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MODELING OF BIOMANIPULATION IN SHALLOW, EUTROPHIC LAKES - AN APPLICATION TO LAKE BLEISWIJKSE ZOOM, THE NETHERLANDS

机译:浅埋,富营养湖中生物素描的建模 - 荷兰湖Bleiswijkse Zoom的应用

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摘要

The prediction of temporal variations of biota following biomanipulation measures in lakes is of paramount importance in view of water quality management. The temporal variations of phytoplankton biomass as chlorophyll-a and transparency as Secchi depths measurements are studied in the Lake Bleiswijkse Zoom, The Netherlands with a comprehensive biological model. In the formulation of the biological model, phytoplankton as several species, zooplankton, detritus, planktivorous and benthivorous fish and piscivorous fish are considered to be the major contributing biota for the food web manipulation. The biological model enumerates the species compositions at a given time taking biological, physical and meteorological processes into account. Reduction of almost all planktivorous fish and 85% of benthivorous fish results in increase in transparency, decrease in algal biomass and decrease in resuspended inorganic matters leading to an environmental sound lake ecosystem. The model also provides useful insights into positive and negative interrelationships among biota in the ecosystem. In other words, from the biomanipulation point of view, poor understanding of interactions among biota and hence, uncertainties of their accurate predictions may lead to controversial evidences. [References: 37]
机译:考虑到水质管理,湖泊生物尺寸措施后生物污染措施之后的临时变化预测是至关重要的。在荷兰湖Bleiswijkse Zoom,荷兰的浮游生物测量作为叶绿素的叶绿素生物量作为叶绿素-A和透明度的时间变化。在制定生物学模型中,浮游植物作为几种物种,浮游植物,碎屑,血糖和嗜血症鱼和品种鱼类被认为是食品Web操纵的主要贡献生物群。生物学模型在给定时间枚举物种组合物考虑到生物,物理和气象过程。降低几乎所有血糖鱼和85%的孤独的鱼类导致透明度的增加,藻类生物量减少,重新悬浮的无机事项导致环境声湖生态系统的透明度降低。该模型还提供了在生态系统中Biota中的积极和负相互关系的有用见解。换句话说,从生物化的角度来看,对生物杉之间的相互作用的理解差,他们的准确预测的不确定性可能导致争议的证据。 [参考:37]

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