首页> 美国卫生研究院文献>Ecology and Evolution >Preliminary analysis to estimate the spatial distribution of benefits of P load reduction: Identifying the spatial influence of phosphorus loading from the Maumee River (USA) in western Lake Erie
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Preliminary analysis to estimate the spatial distribution of benefits of P load reduction: Identifying the spatial influence of phosphorus loading from the Maumee River (USA) in western Lake Erie

机译:初步分析以估算减少磷负荷的空间分布:确定伊利湖西部莫美河(美国)磷负荷的空间影响

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摘要

Since the early 2000s, Lake Erie has been experiencing annual cyanobacterial blooms that often cover large portions of the western basin and even reach into the central basin. These blooms have affected several ecosystem services provided by Lake Erie to surrounding communities (notably drinking water quality). Several modeling efforts have identified the springtime total bioavailable phosphorus (TBP) load as a major driver of maximum cyanobacterial biomass in western Lake Erie, and on this basis, international water management bodies have set a phosphorus (P) reduction goal. This P reduction goal is intended to reduce maximum cyanobacterial biomass, but there has been very limited effort to identify the specific locations within the western basin of Lake Erie that will likely experience the most benefits. Here, we used pixel‐specific linear regression to identify where annual variation in spring TBP loads is most strongly associated with cyanobacterial abundance, as inferred from satellite imagery. Using this approach, we find that annual TBP loads are most strongly associated with cyanobacterial abundance in the central and southern areas of the western basin. At the location of the Toledo water intake, the association between TBP load and cyanobacterial abundance is moderate, and in Maumee Bay (near Toledo, Ohio), the association between TBP and cyanobacterial abundance is no better than a null model. Both of these locations are important for the delivery of specific ecosystem services, but this analysis indicates that P load reductions would not be expected to substantially improve maximum annual cyanobacterial abundance in these locations. These results are preliminary in the sense that only a limited set of models were tested in this analysis, but these results illustrate the importance of identifying whether the spatial distribution of management benefits (in this case P load reduction) matches the spatial distribution of management goals (reducing the effects of cyanobacteria on important ecosystem services).
机译:从2000年代初开始,伊利湖就经历了每年的蓝细菌水华,这些水华经常覆盖西部盆地的大部分甚至到达中部盆地。这些花朵影响了伊利湖为周边社区提供的几种生态系统服务(特别是饮用水水质)。几项建模工作已经确定,春季伊利湖总生物利用磷(TBP)负荷是伊利湖西部最大蓝藻生物量最大的主要驱动力,在此基础上,国际水管理机构设定了减少磷(P)的目标。减少磷的目的是要减少最大的蓝细菌生物量,但是在确定伊利湖西部盆地中可能会受益最大的特定位置方面的努力非常有限。在这里,我们使用了特定于像素的线性回归来确定春季TBP负载的年度变化与蓝藻细菌丰度之间最强的相关性,这可以从卫星图像中推断出来。使用这种方法,我们发现在西部盆地的中部和南部地区,年度TBP负荷与蓝细菌的丰度最强相关。在托莱多取水的地点,TBP负荷与蓝细菌丰度之间的关联是中等的,而在莫米湾(俄亥俄州托莱多附近),TBP与蓝细菌丰度之间的关联并不比空模型更好。这两个位置对于提供特定的生态系统服务都很重要,但是该分析表明,减少P负荷预计不会显着提高这些位置的最大年度蓝细菌丰度。这些结果是初步的,因为在此分析中仅测试了一组有限的模型,但是这些结果说明了确定管理收益的空间分布(在这种情况下为P负荷减少)是否与管理目标的空间分布相匹配的重要性。 (减少蓝细菌对重要生态系统服务的影响)。

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