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城市重污染河道上覆水氮营养盐浓度及DO水平对底质氮释放的影响
摘要点击 2857  全文点击 2336  投稿时间:2006-01-18  修订日期:2006-04-17
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中文关键词  底泥  氮释放  溶氧水平  营养水平  上覆水
英文关键词  sediment  nitrogen release  DO level  nutrient level  overlying water
作者单位
蒋小欣 河海大学交通与海洋工程学院南京210098 
阮晓红 河海大学水文水资源与水利工程科学国家重点实验室南京210098 
邢雅囡 河海大学环境科学与工程学院,南京210098 
赵振华 河海大学水文水资源与水利工程科学国家重点实验室南京210098 
中文摘要
      利用模拟试验方法, 研究和探讨了苏州市古城区重污染河道上覆水的氮营养盐浓度及DO水平对河道底泥内源氮释放的影响.结果表明:① 上覆水体的氮营养盐水平可对底泥中氮营养盐的释放程度(即释放速率和释放量)产生影响,氮营养盐含量低的上覆水体有利于底泥中氮特别是氨氮的释放(外城河与苗家河2种处理的累积释放量差值可达6 mg/kg),相反,则不利于氨氮的释放.故当氮营养盐含量较低的外城河水进入古城区河道时,有可能引起内城河道中底泥氨氮的大量释放,这种情况在调水过程中更为明显;②溶解氧是控制底泥氮释放规律的重要因素,其对氨氮和硝态氮释放的影响呈非线性,厌氧条件能加速底泥氨氮的释放,好氧则对其释放产生抑制,故保持河道水体中适当的溶解氧可有效抑制底泥中氨氮等释放造成的污染.
英文摘要
      The release of nitrogen compounds from river sediment with different nutrient levels and dissolved oxygen (DO) statuses of overlying water that sampled from the Suzhou City were studied by simulative method. The results indicate that: ① The nutrient status of overlying water may affect the release degree (release velocity and amount) of nutrient in sediment. The release of nitrogen compounds from sediment becomes easier with the decreasing of nutrient concentration in overlying water (the difference between the accumulated release amounts of sediment from outer moat and Miaojia River reached 6 mg/kg), while it becomes difficult when nutrient concentration is increasing. Therefore, when the water from the outer moat with low nutrient concentration flowing into the inner channels, it can induce the rapid release of nutrients from sediment. This situation is more significant during water diversion process. ② DO is an important factor that affected the release rules of nitrogen compounds from sediment. The effects of DO on the release of ammonium and nitrate show non-linear characteristics. The release amount of ammonium was increased under anaerobic condition and decreased under aerobic condition. Therefore, maintaining appropriate DO level of overlying water may effectively control the release of the organic matter and nitrogen compounds, such as ammonium.

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