Phosphorus load estimation in the Saginaw River, MI using a Bayesian hierarchical/multilevel model.
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Craig A Stow | Carlo DeMarchi | Kenneth H Reckhow | YoonKyung Cha | C. Stow | K. Reckhow | T. Johengen | YoonKyung Cha | C. DeMarchi | Thomas H Johengen
[1] A. Robertson,et al. Great Lakes Eutrophication: The Effect of Point Source Control of Total Phosphorus , 1977, Science.
[2] Andrew Gelman,et al. Data Analysis Using Regression and Multilevel/Hierarchical Models , 2006 .
[3] W. A. Ericson. Subjective Bayesian Models in Sampling Finite Populations , 1969 .
[4] Kenneth H. Reckhow,et al. Water quality simulation modeling and uncertainty analysis for risk assessment and decision making , 1994 .
[5] Annie Poulin,et al. Selecting a calculation method to estimate sediment and nutrient loads in streams: Application to the Beaurivage River (Quebec, Canada) , 2005 .
[6] Yin Chu,et al. Estimating nutrient and sediment flood loads in a small Mediterranean river , 2008 .
[7] R. Royall. On finite population sampling theory under certain linear regression models , 1970 .
[8] David M. Dolan,et al. Evaluation of River Load Estimation Methods for Total Phosphorus , 1981 .
[9] Florentina Moatar,et al. The influence of contrasting suspended particulate matter transport regimes on the bias and precision of flux estimates. , 2006, The Science of the total environment.
[10] Andrew Thomas,et al. WinBUGS - A Bayesian modelling framework: Concepts, structure, and extensibility , 2000, Stat. Comput..
[11] A. Coynel,et al. Sampling frequency and accuracy of SPM flux estimates in two contrasted drainage basins. , 2004, The Science of the total environment.
[12] Craig A. Stow,et al. A Bayesian observation error model to predict cyanobacterial biovolume from spring total phosphorus in Lake Mendota, Wisconsin , 1997 .
[13] Robert M. Hirsch,et al. Estimating constituent loads , 1989 .
[14] Florentina Moatar,et al. Riverine fluxes of pollutants: Towards predictions of uncertainties by flux duration indicators , 2007 .
[15] Robert M. Summers,et al. The validity of a simple statistical model for estimating fluvial constituent loads: An Empirical study involving nutrient loads entering Chesapeake Bay , 1992 .
[16] I. G. Littlewood,et al. Systematic application of United Kingdom river flow and quality databases for estimating annual river mass loads (1975–1994) , 1998 .
[17] Ross Ihaka,et al. Gentleman R: R: A language for data analysis and graphics , 1996 .
[18] Penny J Johnes,et al. Uncertainties in annual riverine phosphorus load estimation: Impact of load estimation methodology, sampling frequency, baseflow index and catchment population density , 2007 .
[19] Lachlan T. H. Newham,et al. A framework for estimating pollutant export coefficients from long-term in-stream water quality monitoring data , 2008, Environ. Model. Softw..
[20] C. Stow,et al. Confounding Effect of Flow on Estuarine Response to Nitrogen Loading , 2004 .
[21] Brian Kronvang,et al. CHOICE OF SAMPLING STRATEGY AND ESTIMATION METHOD FOR CALCULATING NITROGEN AND PHOSPHORUS TRANSPORT IN SMALL LOWLAND STREAMS , 1996 .
[22] Thomas M. Heidtke,et al. Factors affecting the efficiency of some estimators of fluvial total phosphorus load , 1988 .
[23] B. Lesht,et al. Great Lakes Total Phosphorus Model: Post Audit and Regionalized Sensitivity Analysis , 1991 .
[24] David W. Dilks,et al. Modeling the Role of Zebra Mussels in the Proliferation of Blue-green Algae in Saginaw Bay, Lake Huron , 2005 .
[25] C. Stow,et al. Long-term changes in watershed nutrient inputs and riverine exports in the Neuse River, North Carolina. , 2001, Water research.
[26] V. J. Bierman,et al. Retrospective analysis of the response of Saginaw Bay, Lake Huron, to reductions in phosphorus loadings. , 1984, Environmental science & technology.
[27] Florentina Moatar,et al. Compared performances of different algorithms for estimating annual nutrient loads discharged by the eutrophic River Loire , 2005 .
[28] R. Ferguson. River Loads Underestimated by Rating Curves , 1986 .
[29] Arthur H. Johnson,et al. Estimating solute transport in streams from grab samples , 1979 .
[30] I. G. Littlewood,et al. Hydrological regimes, sampling strategies, and assessment of errors in mass load estimates for United Kingdom rivers , 1995 .
[31] Craig A. Stow,et al. Estimator bias in a lake phosphorus model with observation error , 1996 .
[33] Craig A Stow,et al. Assessing TMDL effectiveness using flow-adjusted concentrations: a case study of the Neuse River, North Carolina. , 2003, Environmental science & technology.
[34] David B. Dunson,et al. Bayesian Data Analysis , 2010 .
[35] Mark E. Borsuk,et al. Approaches to Evaluate Water Quality Model Parameter Uncertainty for Adaptive TMDL Implementation1 , 2007 .
[36] Craig A Stow,et al. A Bayesian approach to retransformation bias in transformed regression. , 2006, Ecology.
[37] R. Royall,et al. Robust Estimation in Finite Populations I , 1973 .
[38] R. Ferguson. Accuracy and precision of methods for estimating river loads , 1987 .
[39] Timothy A. Cohn,et al. Load Estimator (LOADEST): A FORTRAN Program for Estimating Constituent Loads in Streams and Rivers , 2004 .
[40] Desmond E. Walling,et al. Estimating the suspended sediment loads of rivers in the LOIS study area using infrequent samples , 1999 .
[41] J. Depinto,et al. Impact of phosphorus availability on modelling phytoplankton dynamics , 1986, Hydrobiological Bulletin.
[42] Craig A. Stow,et al. Phosphorus loading reductions needed to control blue green algal blooms in Lake Mendota , 1998 .
[43] J. Herson. An Investigation of Relative Efficiency of Least- Squares Prediction to Conventional Probability Sampling Plans , 1976 .
[44] Mark M. Benjamin,et al. A review and reassessment of lake phosphorus retention and the nutrient loading concept , 2007 .
[45] R. Peter Richards,et al. Monte Carlo studies of sampling strategies for estimating tributary loads , 1987 .