Research Article 2014 WRR Burdekin sediment budget | Page 20

Water Resources Research 10.1002/2013WR014386 Haapkyla, J., R. K. F. Unsworth, M. Flavell, D. G. Bourne, B. Schaffelke, and B. L. Willis (2011), Seasonal rainfall and runoff promote coral dis- ease on an inshore reef, PLoS ONE, 6, e16893. Ha Dang, T., A. Coynel, D. Orange, G. Blanc, H. Etcheber, and L. Anh Le (2010), Long-term monitoring (1960–2008) of the river-sediment transport in the Red River watershed (Vietnam): Temporal variability and dam-reservoir impact, Sci. Total Environ., 408, 4654–4664. Humphrey, C., M. Weber, C. Lott, T. Cooper, and K. Fabricius (2008), Effects of suspended sediments, dissolved inorganic nutrients and salinity on fertilisation and embryo development in the coral Acropora millepora (Ehrenberg, 1834), Coral Reefs, 27, 837–850. Koiter, A. J., P. N. Owens, E. L. Petticrew, and D. A. Lobb (2013), The behavioural characteristics of sediment properties and their implica- tions for sediment fingerprinting as an approach for identifying sediment sources in river basins, Earth Sci. Rev., 125, 24–42. Kroon, F., P. Kuhnert, B. Henderson, S. Wilkinson, A. Kinsey-Henderson, J. Brodie, and R. Turner (2012), River loads of suspended solids, nitrogen, phosphorus and herbicides delivered to the Great Barrier Reef lagoon, Mar. Pollut. Bull., 65, 167–181. Kuhnert, P. M., B. L. Henderson, S. E. Lewis, Z. T. Bainbridge, S. N. Wilkinson, and J. E. Brodie (2012), Quantifying total suspended sediment export from the Burdekin River catchment using the loads regression estimator tool, Water Resour. Res., 48, W04533, doi:10.1029/ 2011WR011080. Laraque, A., C. Bernal, L. Bourrel, J. Darrozes, F. Christophoul, E. Armijos, P. Fraizy, R. Pombosa, and J. L. Guyot (2009), Sediment budget of the Napa River, Amazon basin, Ecuador and Peru, Hydrol. Processes, 23, 3509–3524. Larcombe, P., P. V. Ridd, A. Prytz, and B. Wilson (1995), Factors controlling suspended sediment on inner-shelf coral reefs, Townsville, Aus- tralia. Coral Reefs, 14, 163–171. Leeder, M. R. (1982), Sedimentology: Process and Product, Chapman and Hall, London, U. K. Lewis, S., J. Brodie, E. Ledee, and M. Alewijnse (2006), The spatial extent of delivery of terrestrial materials from the Burdekin Region in the Great Barrier Reef lagoon, ACTFR Tech. Rep. 06’02 to North Queensland Dry Trop., 102 pp., TropWATER, James Cook Univ., Townsville. [Available at www.jcu.edu.au/tropwater/.] Lewis, S. E., Z. T. Bainbridge, P. M. Kuhnert, B. S. Sherman, B. L. Henderson, C. Dougall, M. Cooper, and J. E. Brodie (2013), Calculating sedi- ment trapping efficiencies for reservoirs in tropical settings: A case study from the Burdekin Falls Dam, NE Australia, Water Resour. Res., 49, 1017–1029, doi:10.1002/wrcr.20117. Lough, J. M. (2007), Tropical river flow and rainfall reconstructions from coral luminescence: Great Barrier Reef, Australia, Paleoceanography, 22, PA2218, doi:10.1029/2006PA001377. McCulloch, M., S. Fallon, T. Wyndham, E. Hendy, J. Lough and D. Barnes (2003), Coral record of increased sediment flux to the inner Great Barrier Reef since European settlement, Nature, 421, 727–730. McKergow, L. A., I. P. Prosser, A. O. Hughes, and J. Brodie (2005), Sources of sediment to the Great Barrier Reef World Heritage Area, Mar. Pollut. Bull., 51, 200–211. Mitchell, A. W. and M. J. Furnas (1996), Terrestrial inputs of nutrients and suspended sediments to the GBR lagoon, In The Great Barrier Reef: Science, Use and Management: A National Conference, Proceedings, vol. 1, pp. 59–71., November 1996, James Cook Univ., Townsville. Nagle, G. N., T. J. Fahey, and J. P. Lassoie (1999), Management of sedimentation in tropical watersheds, Environ. Manage., 23, 441–452. Nyssen, J., et al. (2009), How soil conservation affects the catchment sediment budget: A comprehensive study in north Ethiopian high- lands, Earth Surf. Processes Landforms, 34, 1216–1233. Orpin, A. P., and P. V. Ridd (2012), Exposure of inshore corals to suspended sediments due to wave-resuspension and river plumes in the central Great Barrier Reef: A reappraisal, Cont. Shelf Res., 47, 55–67. Orpin, A. R., P. V. Ridd, and L. K. Stewart (1999), Assessment of the relative importance of major sediment-transport mechanisms in the cen- tral Great Barrier Reef lagoon, Aust. J. Earth Sci., 46, 883–896. Packett, R., C. Dougall, K. Rohde, and R. Noble (2009), Agricultural lands are hot-spots for annual runoff polluting the southern Great Barrier Reef lagoon, Mar. Pollut. Bull., 58, 976–986, doi:10.1016/j.marpolbul.2009.02.017. Panda, D. K., A. Kumar, and S. Mohanty (2011), Recent trends in sediment load of the tropical (Peninsular) river basins of India, Global Planet. Change, 75, 108–118. Peel, M. C., B. L. Finlayson, and T. A. McMahon (2007), Updated world map of the K€ oppen-Geiger climate classification, Hydrol. Earth Syst. Sci., 11, 1633–1644. Perry, C. T., S. G. Smithers, P. Gulliver, and N. K. Browne (2012), Evidence of very rapid reef accretion and reef growth under high turbidity and terrigenous sedimentation, Geology, 40, 719–722. Petheram, C., T. A. McMahon, and M. C. Peel (2008), Flow characteristics of rivers in northern Australia: Implications for development, J. Hydrol., 357, 93–111. Reef Rescue (2008), Australian Government’s Caring for our Country Initiative: Reef Rescue. [Available at www.nrm.gov.au/about/key- investments/reef-rescue.html, last accessed 20 September 2012.] Restrepo, J. D., and B. Kjerfve (2000), Magdalena river: Interannual variability (1975–1995) and revised water discharge and sediment load estimates, J. Hydrol., 235, 137–149. Rijsdijk, A. (2005), Evaluating sediment sources and delivery in a tropical volcanic watershed. Sediment Budgets 2, in Proceedings of Sympo- sium SI Held During the 7th IAHS Scientific Assembly at Foz do Iguacu, Brazil, April 2005, vol. 292, edited by A.J. Horowitz and D.E. Walling, IAHS Publ. Roff, G., T. R. Clark, C. E. Reymond, J. Zhao, Y. Feng, L. J. McCook, T. J. Done, and J. M. Pandolfi (2013), Palaeoecological evidence of a histori- cal collapse of corals at Pelorus Island, inshore Great Barrier Reef, following European settlement, Proc. R. Soc. B, 280 (1750), 2012–2100, doi:10.1098/rspb.2012.2100. Roth, C. H., G. Lawson, and D. Cavanagh (2002), Overview of key natural resource management issues in the Burdekin catchment, with par- ticular reference to water quality and salinity, Report commissioned by Department of Natural Resources and Mines on behalf of the Burdekin Dry Tropics Board, 99 pp., CSIRO Land and Water, Townsville. Rustomji, P., N. Bennett, and F. Chiew (2009), Flood variability east of Australia’s Great Dividing Range, J. Hydrol., 374, 196–208, doi:10.1016/ j.jhydrol.2009.06.017. Slaymaker, O. (2003), The sediment budget as conceptual framework for management tool, Hydrobiologia, 494, 71–82. Sperazza, M., J. N. Moore, and M. S. Hendrix (2004), High-resolution particle size analysis of naturally occurring very fine-grained sediment through laser diffractometry, J. Sediment. Res., 74, 736–743. Syvitski, J. P. M. (2003), Supply and flux of sediment along hydrological pathways: Research for the 21st century, Global Planet. Change, 39, 1–11. Tooth, S. (2000), Process, form and change in dryland rivers: A review of recent research, Earth Sci. Rev., 51, 67–107. Verbist, B., J. Poesen, M. van Noordwijk, Widianto, D. Suprayogo, F. Agus, and J. Deckers (2010), Factors affecting soil loss at plot scale and sediment yield at catchment scale in a tropical volcanic agroforestry landscape, Catena, 80, 34–46. BAINBRIDGE ET AL. C 2014. American Geophysical Union. All Rights Reserved. V 9086