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Assessing the health of coastal marine ecosystems: A holistic approach based on sediment micro and meio-benthic measures

机译:评估沿海海洋生态系统的健康:一种基于沉积物微观和中层底测量的整体方法

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摘要

We applied a thermodynamic and network analysis on the micro and meio-benthic community in a wide coastal area of the southern Adriatic Sea in order to assess ecosystem health and to identify useful descriptors of environmental quality. The analysis of the micro and meio-benthic system in terms of organic matter, bacteria, microphytobenthos and meiofauna reflected changes occurring in the trophic state of benthic ecosystems and provided a tool for comparison between different environments. The biopolymeric carbon load never reached very high concentrations. Within these trophic conditions, ascendency, exergy and specific exergy resulted strictly related to each other and an increase of all the goal functions was observed at increasing resource availability. The analysis of trophic efficiency was particularly sensitive to assess the environmental state in term of sustaining complex structure and resource exploitation. In particular, specific exergy, ascendency/capacity and Finn's cycling index showed lowest values in more anthropogenic areas and can be proposed as candidate indices for the health assessment of coastal ecosystems.
机译:为了评估生态系统健康并确定有用的环境质量指标,我们对亚得里亚海南部广大沿海地区的微型和中层底栖动物群落进行了热力学和网络分析。通过对有机物,细菌,微底栖动物和藻类动物的微底栖生物系统的分析,反映了底栖生态系统的营养状态发生的变化,并为不同环境之间的比较提供了一种工具。生物聚合物的碳载量从未达到很高的浓度。在这些营养条件下,上升,火用和比火用相互之间严格相关,并且随着资源可用性的增加,所有目标功能也都增加了。营养效率的分析对维持复杂结构和资源开发而言对评估环境状况特别敏感。特别是,特定的火用度,上升/能力和芬恩循环指数在更多的人为区域显示出最低的值,可以建议作为沿海生态系统健康评估的候选指数。

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