首页> 外文期刊>The Journal of Applied Ecology >Sustaining recreational quality of European lakes: Minimizing the health risks from algal blooms through phosphorus control
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Sustaining recreational quality of European lakes: Minimizing the health risks from algal blooms through phosphorus control

机译:维持欧洲湖泊休闲质量:减少健康风险的赤潮通过磷控制

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摘要

A safe, clean water supply is critical for sustaining many important ecosystem services provided by freshwaters. The development of cyanobacterial blooms in lakes and reservoirs has a major impact on the provision of these services, particularly limiting their use for recreation and water supply for drinking and spray irrigation. Nutrient enrichment is thought to be the most important pressure responsible for the widespread increase in cyanobacterial blooms in recent decades. Quantifying how nutrients limit cyanobacterial abundance in lakes is, therefore, a key need for setting robust targets for the management of freshwaters. Using a data set from over 800 European lakes, we highlight the use of quantile regression modelling for understanding the maximum potential capacity of cyanobacteria in relation to total phosphorus (TP) and the use of a range of quantile responses, alongside World Health Organisation (WHO) health alert thresholds for recreational waters, for setting robust phosphorus targets for lake management in relation to water use. The analysis shows that cyanobacteria exhibit a nonlinear response to phosphorus with the sharpest increase in cyanobacterial abundance occurring in the TP range from about 20?μg?L~(-1) up to about 100?μg?L~(-1). The likelihood of exceeding the World Health Organisation (WHO) 'low health alert' threshold increases from about 5% exceedance at 16?μg?L~(-1) to 40% exceedance at 54?μg L~(-1). About 50% of the studied lakes remain below this WHO health alert threshold, irrespective of high summer TP concentrations, highlighting the importance of other factors affecting cyanobacteria population growth and loss processes, such as high flushing rate. Synthesis and applications. Developing a more quantitative understanding of the effect of nutrients on cyanobacterial abundance in freshwater lakes provides important knowledge for restoring and sustaining a safe, clean water supply for multiple uses. Our models can be used to set nutrient targets to sustain recreational services and provide different levels of precaution that can be chosen dependent on the importance of the service provision. Developing a more quantitative understanding of the effect of nutrients on cyanobacterial abundance in freshwater lakes provides important knowledge for restoring and sustaining a safe, clean water supply for multiple uses. Our models can be used to set nutrient targets to sustain recreational services and provide different levels of precaution that can be chosen dependent on the importance of the service provision.
机译:一个安全、干净的水供应是至关重要的维持许多重要的生态系统服务提供的相似性。湖泊和水库的蓝藻提供这些产生重大影响服务业,尤其是限制其使用娱乐和给水喝喷雾灌溉。负责最重要的压力蓝藻的普遍增加在最近的几十年。限制蓝藻大量湖泊,因此,一个关键的需要设定的目标管理的相似性。从800年欧洲湖泊,我们的亮点分位数回归模型的使用理解的最大潜在的能力蓝藻与总磷(TP)和分位数的使用范围反应,与世界卫生组织(who)(世卫组织)对休闲健康警报阈值水域,形成强劲的磷的目标湖管理与用水。分析表明,蓝藻展览磷与非线性响应蓝藻增加幅度最大的富足发生在TP范围从约20 ?μg ? L ~ (1)约100μg ? L ~(1)。超过世界卫生组织(世卫组织)从对‘低健康警报阈值增加5%超过数16岁μg ? L ~(1)超过数的40%在54岁吗?仍低于健康警报阈值,无论夏天TP浓度高,强调其他因素的重要性影响人口增长和蓝藻损失的过程,如冲洗率高。合成和应用程序。定量的影响的理解蓝藻大量营养淡水湖泊提供重要的知识恢复和维持一个安全、干净的水供应多种用途。制定营养目标维持休闲并提供不同级别的服务预防措施,可以选择依赖服务条款的重要性。更多量化的影响的理解蓝藻大量营养淡水湖泊提供重要的知识恢复和维持一个安全、干净的水供应多种用途。制定营养目标维持休闲并提供不同级别的服务预防措施,可以选择依赖服务条款的重要性。

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