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湖泊会感受到热吗?美国大陆湖泊暴露于火灾增加的生态后果。

Do lakes feel the burn? Ecological consequences of increasing exposure of lakes to fire in the continental United States.

机构信息

Department of Fisheries and Wildlife, Michigan State University, East Lansing, Michigan.

Lyman Briggs College, Michigan State University, East Lansing, Michigan.

出版信息

Glob Chang Biol. 2019 Sep;25(9):2841-2854. doi: 10.1111/gcb.14732. Epub 2019 Jul 13.

Abstract

Wildfires are becoming larger and more frequent across much of the United States due to anthropogenic climate change. No studies, however, have assessed fire prevalence in lake watersheds at broad spatial and temporal scales, and thus it is unknown whether wildfires threaten lakes and reservoirs (hereafter, lakes) of the United States. We show that fire activity has increased in lake watersheds across the continental United States from 1984 to 2015, particularly since 2005. Lakes have experienced the greatest fire activity in the western United States, Southern Great Plains, and Florida. Despite over 30 years of increasing fire exposure, fire effects on fresh waters have not been well studied; previous research has generally focused on streams, and most of the limited lake-fire research has been conducted in boreal landscapes. We therefore propose a conceptual model of how fire may influence the physical, chemical, and biological properties of lake ecosystems by synthesizing the best available science from terrestrial, aquatic, fire, and landscape ecology. This model also highlights emerging research priorities and provides a starting point to help land and lake managers anticipate potential effects of fire on ecosystem services provided by fresh waters and their watersheds.

摘要

由于人为气候变化,美国大部分地区的野火规模越来越大,且越来越频繁。然而,尚无研究在广泛的时空尺度上评估湖流域的火灾发生率,因此,尚不清楚野火是否会威胁到美国的湖泊和水库(以下简称湖泊)。我们表明,1984 年至 2015 年,美国大陆的湖流域的火灾活动有所增加,尤其是 2005 年以来。美国西部、南部大平原和佛罗里达州的湖泊经历了最强烈的火灾活动。尽管暴露在火灾中的时间已超过 30 年,但对淡水火灾的影响仍未得到很好的研究;先前的研究通常集中在溪流上,而且有限的湖泊火灾研究大多集中在北方景观中。因此,我们通过综合陆地、水生、火灾和景观生态学方面的最佳现有科学,提出了一个关于火灾如何影响湖泊生态系统物理、化学和生物特性的概念模型。该模型还突出了新的研究重点,并为帮助土地和湖泊管理者预测火灾对淡水及其流域提供的生态系统服务的潜在影响提供了一个起点。

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