Evaluating management options to reduce Lake Erie algal blooms using an ensemble of watershed models

Author:

Martin Jay F.,Kalcic Margaret M.,Aloysius NoelORCID,Apostel Anna M.,Brooker Michael R.,Evenson Grey,Kast Jeffrey B.,Kujawa Haley,Murumkar Asmita,Becker Richard,Boles Chelsie,Confesor Remegio,Dagnew Awoke,Guo Tian,Long Colleen M.,Muenich Rebecca L.,Scavia Donald,Redder Todd,Robertson Dale M.ORCID,Wang Yu-ChenORCID

Funder

Ohio Department of Higher Education

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Waste Management and Disposal,General Medicine,Environmental Engineering

Reference60 articles.

1. Apostel, A., Kalcic, M., Dagnew, A., Evenson, G., Kast, J., King, K., Martin, J., Muenich, R.L., Scavia, D., (in press). Simulating Internal Watershed Processes Using Multiple SWAT Models, Science of the Total Environment.

2. Hydrological processes and model representation: impact of soft data on calibration;Arnold;Transactions of the ASABE,2015

3. Phosphorus loading to Lake Erie from the maumee, sandusky and cuyahoga rivers: the importance of bioavailability;Baker;J. Great Lake. Res.,2014

4. Comparison of models developed for phosphorus management in the Great lakes;Bierman;Phosphorus management strategies for lakes,1979

5. Scenario-testing of agricultural best management practices in Lake Erie watersheds;Bosch;J. Great Lake. Res.,2013

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