首页> 外文期刊>Annales de Limnologie: International journal of limnology >The role of tubificid worms (Limnodrilus hoffmeisteri) in sediment resuspension:a microcosm study
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The role of tubificid worms (Limnodrilus hoffmeisteri) in sediment resuspension:a microcosm study

机译:微小蠕虫(Limnodrilus hoffmeisteri)在沉积物重悬中的作用:微观研究

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Sediment resuspension is an important internal lake process in regulating nutrient cycling and ecosystem structure. Tubificid worms are widely and abundantly distributed in freshwater ecosystems and are able to alter the sediment characteristics. This study was conducted to verify the hypothesis that the alteration of sediments by tubificids may substantially influence the sediment resuspension process. Specifically, we investigated the influence of Limnodrilus hoffmeisteri (Tubificidae) on sediment resuspension using an apparatus designed to simulate the sediment resuspension process in Lake Taihu (China). We examined L. hoffmeisteri according to its density (30 000 ind.mx2) in Lake Taihu and simulated the light (3.2 m.sx1), moderate (5.1 m.sx1) and strong (8.7 m.sx1) wind processes present in Lake Taihu. Tubificids loosened the sediment through their feeding and defecation activities and increased the sediment water content. The appearance of tubificids increased the suspended solids (SS) in a 1.6 m water column under all three wind processes. During the sedimentation process, SS decreased rapidly in both the control and tubificid treatments. The total SS in the water column was significantly increased by tubificids and it changed significantly with time. In addition, the small size particles of the SS in the tubificid treatment were higher than that in the control. So, the appearance of tubificid worms (L. hoffmeisteri) enhanced sediment resuspension and raised the proportion of small size particles in SS.
机译:沉积物重悬是调节营养循环和生态系统结构的重要内部湖泊过程。轮虫蠕虫广泛分布于淡水生态系统中,能够改变沉积物的特征。进行这项研究是为了验证以下假设,即小管虫对沉积物的改变可能会严重影响沉积物的重悬过程。具体而言,我们使用旨在模拟太湖(中国)中泥沙重悬过程的设备,研究了虎尾草(Timificidae)对泥沙重悬的影响。我们根据太湖中的霍夫梅斯特氏菌密度(30000 ind.mx2)进行了检查,并模拟了湖中存在的轻风(3.2 m.sx1),中风(5.1 m.sx1)和强风(8.7 m.sx1)。太湖塔比维奇人通过其进食和排便活动使沉积物疏松,并增加了沉积物的水分含量。在所有三个风过程中,管孔的出现增加了1.6 m水柱中的悬浮固体(SS)。在沉淀过程中,对照和小管处理中SS均迅速下降。水柱中的总SS显着增加,并随时间而显着变化。另外,在微管处理中SS的小尺寸颗粒比对照中的小。因此,管状蠕虫(L. hoffmeisteri)的出现增强了沉积物的悬浮,并提高了小颗粒在SS中的比例。

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