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Middle Mississippi River: A Critical Transportation, Flooding and Ecological Corridor Needs Mitigation and Restoration

DOI: 10.4236/ojss.2025.159029, PP. 646-690

Keywords: Middle Mississippi River, US Army Corps of Engineers, Confluence, Ohio River, Missouri River, Levees, Mississippi River Commission

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Abstract:

The Middle Mississippi River extends south from the confluence of the Missouri and Mississippi Rivers at St. Louis, Missouri to the confluence of the Ohio and Mississippi Rivers at Cairo, Illinois. The length of the Middle Mississippi River is 310 km and the river falls 67 m or at the rate of 23 cm/km. Most of the shipping traffic from the Upper Mississippi, Illinois, and Missouri Rivers passes through this Middle Mississippi River corridor where it merges with the Ohio, Tennessee, and Cumberland River shipping traffic and continues down the Lower Mississippi River to the Gulf of America (formerly the Gulf of Mexico). The primary objectives of the paper are to document how geological and landscape resources of the Middle Mississippi River have contributed to the successful water resource and economic development of a historically rich region in North America and to identify the anthropic, environmental, and natural resource risks to the Middle Mississippi River basin. Historically, the Middle Mississippi is prone to flooding. A series of levees has been created to protect both urban and agricultural areas. In addition, the New Madrid floodway was created by the United States Corps of Engineers (USACE) to protect both urban and agricultural areas in 1930s to reduce the flooding at the confluence of the Ohio and Middle Mississippi rivers and the Lower Mississippi River. The Middle Mississippi River section is characterized by its diverse habitats, including floodplain forests, wetlands, and islands, which are crucial for various wildlife species. The Middle Mississippi River National Wildlife Refuge, established in 2000, plays a significant role in protecting these habitats and providing a sanctuary for migratory birds and resident wildlife. The Middle Mississippi River is a vital ecological and historical corridor, known for its rich biodiversity, recreational opportunities, and conservation efforts. American Rivers named the Middle Mississippi River among America’s Most Endangered Rivers of 2014, shining a national spotlight on the impact a rebuilt levee at the New Madrid Floodway poses to wildlife habitat.

References

[1]  Olson, K.R. and Morton, L.W. (2016) Managing Mississippi and Ohio River Landscapes. Soil and Water Conservation Society. 240.
https://www.researchgate.net/publication/379386902_E-Book_Managing_Misssissippi_and_Ohio_River_Landscapes_Olson_and_Morton_8
[2]  Olson, K.R., Reed, M. and Morton, L.W. (2011) Multifunctional Mississippi River Leveed Bottomlands and Settling Basins: Sny Island Levee Drainage District. Journal of Soil and Water Conservation, 66, 104A-110A.
https://doi.org/10.2489/jswc.66.4.104a
[3]  Olson, K.R. and Morton, L.W. (2014) Dredging of the Fractured Bedrock-Lined Mississippi River Channel at Thebes, Illinois. Journal of Soil and Water Conservation, 69, 26A-32A.
https://doi.org/10.2489/jswc.69.2.31a
[4]  Olson, K.R. and Morton, L.W. (2013) Impacts of 2011 Len Small Levee Breach on Private and Public Illinois Lands. Journal of Soil and Water Conservation, 68, 89A-95A.
https://doi.org/10.2489/jswc.68.4.89a
[5]  Olson, K.R., Morton, L.W. and Speidel, D. (2016) Missouri Ozark Plateau Headwaters Diversion Engineering Feat. Journal of Soil and Water Conservation, 71, 13A-19A.
https://doi.org/10.2489/jswc.71.1.13a
[6]  Olson, K.R., Morton, L.W. and Speidel, D. (2016) Little River Drainage District Conversion of Big Swamp to Fertile Agricultural Land. Journal of Soil and Water Conservation, 71, 37A-43A.
https://doi.org/10.2489/jswc.71.2.37a
[7]  Olson, K.R. and Morton, L.W. (2016) Mississippi River Threatens to Make Dogtooth Bend Peninsula in Illinois an Island. Journal of Soil and Water Conservation, 71, 142A-148A.
https://doi.org/10.2489/jswc.71.6.140a
[8]  Morton, L.W. and Olson, K.R. (2016) St. Johns Levee and Drainage District Attempt to Mitigate Internal Flooding. Journal of Soil and Water Conservation, 71, 91A-97A.
https://doi.org/10.2489/jswc.71.4.91a
[9]  Barry, J.M. (1997) Rising Tide: The Great Mississippi Flood of 1927 and How It Changed America. Simon and Schuster.
[10]  Camillo, C.A. (2012) Divine Providence: The 2011 Flood in Mississippi River and Tributaries Project. The Mississippi River Commission.
[11]  Park, J., Seager, T.P., Rao, P.S.C., Convertino, M. and Linkov, I. (2012) Integrating Risk and Resilience Approaches to Catastrophe Management in Engineering Systems. Risk Analysis, 33, 356-367.
https://doi.org/10.1111/j.1539-6924.2012.01885.x
[12]  Olson, K.R. and Morton, L.W. (2013) Soil and Crop Damages as a Result of Levee Breaches on Ohio and Mississippi Rivers. Journal of Earth Sciences and Engineering, 3, 139-158.
https://missksciencesquad.weebly.com/uploads/1/9/3/1/19314261/ms_river_and_soil_contamination_reading.pdf
[13]  Morton, L.W. and Olson, K.R. (2014) Addressing Soil Degradation and Flood Risk Decision Making in Levee Protected Agricultural Lands under Increasingly Variable Climate Conditions. Journal of Environmental Protection, 5, 1220-1234.
https://doi.org/10.4236/jep.2014.512117
[14]  Coumou, D. and Rahmstorf, S. (2012) A Decade of Weather Extremes. Nature Climate Change, 2, 491-496.
https://doi.org/10.1038/nclimate1452
[15]  Wisner, B., Blaikie, P., Cannon, T. and Davis, I. (2004) At Risk: Natural Hazards, People’s Vulnerability and Disasters. 2nd Edition, Routledge.
[16]  Mileti, D.S. (1999) Disasters by Design: A Reassessment of Natural Hazards in the United States. Joseph Henry Press.
[17]  Gopalakrishnan, C. (2013) Water and Disasters: A Review and Analysis of Policy Aspects. International Journal of Water Resources Development, 29, 250-271.
https://doi.org/10.1080/07900627.2012.756133
[18]  McBean, G. and Rodgers, C. (2010) Climate Hazards and Disasters: The Need for Capacity Building. WIREs Climate Change, 1, 871-884.
https://doi.org/10.1002/wcc.77
[19]  Bates, B.C., Kundzewicz, Z.W., Wu, S. and Palutikof, J.P. (2008) Climate Change and Water. Technical paper of the Intergovernmental Panel on Climate Change, IPCC Secretariat. Intergovernmental Panel on Climate Change.
[20]  Romero-Lankao, P., Smith, J.B., Davidson, D., Diffenbaugh, N., Kinney, P., Kirshen, P., Kovacs, P. and Ruiz, L.V. (2014) North America. In: Barros, V.R., Field, C.B., Dokken, D.J., et al., Eds., Climate Change 2014: Impacts, Adaption, and Vulnerability. Part B: Regional Aspects. Contribution of Working Group II to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, Cambridge University Press, 1439-1498.
[21]  Walker, B. and Salt, D. (2006) Resilience Thinking: Sustaining Ecosystems and People in a Changing World. Island Press.
[22]  Committee on US Army Corps of Engineers Water Resources Science, Engineering and Planning, Water Science and Technology Board (WSTB), Division on Earth and Life Studies (DELS) and National Research Council (NRC) (2012) Corps of Engineers Water Resources Infrastructure: Deterioration, Investment or Divestment. National Academies Press.
http://www.nap.edu/catalog.php?record_id=13508

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