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DESIGN CONSIDERATIONS AND APPLICATIONS FOR WETLAND TREATMENT OF HIGH-NITRATE WATERS

机译:高硝酸盐水域湿地处理的设计注意事项及应用

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Nitrate contamination is a serious problem worldwide. By providing an ample supply of carbon and an anaerobic environment, wetlands are a valuable low technology for treating nitrate-contaminated waters with low organic carbon concentrations. Denitrification is apparently limited by the C:N ratio, with ratios >5:1 resulting in >90% nitrate removal efficiencies. The denitrification rate constant, V_(NO3), varies in direct proportion to carbon supply. Several novel or emerging applications of wetlands include renovation of nitrate-contaminated aquifers (a pump-and-treat strategy), denitrification of nitrified sewage effluents, and treatment of irrigation return flows. Treatment of dual sources is also discussed. In arid regions with limited supplies of high quality water, nitrate treatment wetlands may play a significant role in the development of water resources.
机译:硝酸盐污染是世界范围内的严重问题。通过提供充足的碳供应和厌氧环境,湿地是一种有价值的低技术,可用于处理有机碳浓度低的硝酸盐污染的水。反硝化显然受到C:N比率的限制,比率> 5:1导致> 90%的硝酸盐去除效率。反硝化速率常数V_(NO3)与碳的供应成正比变化。湿地的一些新的或新兴的应用包括对受硝酸盐污染的含水层的翻新(抽水处理策略),硝化污水的反硝化以及对灌溉回流的处理。还讨论了双重来源的处理。在高质量水供应有限的干旱地区,硝酸盐处理湿地可能在水资源开发中发挥重要作用。

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