dodds, WK, Grimm, NB, Johnson, SL, McDowell, WH, Poole, GC, Valett, HM, Arango, CP, Bernot, MJ, Burgin, AJ, Crenshaw, CL, Helton, AM, Johnson, LT, O'Brien, JM, Potter, JD, Sheibley, RW, Sobota, DJ & Thomas, SM (2011), 'Nitrous oxide emission from denitrification in stream and river networks', Proceedings of the National Academy of Sciences, vol. 108, no. 1, pp. 214-219. http://www.pnas.org/cgi/doi/10.1073/pnas.1011464108 Bryant, KL (2008), Soil Indicators of Queensland Wetlands: Field Guide, Department of Natural Resources and Water, Brisbane. https://wetlandinfo.des.qld.gov.au/resources/static/pdf/ecology/soils/soil-indicators-of-queensland-wetlands-field-guide.pdf Davis, AM, Pearson, RG, Brodie, JE & Butler, B (2016), 'Review and conceptual models of agricultural impacts and water quality in waterways of the Great Barrier Reef catchment area', Marine and Freshwater Research, vol. 68, pp. 1-19 Doupe, RG, Mitchell, J, Knott, MJ, Davis, AM & Lymbery, AJ (2010), 'Efficacy of exclusion fencing to protect ephemeral floodplain lagoon habitats from feral pigs (Sus scrofa).', Wetlands Ecology and Management, vol. 18, pp. 69-78 Erler, D, Trott, L, Alongi, D & Eyre, B (25 March 2013), 'Denitrification, anammox and nitrate reduction in sediments of the southern Great Barrier Reef lagoon', Marine Ecology Progress Series, vol. 478, pp. 57-70, accessed 30 October 2020. http://www.int-res.com/abstracts/meps/v478/p57-70/ Fernex, F, Bernat, M & Ballestra, S (1992), 'Ammonification rates and 210Pb in sediments from a lagoon under a wet tropical climate : Marica , Rio de Janeiro state , Brazil', Hydrobiologia, vol. 242, pp. 69-76 Finlayson, CM, Cowie, ID & Bailey, BJ (1993), 'Biomass and litter dynamics in a Melaleuca forest on a seasonally inundated floodplain in tropical, northern Australia', Wetlands Ecology and Management, vol. 2, no. 4, pp. 177-188 Gell, P, Fluin, J, Tibby, J, Hancock, G, Harrison, J, Zawadzki, A, Haynes, D, Khanum, S, Little, F & Walsh, B (July 2009), 'Anthropogenic acceleration of sediment accretion in lowland floodplain wetlands, Murray–Darling Basin, Australia', Geomorphology, vol. 108, no. 1-2, pp. 122-126, accessed 2 November 2020. https://linkinghub.elsevier.com/retrieve/pii/S0169555X09000397 Hahn, S, Bauer, S & Klaassen, M (2008), 'Quantification of allochthonous nutrient input into freshwater bodies by herbivorous waterbirds', Freshwater Biology, vol. 53, pp. 181-193 Howarth, RW, Marino, R, Lane, J & Cole, JJ (1988), 'Nitrogen fixation in freshwater, estuarine, and marine ecosystems. 1. Rates and importance', Limnology and Oceanography, vol. 33, pp. 669-687 Ip, YK, Chew, SF, Wilson, JM & Randall, DJ (17 August 2004), 'Defences against ammonia toxicity in tropical air-breathing fishes exposed to high concentrations of environmental ammonia: a review', Journal of Comparative Physiology B, accessed 30 July 2021. http://link.springer.com/10.1007/s00360-004-0445-1 Jaensch, R (1999), The status and importance of Queensland's south-western wetlands. http://www.southwestnrm.org.au/ihub/status-importance-southwest-queenslands-wetlands Jardine, TD, Pusey, BJ, Hamilton, SK, Pettit, NE, Davies, PM, Douglas, MM, Sinnamon, V, Halliday, IA & Bunn, SE (2012), 'Fish mediate high food web connectivity in the lower reaches of a tropical floodplain river', Oecologia, vol. 168, pp. 829-838 Joo, M, Raymond, MAA, McNeil, VH, Huggins, R, Turner, RDR & Choy, S (2012), 'Estimates of sediment and nutrient loads in 10 major catchments draining to the Great Barrier Reef during 2006-2009', Marine pollution bulletin, vol. 65, no. 4-9, pp. 150-166. Scopus Karim, F, Kinsey-henderson, A, Wallace, J, Arthington, AH & Pearson, RG (2012), Modelling wetland connectivity during overbank flooding in a tropical floodplain in north Queensland, Australia, vol. 2723, pp. 2710-2723 Lu, J, Bunn, SE & Burford, MA (May 2018), 'Nutrient release and uptake by littoral macrophytes during water level fluctuations', Science of The Total Environment, vol. 622-623, pp. 29-40, accessed 2 November 2020. https://linkinghub.elsevier.com/retrieve/pii/S0048969717332576 (n.d.). Macrophyte-induced thermal stratification in a shallow urban lake promotes conditions suitable for nitrogen-fixing cyanobacteria | SpringerLink, accessed 4 March 2021. https://link.springer.com/article/10.1007%2Fs10750-017-3376-z Morrisey K.M., FTR (1988), 'Regeneration and uptake of ammonium by plankton in an Amazon floodplain lake.', J Plankton Res, no. 10, pp. 31-48 Nielsen, LP, Enrich-Prast, A & Esteves, FA (2004), 'Pathways of organic matter mineralization and nitrogen regeneration in the sediment of five tropical lakes', Acta Limnol Bras., vol. 16, no. 2, pp. 193-202 Phoenix, GK, Hicks, W, Cinderby, S, Kuylenstierna, J, Stock, W, Dentener, F, Giller, K, Austin, A, Lefroy, R, Gimeno, B, Ashmore, M & Ineson, P (2006), 'Atmospheric nitrogen deposition in world biodiversity hotspots: the need for a greater global perspective in assessing N deposition impacts', Global Change Biology, vol. 12, pp. 470-476 Racchetti E., Bartoli M., Soana E., Longhi D., Christian R.R., Pinardi M. (2011), 'Influence of hydrological connectivity of riverine wetlands on nitrogen removal via denitrification.', Biogeochemistry, no. 103, pp. 335-354. https://doi.org/10.1007/s10533-010-9477-7 Seitzinger S.P., NSW (1985), 'Eutrophication and the rate of denitrification and N20 production in coastal marine sediments.', Limnology and Oceanography, no. 30, pp. 1332-1339. https://doi.org/10.4319/lo.1985.30.6.1332 Verhoeven, JTA, Arheimer, B, Yin, C & Hefting, MM (2006), 'Regional and global concerns over wetlands and water quality', Trends in Ecology and Evolution, vol. 21, no. 2, pp. 96-103 Vilas, MP, Marti, CL, Adams, MP, Oldham, CE & Hipsey, MR (8 December 2017), 'Invasive macrophytes control the spatial and temporal patterns of temperature and dissolved oxygen in a shallow lake: A proposed feedback mechanism of macrophyte loss', Frontiers in Plant Science, vol. 8, p. 2097, accessed 4 March 2021. https://research-repository.uwa.edu.au/en/publications/invasive-macrophytes-control-the-spatial-and-temporal-patterns-of Waltham, NJ & Fixler, S (2017), 'Aerial Herbicide Spray to Control Invasive Water Hyacinth ( Eichhornia crassipes ): Water Quality Concerns Fronting Fish Occupying a Tropical Floodplain Wetland', Tropical Conservation Science, vol. 10, pp. 1-10. http://journals.sagepub.com/doi/10.1177/1940082917741592 Last updated: 2 August 2021 This page should be cited as: Department of the Environment, Tourism, Science and Innovation, Queensland (2021) Palustrine – Links and References , WetlandInfo website, accessed 4 August 2026. https://wetlandinfo.detsi.qld.gov.au/wetlands/ecology/processes-systems/nitrogen-concept-model/palustrine/links.html |


— Department of the Environment, Tourism, Science and Innovation