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Eichhornia azurea decomposition and the bacterial dynamic: an experimental research

机译:凤眼莲分解与细菌动力学:实验研究

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摘要

Organic decomposition is a complex interaction between chemical, physical and biological processes, where the variety of aquatic vascular plants is essential for the trophic dynamics of freshwater ecosystems. The goal of this study was to determine the aquatic macrophyte Eichhornia azurea (Sw.) Kunth decomposition rate, the time relation with the limnological parameters, and whether this relationship is a result of decomposition processes. To that end, we collected water and leaves of E. azurea in Surf Leopoldo, PR. The experiment consisted of two treatments: 25 containers with 450 mL of water and 0.8 g of biomass dry weight were used with or without the addition of macrophytes. Samples were collected in triplicate at times 0, 3 h, 6 h, 12 h, 24 h, 72 h, 120 h, 168 h and 240 h. When the container was removed, the plant material was dried in an oven. After 48 h, the material was measured to obtain the final dry weight. Analyses of pH, conductivity, dissolved oxygen, total phosphorus N-ammonia (NH4), soluble reactive phosphorus (PO4) and dissolved organic carbon were performed, and the decomposition rate was calculated. The results showed significant temporal variation of limnological parameters in the study. Additionally, dissolved oxygen, conductivity, dissolved organic carbon and total phosphorus were correlated with the dry weight of the biomass, suggesting that E. azurea decomposition significantly interferes with the dynamics of these variables.
机译:有机分解是化学,物理和生物过程之间的复杂相互作用,其中各种水生维管植物对于淡水生态系统的营养动态至关重要。这项研究的目的是确定水生大型植物凤眼兰(Swich)的Kunth分解速率,与植物学参数的时间关系,以及这种关系是否是分解过程的结果。为此,我们在PR Surf Leopoldo收集了水和树叶的E. azurea。该实验由两种处理组成:使用25个装有450 mL水和0.8 g生物质干重的容器,添加或不添加大型植物。在时间0、3、6、12、24、72、72、120、168和240小时一式三份收集样品。当取出容器时,将植物材料在烤箱中干燥。 48小时后,测量材料以获得最终干重。进行pH,电导率,溶解氧,总磷N-氨(NH4),可溶性反应性磷(PO4)和溶解有机碳的分析,并计算分解速率。结果表明,研究中的语言参数存在明显的时间变化。此外,溶解氧,电导率,溶解有机碳和总磷与生物量的干重相关,这表明天青分解大肠杆菌显着干扰了这些变量的动力学。

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