首页> 外文会议>International Plant Nutrition Colloquium; 2005; Beijing >Contribution of aquatic plants to ienitrification in lakes and marshes
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Contribution of aquatic plants to ienitrification in lakes and marshes

机译:水生植物对湖泊和沼泽中硝化作用的贡献

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Denitrifying bacteria have been found in biofilms on aquatic plant surfaces, but so far it is still very difficult to measure denitrification activity in-situ. It is important to understand the denitrification activity in these biofilms in the field and to be able to quantify nitrogen (N) losses through denitrification. In this study, we conducted an in-situ field experiment to measure denitrification activity by aquatic plants and to assess N dynamics in this controlled experiment. We used a special measurement device and acetylene inhibition technique. The experiment was carried out at the ponds connected to the Lake Kasumigaura, the second largest freshwater lake in Japan. The result of the in-situ field experiments showed that higher N_2O concentrations were observed in chambers with vegetation than without vegetation. Denitrification activity varied seasonal, and the ratio of NO_3~- removal by denitrification varied seasonal too. The result of incubation experiments showed that withered plants surface had a higher denitrification activity than fresh plant surfaces. Withered plant surfaces also had more denitrifying bacteria than fresh plant surface. It is suggested that presence of aquatic plant on lakes and marshes are important for N elimination from lakes and marshes.
机译:在水生植物表面的生物膜中发现了反硝化细菌,但到目前为止,仍然很难现场测量反硝化活性。重要的是要了解这些生物膜在该领域的反硝化活性,并能够量化通过反硝化而产生的氮(N)损失。在这项研究中,我们进行了现场实验,以测量水生植物的反硝化活性,并评估了该对照实验中的N动态。我们使用了一种特殊的测量装置和乙炔抑制技术。该实验是在与日本第二大淡水湖霞浦湖相连的池塘中进行的。原位野外实验的结果表明,在有植被的室内,观察到的N_2O浓度要高于没有植被的室内。反硝化活性随季节变化,而反硝化去除NO_3〜-的比例也随季节变化。孵化实验的结果表明,枯萎的植物表面比新鲜的植物表面具有更高的反硝化活性。干燥的植物表面也比新鲜的植物表面具有更多的反硝化细菌。建议在湖泊和沼泽中存在水生植物对于从湖泊和沼泽中去除氮很重要。

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