6 References

Baker, B., Hawdon, A., & Bartley, R. (2016). Gully remediation sites: water quality monitoring procedures. CSIRO Land and Water .
Bartley, R., Hawdon, A., Henderson, A., Wilkinson, S., Goodwin, N., Abbott, B., Telfer, D. (2017). Quantifying the effectiveness of gully remediation on off-site water quality: preliminary results from demonstration sites in the Burdekin catchment. NESP Project 2.4 (2017).
Bent, G. C., Gray, J. R., Smith, K. P., Glysson, G., & Granato, G. (2003). A synopsis of technical issues for monitoring sediment in highway and urban runoff. The national highway runoff data and methodology synthesis , 113-163.
Brooks, A., Spencer, J., Olley, J., Pietsch, T., Borombovits, D., Curwen, G., Simon, A. (2013). An empirically-based sediment budget for the Normanby Basin: sediment sources, sinks, and drivers on the Cape York Savannah. Griffith University, 506pp .
Caitcheon, G. G., Olley, J. M., Pantus, F., Hancock, G., & Leslie, C. (2012). The dominant erosion processes supplying fine sediment to three major rivers in tropical Australia, the Daly (NT), Mitchell (Qld) and Flinders (Qld) Rivers. Geomorphology, 151 , 188-195.
Capra, A., & Scicolone, B. (2002). SW—soil and water: ephemeral gully Erosion in a wheat-cultivated area in Sicily (Italy). Biosystems Engineering, 83 (1), 119-126.
Casalí, J., Giménez, R., & Bennett, S. (2009). Gully erosion processes: monitoring and modelling. Earth Surface Processes and Landforms, 34 (14), 1839-1840.
Castillo, C., Pérez, R., James, M., Quinton, J., Taguas, E. V., & Gómez, J. A. (2012). Comparing the accuracy of several field methods for measuring gully erosion. Soil Science Society of America Journal, 76 (4), 1319-1332.
Clark, S. E., Siu, C., Pitt, R., Roenning, C. D., & Treese, D. P. (2009). Peristaltic pump autosamplers for solids measurement in stormwater runoff. Water Environment Research, 81 (2), 192-200.
Doriean, N. J., Teasdale, P. R., Welsh, D. T., Brooks, A. P., & Bennett, W. W. (2019). Evaluation of a simple, inexpensive, in situ sampler for measuring time‐weighted average concentrations of suspended sediment in rivers and streams. Hydrological Processes, 33(5), 678-686.
DPI, N. (2017). Clever device for sampling water quailty [Press release]
Edwards, T. K., Glysson, G. D., Guy, H. P., & Norman, V. W. (1999). Field methods for measurement of fluvial sediment: US Geological Survey Denver, CO.
Fowler, G. D., Roseen, R. M., Ballestero, T. P., Guo, Q., & Houle, J. (2009). Sediment monitoring bias by autosampler in comparison with whole volume sampling for parking lot runoff. Paper presented at the World Environmental and Water Resources Congress 2009: Great Rivers.
García‐Comendador, J., Fortesa, J., Calsamiglia, A., Calvo‐Cases, A., & Estrany, J. (2017). Post‐fire hydrological response and suspended sediment transport of a terraced Mediterranean catchment. Earth Surface Processes and Landforms, 42 (14), 2254-2265.
Gray, J. R., & Gartner, J. W. (2009). Technological advances in suspended‐sediment surrogate monitoring. Water resources research, 45 (4).
Horowitz, A. J. (2017). A question of uncertainty. Hydrological Processes, 31 (12), 2314-2315.
Horowitz, A. J., Clarke, R. T., & Merten, G. H. (2015). The effects of sample scheduling and sample numbers on estimates of the annual fluxes of suspended sediment in fluvial systems. Hydrological Processes, 29 (4), 531-543.
Horowitz, A. J., Elrick, K. A., & Smith, J. J. (2008). Measuring the Fluxes of Suspended Sediment, Trace Elements and Nutrients for the City of Atlanta, USA: Insights on the Global Water Quality Impacts of Increasing Urbanization. Water and Energy Abstracts, 18 (1), 45-45.
HQS. (2019). www.hyquestsolutions.com.
JMG. (2019). www.johnmorrisgroup.com.
Nistor, C. J., & Church, M. (2005). Suspended sediment transport regime in a debris‐flow gully on Vancouver Island, British Columbia.Hydrological Processes, 19 (4), 861-885.
Nyssen, J., Poesen, J., Moeyersons, J., Luyten, E., Veyret‐Picot, M., Deckers, J., Govers, G. (2002). Impact of road building on gully erosion risk: a case study from the northern Ethiopian highlands. Earth Surface Processes and Landforms, 27 (12), 1267-1283.
Nunny, R. S. (1985). The NBT82 suspended sediment sampler (datasheet).
Glastonbury, United Kingdom.
Olley, J., Brooks, A., Spencer, J., Pietsch, T., & Borombovits, D. (2013). Subsoil erosion dominates the supply of fine sediment to rivers draining into Princess Charlotte Bay, Australia. Journal of environmental radioactivity, 124 , 121-129.
Phillips, J. M., Russell, M. A., & Walling, D. E. (2000). Time‐integrated sampling of Fluvial suspended sediment: A simple methodology for small catchments. Hydrological Processes, 14, 2589–2602.
Perks, M. T. (2014). Suspended Sediment Sampling. Geomorphological Techniques, Chap. 3, Sec. 3.6. British Society for Geomorphology
Poesen, J., Nachtergaele, J., Verstraeten, G., & Valentin, C. (2003). Gully erosion and environmental change: importance and research needs.Catena, 50 (2-4), 91-133.
Prism, G. (2019). Graphpad software, Version 8. San Diego, CA, USA .
Rasmussen, P. P., Gray, J. R., Glysson, G. D., & Ziegler, A. C. (2009). Guidelines and procedures for computing time-series suspended-sediment concentrations and loads from in-stream turbidity-sensor and streamflow data. US geological survey techniques and methods, book, 3 , 52.
Sauer, V. B., & Meyer, R. (1992). Determination of error in individual discharge measurements (2331-1258). (No. 92-144). US Geological Survey
Shellberg, J. G., Brooks, A. P., & Rose, C. W. (2013). Sediment production and yield from an alluvial gully in northern Queensland, Australia. Earth Surface Processes and Landforms, 38 (15), 1765-1778.
Vercruysse, K., Grabowski, R. C., & Rickson, R. (2017). Suspended sediment transport dynamics in rivers: Multi-scale drivers of temporal variation. Earth-Science Reviews .
Walling, D. (2006). Human impact on land–ocean sediment transfer by the world’s rivers. Geomorphology, 79 (3-4), 192-216.
Walling, D. E., & Collins, A. L. (2016). Fine sediment transport and management. River Science: Research and Management for the 21st Century , 37-60.
Ward, J. R., & Harr, C. A. (1990). Methods for collection and processing of surface-water and bed-material samples for physical and chemical analyses: Citeseer.
Wilkinson, S., Bartley, R., Hairsine, P., Bui, E., Gregory, L., & Henderson, A. (2015). Managing gully erosion as an efficient approach to improving water quality in the Great Barrier Reef lagoon. Report to the Department of the Environment (Reef Program) .
Wilkinson, S. N., Kinsey‐Henderson, A. E., Hawdon, A. A., Hairsine, P. B., Bartley, R., & Baker, B. (2018). Grazing impacts on gully dynamics indicate approaches for gully erosion control in northeast Australia.Earth Surface Processes and Landforms, 43 (8), 1711-1725.