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A Fuzzy Comprehensive Assessment and Hierarchical Management System for Urban Lake Health: A Case Study on the Lakes in Wuhan City Hubei Province China

机译:城市湖泊健康的模糊综合评价与分级管理系统-以湖北省武汉市湖泊为例

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摘要

Environmental assessment of eutrophication or heavy metals in urban lakes is an important reference for identifying the pollution degree and formulating pollution prevention strategies. At present, the most research on lake health states is often evaluated from a single angle for toxic metals pollution or eutrophication using the standard comparison method for both, the comprehensive trophic level index (TLI), and the health risk assessment for toxic metals. Moreover, the above deterministic methods probably lead to biased or unreliable assessment due to the randomness and fuzziness in environment system caused by natural change and human activities. In this paper, a fuzzy comprehensive lake health assessment method (FCLHAM) was established to evaluate comprehensive lake health states more comprehensively and accurately, which integrates quantitative eutrophication and health risk considerations. To test and verify FCLHAM, 21 lakes, scientifically selected from the total 143 lakes in the Chinese Wuhan city as study case, were investigated and analyzed for their state of eutrophication and the health risk posed by heavy metals. According to the FCLHAM, the average comprehensive lake health state decreased in the sequence of L20 (considerate risk level) > L1–L17, L19, L21 (moderate risk level) > L18 (low risk level). Based on the result, lakes were classified into three categories: general management (L18), enhanced management (L1–L17, L19, L21), and priority management (L20). If the 143 lakes in Wuhan were classified by the “area-region-function” classification, they would be assigned to the same category as the representative lakes of the same type. At this point, we will attribute all of Wuhan’s lakes to the three types. Depending on the characteristics of each type, a targeted approach to different types of management for each type of lake is a more efficient way to manage many of Wuhan’s lakes. This management mode also serves as an effective reference for the environmental management of urban lakes both at home and abroad. In other words, according to the FCLHAM, a hierarchical management system based on lake characteristics classification was obtained.
机译:城市湖泊富营养化或重金属环境评价是确定污染程度和制定污染防治策略的重要参考。目前,大多数关于湖泊健康状况的研究通常使用标准比较方法(营养级指数(TLI)和有毒金属健康风险评估)从单一角度评估有毒金属污染或富营养化。此外,由于自然变化和人类活动造成的环境系统的随机性和模糊性,上述确定性方法可能会导致评估有偏差或不可靠。本文建立了一种模糊的湖泊综合健康评价方法(FCLHAM),以更全面,更准确地评估湖泊综合健康状况,该方法综合了富营养化和健康风险方面的考虑。为了测试和验证FCLHAM,从中国武汉市的143个湖泊中科学地选出21个湖泊作为研究案例,对它们的富营养状况和重金属构成的健康风险进行了调查和分析。据FCLHAM称,平均综合湖泊健康状况按以下顺序降低:L20(考虑风险水平)> L1-L17,L19,L21(中等风险水平)> L18(低风险水平)。根据结果​​,将湖泊分为三类:一般管理(L18),增强型管理(L1-L17,L19,L21)和优先级管理(L20)。如果武汉的143个湖泊通过“区域-区域功能”分类进行分类,则它们将被归为与具有相同类型的代表性湖泊相同的类别。至此,我们将武汉的所有湖泊归为这三种类型。根据每种类型的特征,针对每种类型的湖泊进行不同类型的管理的针对性方法是一种管理武汉许多湖泊的更有效方法。这种管理模式也为国内外城市湖泊环境管理提供了有效的参考。换句话说,根据FCLHAM,获得了基于湖泊特征分类的分级管理系统。

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