Land-cover change in upper Barataria Basin estuary,Louisiana, 1972-1992: increases in Wetland area |
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Authors: | Nelson Stacy A C Soranno Patricia A Qi Jiaguo |
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Affiliation: | (1) Department of Fisheries and Wildlife, Michigan State University, 13 Natural Resources Building, East Lansing, Michigan 48824, USA, US;(2) Department of Fisheries and Wildlife, Michigan State University, 9B Natural Resources Building, East Lansing, Michigan 48824, USA, US;(3) Department of Geography and Basic Science and Remote Sensing Initiative, Michigan State University, 218 Manly Miles Building, East Lansing, Michigan 48823-5243, USA, US |
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Abstract: | The Barataria Basin, Louisiana, USA, is an extensive wetland and coastal estuary system of great economic and intrinsic value. Although high rates of wetland loss along the coastal margin of the Barataria Basin have been well documented, little information exists on whether freshwater wetlands in the upper basin have changed. Our objectives were to quantify land-cover change in the upper basin over 20 years from 1972–1992 and to determine land-cover transition rates among land-cover types. Using 80-m resolution Landsat MSS data from the North American Landscape Characterization (NALC) data archive, we classified images from three time steps (1972, 1985, 1992) into six land-cover types: agriculture, urban, bottomland hardwood forest, swamp forest, freshwater marsh, and open water. Significant changes in land cover occurred within the upper Barataria Basin over the study period. Urban land increased from 8% to 17% of the total upper basin area, primarily due to conversions from agricultural land, and to a lesser degree, bottomland forest. Swamp forest increased from 30% to 41%, associated with conversions from bottomland hardwood forest and freshwater marsh. Overall, bottomland forest decreased 38% and total wetland area increased 21%. Within the upper Barataria, increases in total wetland area may be due to land subsidence. Based on our results, if present trends in the reduction of bottomland forest land cover were to continue, the upper Barataria Basin may have no bottomland hardwood forests left by the year 2025, as it is subjected to multiple stressors both in the higher elevations (from urbanization) and lower elevations (most likely from land subsidence). These results suggest that changes in the upper freshwater portions of coastal estuaries can be large and quite different from patterns observed in the more saline coastal margins. |
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Keywords: | : Barataria Basin, Louisiana Remote sensing Wetlands Landsat MSS Land subsidence Land cover change |
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