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Assessing changes of trophic interactions during once anthropogenic water supplement in Baiyangdian Lake

机译:百阳湖持续人为水补水中营养互动变化

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Baiyangdian, located in Hebei province, is the biggest freshwater lake in North China. Since the 1960s, due to increasing human activities and climate change, this area has suffered from markedly shrinking and drying up several times. In current situation, anthropogenic water supplement plays a very important role in maintain this wetland's existence and development, and from 1981 to 20O3 this approach had been already carried out 15 times. But until now there is few study in the aspect of whole ecosystem level responded to anthropogenic water supplement. In this study we used Ecopath model to analyze the changes of ecosystem's structure and function in connecting with once water supplement event which started in middle September 2009. Based on field experimental data in September and October 2009, two mass-balance models of the Baiyangdian Lake were developed to compare differences in energy flow process, trophic composition and other system character indexes during this two periods. As the results show, from September to October, the biomass proportion of first trophic level distinctively increased but in higher trophic level mis proportion declined, meanwhile the total primary productivity/total respiration (TPP/R) increased by 12.07%, the system omnivorous coefficient (SOI), Finn 's cycling index (FCI), and the average path length decreased by 4.16%, 20.13%, and 23.4% respectively. Most of the change directions of the indexes are contrary to the natural processes of ecosystem development, which meant that the interactions of organics are weakened, system maturity is degraded further and the ecosystem became more vulnerable to external disturbance after this time of anthropogenic water compensation.
机译:位于河北省的白阳迪是华北最大的淡水湖。自20世纪60年代以来,由于人类活动增加和气候变化,这一领域遭受了多次萎缩和干燥。在目前的情况下,人为水补充剂在维持这个湿地的存在和发展方面发挥着非常重要的作用,从1981年到2003年,这种方法已经进行了15次。但到目前为止,整个生态系统水平的方面仍有很少的研究响应人为水补充剂。在这项研究中,我们使用了EcoPATH模型来分析了生态系统结构的变化和在2009年9月中旬开始的水补充事件的连接中。2009年9月和10月的实地实验数据,白阳湖的两个大量衡量模型在这两个时段期间,开发了比较能量流程,营养机构和其他系统角色指标的差异。随着结果表明,从9月到10月,第一营养水平的生物量比例明显增加,但在较高的营养水平MIS比例下降,同时总初级生产率/总呼吸(TPP / R)增加了12.07%,系统杂种系数增加了12.07% (SOI),芬恩的循环指数(FCI),平均路径长度分别降低了4.16%,20.13%和23.4%。索引的大多数变化方向与生态系统发展的自然过程相反,这意味着有机体的相互作用被削弱,系统成熟度进一步降低,并且在这次当时的人为水补偿后,生态系统变得更容易受到外部干扰的影响。

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