阿拉斯加东南部鱼流域的低氧脆弱性
Christopher J Sergeant1, J Ryan Bellmore2, Rebecca A Bellmore3
1College of Fisheries and Ocean Sciences, University of Alaska Fairbanks, 17101 Point Lena Loop Rd, Juneau, AK 99801, USA; Flathead Lake Biological Station, University of Montana, 32125 Bio Station Ln, Polson, MT 59860-6815, USA.
The Science of the total environment
|July 3, 2023
概括
在河流中,溶解氧耗尽 (低氧) 被繁殖鱼的高密度所加剧,特别是化场产生的鱼类流入河流. 低梯度流域对这种缺氧最容易受到影响,影响水生生态系统.
科学领域:
- 环境科学 环境科学
- 水生生态学 水生生态学
- 渔业 科学 渔业 科学
背景情况:
- 沿海水生生态系统面临越来越多的溶解氧耗尽 (低氧) 事件.
- 太平洋鱼 (Oncorhynchus spp.) 的繁殖密度很高. 由于氧气消耗超过重新通风,可能导致河道缺氧.
- 化场原产的鱼流入河流可以人工膨胀产卵密度,加剧缺氧.
研究的目的:
- 为了调查导致低氧脆弱性的因素在阿拉斯加东南部的河流.
- 评估化场原产的鱼流浪对溶解氧耗尽的影响.
- 为了绘制和识别流动的地图,容易出现缺氧.
主要方法:
- 使用了已验证的溶氧动力学的机械模型.
- 研究了水温和低流通道液压对缺氧的影响.
- 应用空间分析来预测化场释放地点附近的缺氧脆弱性.
主要成果:
- 低梯度流域被确定为最容易发生缺氧的流域,不论水温如何,由于重新通风率降低.
- 发现近17000公里的无人可及溪流容易受到高密度的化场来源的鱼的影响.
- 该研究确定了促进缺氧的特定息地条件.
结论:
- 化场鱼管理和流浪动态显著影响河流缺氧风险.
- 绘制缺氧脆弱性的地图为水资源管理和保护提供了至关重要的工具.
- 开发的分析方法提供了一种可重复的方法来识别和监测容易缺氧的区域.
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