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Insights into estuary habitat loss in the western United States using a new method for mapping maximum extent of tidal wetlands

机译:使用新方法绘制最大潮汐湿地地图,了解美国西部河口栖息地的丧失

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摘要

Effective conservation and restoration of estuarine wetlands require accurate maps of their historical and current extent, as well as estimated losses of these valued habitats. Existing coast-wide tidal wetland mapping does not explicitly map historical tidal wetlands that are now disconnected from the tides, which represent restoration opportunities; nor does it use water level models or high-resolution elevation data (e.g. lidar) to accurately identify current tidal wetlands. To better inform estuarine conservation and restoration, we generated new maps of current and historical tidal wetlands for the entire contiguous U.S. West Coast (Washington, Oregon, and California). The new maps are based on an Elevation-Based Estuary Extent Model (EBEEM) that combines lidar digital elevation models (DEMs) and water level models to establish the maximum historical extent of tidal wetlands, representing a major step forward in mapping accuracy for restoration planning and analysis of wetland loss. Building from this new base, we also developed an indirect method for mapping tidal wetland losses, and created maps of these losses for 55 estuaries on the West Coast (representing about 97% of historical West Coast vegetated tidal wetland area). Based on these new maps, we estimated that total historical estuary area for the West Coast is approximately 735,000 hectares (including vegetated and nonvegetated areas), and that about 85% of vegetated tidal wetlands have been lost from West Coast estuaries. Losses were highest for major river deltas. The new maps will help interested groups improve action plans for estuarine wetland habitat restoration and conservation, and will also provide a better baseline for understanding and predicting future changes with projected sea level rise.
机译:要有效地保护和恢复河口湿地,就需要准确绘制其历史和当前范围的地图,以及这些珍贵生境的估计损失。现有的全海岸潮汐湿地地图并没有明确地绘制现在与潮汐断开连接的历史潮汐湿地,这代表了恢复的机会。它也不会使用水位模型或高分辨率海拔数据(例如激光雷达)来准确识别当前的潮汐湿地。为了更好地了解河口的保护和恢复情况,我们绘制了整个美国西海岸(华盛顿,俄勒冈州和加利福尼亚州)当前和历史的潮汐湿地的新地图。新地图基于基于海拔的河口范围模型(EBEEM),该模型结合了激光雷达数字高程模型(DEM)和水位模型来建立潮汐湿地的最大历史范围,代表了恢复规划的地图准确性迈出的重要一步和湿地流失分析。在这个新基地的基础上,我们还开发了一种间接方法来绘制潮汐湿地的损失,并绘制了西海岸55个河口(占历史悠久的西海岸植被潮汐湿地面积的97%)的这些损失的地图。根据这些新地图,我们估计西海岸的历史河口总面积约为735,000公顷(包括植被和非植被区域),而西海岸河口的植被潮汐湿地约占85%。主要三角洲地区的损失最高。新地图将帮助感兴趣的团体改善河口湿地栖息地恢复和保护的行动计划,还将为理解和预测海平面上升预期的未来变化提供更好的基线。

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