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首页> 外文期刊>Korean Journal of Biological Sciences >Nutrient Leaching from Leaf Litter of Emergent Macrophyte (Zizania latifolia) and the Effects of Water Temperature on the Leaching Process
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Nutrient Leaching from Leaf Litter of Emergent Macrophyte (Zizania latifolia) and the Effects of Water Temperature on the Leaching Process

机译:新兴大型植物(Zizania latifolia)叶片凋落物的养分淋溶及水温对淋溶过程的影响

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摘要

To quantify nutrient loading from emergent macrophytes through leaching in the littoral zones of Paldang Reservoir, we conducted incubation experiments using leaf litter of the emergent macrophyte, Zizania latifolia. To separate the leaching process from microbial decay, we used HgCI_2 to suppress microbial activity during the experiment. We measured electric conductivity, absorbance at 280 nm, total nitrogen and dissolved inorganic nitrogen, total phosphorus and soluble reactive phosphorus, Na, K, Mg and Ca amounts in leaf litter and in water. In addition, we examined the effects of water temperature and ion concentrations of ambient water on the leaching process. A total of 6% of the initial ash- free dry mass of leaf litter was lost due to leaching during incubation (four days). Electric conductivity and A_(280) continued to increase and saturate during the incubation. To compare reaching rates of different nutrients, we fitted leaching dynamics with a hyperbolic saturation function [Y=A X X/(B+X)]. From these fittings, we found that ratios of leaching amounts to nutrient concentration in the litter were in the order of K > Na > Mg > P > Ca > N. Leaching from leaf litter of Z latifolia was dependent on water temperature while it was not related with ion concentrations in the ambient water. Our results suggest that the leaching process of nutrients, especially phosphorus, from aquatic macrophytes provides considerable contribution to the eutrophication of the Paldang Reservoir ecosystem.
机译:为了定量从新兴植物中通过淋洗在帕当水库沿海地区的养分负荷,我们使用新兴植物Zizania latifolia的叶子凋落物进行了孵化实验。为了将浸出过程与微生物腐烂分开,我们在实验中使用了HgCl_2来抑制微生物活性。我们测量了叶片凋落物和水中的电导率,在280 nm处的吸光度,总氮和溶解的无机氮,总磷和可溶性反应性磷,Na,K,Mg和Ca的含量。此外,我们检查了水温和环境水中离子浓度对浸出过程的影响。由于孵化过程(四天)的浸出,总共损失了6%的初始初始无灰干枯凋落物。在孵育过程中,电导率和A_(280)继续增加并饱和。为了比较不同养分的达到率,我们用双曲线饱和函数[Y = A X X /(B + X)]拟合了浸出动力学。从这些拟合中,我们发现凋落物中淋溶量与养分浓度的比率为K> Na> Mg> P> Ca>N。与周围水中离子浓度有关。我们的结果表明,从水生植物中浸出的养分,特别是磷,为帕当水库生态系统的富营养化做出了重要贡献。

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