Malve Olli, Qian Song S
Finnish Environment Institute, Helsinki, Finland.
Environ Sci Technol. 2006 Dec 15;40(24):7848-53. doi: 10.1021/es061359b.
We model the response of chlorophyll a-a surrogate for the phytoplankton community volume-to variations in lake total phosphorus (TP) and total nitrogen (TN) concentrations. The model is fitted to a large cross-sectional data set from the Finnish Lake monitoring network. The objective is to support the Finnish Government in identifying management actions to achieve compliance of the chlorophyll a concentration standard with a given confidence level and to provide tools for the estimation of critical (target) loads for nutrients in monitored lakes. We develop a Bayesian hierarchical linear model which combines advantages of both the currently preferred non-hierarchical lake-type-specific linear model and lake-specific linear model fitted separately using data from a single lake. The hierarchical model is less biased at lake-level compared to the lake type model. In contrast to the lake model, it predicts the lake specific chlorophyll a response to nutrients outside the lake specific observational range. The hierarchical model is used to calculate probabilities of chlorophyll a concentration exceeding the standard under different nitrogen and phosphorus concentration combinations. These probabilities can be used to estimate acceptable nitrogen-phosphorus concentration combinations by a lake manager. We discuss how our study can be useful in implementing the European Water Framework Directive.
我们构建了一个模型,用叶绿素a(浮游植物群落体积的替代指标)来反映湖泊总磷(TP)和总氮(TN)浓度的变化。该模型与来自芬兰湖泊监测网络的大量横断面数据集相拟合。目的是支持芬兰政府确定管理行动,以便在给定的置信水平下使叶绿素a浓度标准达标,并为估算受监测湖泊中营养物质的临界(目标)负荷提供工具。我们开发了一种贝叶斯分层线性模型,该模型结合了当前首选的非分层湖泊类型特定线性模型和使用单个湖泊数据单独拟合的湖泊特定线性模型的优点。与湖泊类型模型相比,分层模型在湖泊层面的偏差较小。与湖泊模型不同的是,它能预测湖泊特定叶绿素a对超出湖泊特定观测范围的营养物质的响应。分层模型用于计算在不同氮磷浓度组合下叶绿素a浓度超过标准的概率。这些概率可被湖泊管理者用来估算可接受的氮磷浓度组合。我们讨论了我们的研究在实施《欧洲水框架指令》方面如何发挥作用。