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内部生态系统反馈增强了波罗的海固氮蓝藻水华,并使管理变得复杂。

Internal ecosystem feedbacks enhance nitrogen-fixing cyanobacteria blooms and complicate management in the Baltic Sea.

作者信息

Vahtera Emil, Conley Daniel J, Gustafsson Bo G, Kuosa Harri, Pitkänen Heikki, Savchuk Oleg P, Tamminen Timo, Viitasalo Markku, Voss Maren, Wasmund Norbert, Wulff Fredrik

机构信息

Department of Biological Oceanography, Finnish Institute of Marine Research, Helsinki, Finland.

出版信息

Ambio. 2007 Apr;36(2-3):186-94. doi: 10.1579/0044-7447(2007)36[186:iefenc]2.0.co;2.

Abstract

Eutrophication of the Baltic Sea has potentially increased the frequency and magnitude of cyanobacteria blooms. Eutrophication leads to increased sedimentation of organic material, increasing the extent of anoxic bottoms and subsequently increasing the internal phosphorus loading. In addition, the hypoxic water volume displays a negative relationship with the total dissolved inorganic nitrogen pool, suggesting greater overall nitrogen removal with increased hypoxia. Enhanced internal loading of phosphorus and the removal of dissolved inorganic nitrogen leads to lower nitrogen to phosphorus ratios, which are one of the main factors promoting nitrogenfixing cyanobacteria blooms. Because cyanobacteria blooms in the open waters of the Baltic Sea seem to be strongly regulated by internal processes, the effects of external nutrient reductions are scale-dependent. During longer time scales, reductions in external phosphorus load may reduce cyanobacteria blooms; however, on shorter time scales the internal phosphorus loading can counteract external phosphorus reductions. The coupled processes inducing internal loading, nitrogen removal, and the prevalence of nitrogen-fixing cyanobacteria can qualitatively be described as a potentially self-sustaining "vicious circle." To effectively reduce cyanobacteria blooms and overall signs of eutrophication, reductions in both nitrogen and phosphorus external loads appear essential.

摘要

波罗的海的富营养化可能增加了蓝藻水华的频率和规模。富营养化导致有机物质沉降增加,使缺氧底部范围扩大,进而增加了内部磷负荷。此外,缺氧水体体积与总溶解无机氮库呈负相关,这表明随着缺氧加剧,整体氮去除量增加。磷的内部负荷增加以及溶解无机氮的去除导致氮磷比降低,而氮磷比是促进固氮蓝藻水华的主要因素之一。由于波罗的海开阔水域的蓝藻水华似乎受内部过程的强烈调控,外部养分减少的影响取决于尺度。在较长时间尺度上,外部磷负荷的减少可能会减少蓝藻水华;然而,在较短时间尺度上,内部磷负荷可能会抵消外部磷的减少。引发内部负荷、氮去除以及固氮蓝藻盛行的耦合过程在定性上可描述为一个潜在的自我维持的“恶性循环”。为有效减少蓝藻水华和富营养化的总体迹象,减少氮和磷的外部负荷似乎至关重要。

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