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扰动强度对菹草浸泡过程中氮磷碳释放的影响
摘要点击 2943  全文点击 1890  投稿时间:2010-08-04  修订日期:2010-10-09
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中文关键词  菹草  浸泡  扰动      高锰酸盐指数  释放
英文关键词   Potamogeton crispuss  soaking  disturbance  nitrogen  phosphorus  permanganate index(PI)  release
作者单位
卢少勇 中国环境科学研究院国家环境保护湖泊污染控制重点实验室100012 
陈建军 中国环境科学研究院国家环境保护湖泊污染控制重点实验室100012华东师范大学资源与环境科学学院, 上海200062 
覃进 北京科技大学土木与环境工程学院, 北京100083 
金相灿 中国环境科学研究院国家环境保护湖泊污染控制重点实验室100012 
黄国忠 北京科技大学土木与环境工程学院, 北京100083 
黄民生 华东师范大学资源与环境科学学院, 上海200062 
中文摘要
      以在北京前海采集的菹草(Potamogeton crispus)为实验材料,研究了在不同扰动强度下菹草残体浸泡过程中氮磷及高锰酸盐指数(PI)的释放特征和规律.结果表明,扰动可以加快菹草中总磷(TP)和PI的释放,在240 h的高强度扰动下,水中的氨氮(NH+4-N)和总氮(TN)出现了显著(ANOVA, p<0.05)升高;而处理240 h后,水溶液中TP和PI显著降低(ANOVA, p<0.05).每L水中干物质量为2.13 g菹草,在达到释放平衡时,单位质量的菹草释放到水中的PI、TN、TP量分别为35、5.1、4.1 mg·g-1;菹草浸泡时,TN、TP、PI的释放比例:TP最高,PI最低.室内模拟实验结果表明,菹草残体释放到水体中的氮、磷、碳,其中磷对水体造成的污染负荷最高;磷是引起湖泊富营养化的关键因子之一,因此湖泊中沉水植物衰亡后残体内的磷释放和迁移是今后相关研究工作的重点.
英文摘要
      Influence of various disturbance intensities on nitrogen, phosphorus and permanganate index (PI) release of Potamogeton crispus were investigated during the plant soaking in water, and the plant materials were collected in an urban lake of Beijing. Results showed that more rapid release of TP and PI from Potamogeton crispus were caused by disturbance, NH+4-N and TN in water were significantly increased (ANOVA, p<0.05) under the condition of high disturbance (120 r/min) for 240 h. However, PI and TP were significantly decreased (ANOVA, p<0.05) after 240 h disturbance in all treatments. When the release equilibrium of 2.13 g dry mass Potamogeton crispus in one liter of water was reached, the PI, TN, and TP released from unit mass Potamogeton crispus were 35, 5.1 and 4.1 mg·g-1, respectively. The release ratio of TP from Potamogeton crispus was the highest, while the release ratio of PI was the lowest. The simulated experiment results showed that the highest pollution load to water released from Potamogeton crispus was the TP among the three nutrients. Phosphorus is one of the key factors which causing water eutrophication in lake, thus after submerged plants declining in lake, the field research of phosphorus release and migration from submerged plants into water is the focus of future research work.

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