Tracing the dominant sources of sediment flowing towards Lake Victoria using geochemical tracers and a Bayesian mixing model
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[1] P. Owens. Sediment source fingerprinting: are we going in the right direction? , 2022, Journal of Soils and Sediments.
[2] W. Blake,et al. Evaluating Soil Carbon as a Proxy for Erosion Risk in the Spatio-Temporal Complex Hydropower Catchment in Upper Pangani, Northern Tanzania , 2021, Earth.
[3] G. Millward,et al. Soil erosion and sediment transport in Tanzania: Part II – sedimentological evidence of phased land degradation , 2021, Earth Surface Processes and Landforms.
[4] D. Gilvear,et al. Soil erosion and sediment transport in Tanzania: Part I – sediment source tracing in three neighbouring river catchments , 2021 .
[5] W. Blake,et al. Reconstructing the Changes in Sedimentation and Source Provenance in East African Hydropower Reservoirs: A Case Study of Nyumba ya Mungu in Tanzania , 2021, Earth.
[6] M. Rufino,et al. Agricultural land is the main source of stream sediments after conversion of an African montane forest , 2020, Scientific Reports.
[7] L. Montanarella,et al. Land use and climate change impacts on global soil erosion by water (2015-2070) , 2020, Proceedings of the National Academy of Sciences.
[8] O. Evrard,et al. A global review of sediment source fingerprinting research incorporating fallout radiocesium (137Cs) , 2020, Geomorphology.
[9] L. Gaspar,et al. Variations in transport of suspended sediment and associated elements induced by rainfall and agricultural cycle in a Mediterranean agroforestry catchment. , 2020, Journal of environmental management.
[10] C. Bernard,et al. A review of the socioecological causes and consequences of cyanobacterial blooms in Lake Victoria. , 2020, Harmful algae.
[11] M. Majaliwa,et al. Leveraging the Landscape , 2020 .
[12] G. Millward,et al. Determining tributary sources of increased sedimentation in East-African Rift Lakes. , 2020, The Science of the total environment.
[13] L. Gaspar,et al. Fingerprinting changes of source apportionments from mixed land uses in stream sediments before and after an exceptional rainstorm event , 2019, Geomorphology.
[14] A. Collins,et al. Fingerprinting sub-basin spatial suspended sediment sources by combining geochemical tracers and weathering indices , 2019, Environmental Science and Pollution Research.
[15] D. Gilvear,et al. Drivers of increased soil erosion in East Africa’s agro-pastoral systems: changing interactions between the social, economic and natural domains , 2019, Regional Environmental Change.
[16] D. Post,et al. A 2000-year sediment record reveals rapidly changing sedimentation and land use since the 1960s in the Upper Mara-Serengeti Ecosystem. , 2019, The Science of the total environment.
[17] D. Gilvear,et al. Soil erosion in East Africa: an interdisciplinary approach to realising pastoral land management change , 2018, Environmental Research Letters.
[18] M. Rufino,et al. Assessment of hydrological pathways in East African montane catchments under different land use , 2018, Hydrology and Earth System Sciences.
[19] Brian C. Stock,et al. A deconvolutional Bayesian mixing model approach for river basin sediment source apportionment , 2018, Scientific Reports.
[20] Brian C. Stock,et al. A deconvolutional Bayesian mixing model approach for river basin sediment source apportionment , 2018, Scientific Reports.
[21] Andrew L Jackson,et al. Analyzing mixing systems using a new generation of Bayesian tracer mixing models , 2018, PeerJ.
[22] A. T. Lennard,et al. Evaluating tracer selection for catchment sediment fingerprinting , 2018, Journal of Soils and Sediments.
[23] D. Post,et al. The influence of a semi-arid sub-catchment on suspended sediments in the Mara River, Kenya , 2018, PloS one.
[24] M. Rufino,et al. Impacts of land use and land cover change on surface runoff, discharge and low flows : Evidence from East Africa , 2018 .
[25] William H. Blake,et al. The challenges and opportunities of addressing particle size effects in sediment source fingerprinting: a review. , 2017 .
[26] S. Pulley,et al. Sediment source fingerprinting as an aid to catchment management: A review of the current state of knowledge and a methodological decision-tree for end-users. , 2017, Journal of environmental management.
[27] Brian C. Stock,et al. Methodological perspectives on the application of compound-specific stable isotope fingerprinting for sediment source apportionment , 2017, Journal of Soils and Sediments.
[28] Hugh G. Smith,et al. Fingerprinting and tracing the sources of soils and sediments: Earth and ocean science, geoarchaeological, forensic, and human health applications , 2016 .
[29] Brian C Stock,et al. Unifying error structures in commonly used biotracer mixing models. , 2016, Ecology.
[30] J. Ogutu,et al. Extreme Wildlife Declines and Concurrent Increase in Livestock Numbers in Kenya: What Are the Causes? , 2016, PloS one.
[31] N. W. Hudson,et al. Field measurement of soil erosion and runoff , 2016 .
[32] S. Pulley,et al. The application of sediment fingerprinting to floodplain and lake sediment cores: assumptions and uncertainties evaluated through case studies in the Nene Basin, UK , 2015, Journal of Soils and Sediments.
[33] J. Poesen,et al. Sediment yield in Africa , 2014 .
[34] P. Belmont,et al. Toward generalizable sediment fingerprinting with tracers that are conservative and nonconservative over sediment routing timescales , 2014, Journal of Soils and Sediments.
[35] Hugh G. Smith,et al. Sediment fingerprinting in agricultural catchments: A critical re-examination of source discrimination and data corrections , 2014 .
[36] E. Wasige. A spatially explicit approach to determine hydrology, erosion and nutrients dynamics in an upstream catchment of Lake Victoria Basin , 2013 .
[37] O. Evrard,et al. Sediment fingerprinting in fluvial systems: review of tracers, sediment sources and mixing models , 2013 .
[38] Scott N. Wilkinson,et al. Using sediment tracing to assess processes and spatial patterns of erosion in grazed rangelands, Burdekin River basin, Australia , 2013 .
[39] G. Noe,et al. Sediment source analysis in the Linganore Creek watershed, Maryland, USA, using the sediment fingerprinting approach: 2008 to 2010 , 2013, Journal of Soils and Sediments.
[40] D. Walling. The evolution of sediment source fingerprinting investigations in fluvial systems , 2013, Journal of Soils and Sediments.
[41] J. Adamowski,et al. Assessing the potential impacts of four climate change scenarios on the discharge of the Simiyu River, Tanzania using the SWAT Model , 2013 .
[42] G. Betrie,et al. Comparison of sediment transport computations using hydrodynamic versus hydrologic models in the Simiyu River in Tanzania , 2013 .
[43] I. Nhapi,et al. Modelling the Impact of Land Use Changes on Sediment Loading Into Lake Victoria Using SWAT Model: A Case of Simiyu Catchment Tanzania , 2012 .
[44] I. Nhapi,et al. Development of Best Management Practices for Controlling the Non-PointSources of Pollution Around Lake Victoria Using SWAT Model: A Case ofSimiyu Catchment Tanzania , 2012 .
[45] A. Melesse,et al. Land use and climate change impacts on the hydrology of the upper Mara River Basin, Kenya: results of a modeling study to support better resource management , 2011 .
[46] B. Rawlins,et al. Estimating specific surface area of fine stream bed sediments from geochemistry , 2010 .
[47] S. Lamoureux,et al. Estimation of grain size variability with micro X-ray fluorescence in laminated lacustrine sediments, Cape Bounty, Canadian High Arctic , 2010 .
[48] Kristof Van Oost,et al. The impact of agricultural soil erosion on biogeochemical cycling , 2010 .
[49] A. Tatem,et al. Food and Agriculture Organisation of the United Nations , 2009 .
[50] B. Mati,et al. Impacts of Land-use/cover Changes on the Hydrology of the Transboundary Mara River, Kenya/Tanzania , 2008 .
[51] F. Smedt,et al. Prediction of runoff and discharge in the Simiyu River (tributary of Lake Victoria, Tanzania) using the WetSpa model , 2007 .
[52] D. Walling,et al. Documenting catchment suspended sediment sources: problems, approaches and prospects , 2004 .
[53] G. Tyler. Vertical distribution of major, minor, and rare elements in a Haplic Podzol , 2004 .
[54] Erik Jeppesen,et al. Role of sediment and internal loading of phosphorus in shallow lakes , 2003, Hydrobiologia.
[55] R. Grayson,et al. Tracer properties of eroded sediment and source material , 2002 .
[56] D. Walling,et al. Use of floodplain sediment cores to investigate recent historical changes in overbank sedimentation rates and sediment sources in the catchment of the River Ouse, Yorkshire, UK , 1999 .