河岸渗滤系统净化再生水效果试验研究
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国家自然科学基金项目(51379209、51079149)


Experiment on Purification of Reclaimed Water by Simulated Riverbank Filtration System
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    摘要:

    以北京市清河再生水厂出水为研究对象,构建100cm土柱模拟河岸渗滤系统,研究长周期供水条件下,持续淹水与交替淹水落干2种补水方式下渗滤系统对再生水中有机物和总氮(TN)的净化效果及系统稳定性。通过3年的试验研究发现,持续淹水与交替淹水落干补水方式下,渗滤系统对再生水中有机物的平均去除率分别为40.5%和50.8%,交替淹水落干补水方式对有机物去除效果略优于持续淹水的情况。有机物的去除主要发生在溶解氧浓度较高、微生物数量最多的上部0~40cm土层范围内。2种补水条件下渗滤系统对有机物的去除率在年际间变化不大,系统净化性能稳定。2种补水方式下渗滤系统对TN的平均去除率分别为31.2%和80.7%,交替淹水落干补水方式对TN的去除效果明显优于持续淹水的情况。2种补水条件下渗滤系统对TN的去除率逐年增大,系统净化性能随时间呈增强趋势。试验期间,水温在15~31℃范围内变化时,2种渗滤系统对TN的去除率随温度的增大呈指数或对数趋势增加,当温度在30℃以上时,交替淹水落干补水方式下系统对TN的去除率最高可达90%以上。再生水经过河岸渗滤系统后,总氮和有机物能够得到有效的去除,再生水回补河湖对地下水污染的风险大幅降低。

    Abstract:

    Aiming to study the long-term efficiency and performance of chemical oxygen demand (COD) and total nitrogen (TN) removal in riverbank filtration system under different hydraulic conditions, a long term simulated riverbank filtration system was built by using soil columns supplied with reclaimed water from Qinghe reclaimed wastewater treatment plant. The results showed that the system was effective in removing COD, the average removal rates of COD under continuous wetting condition and wetting/drying condition were 40.5% and 50.8%, respectively, over three-year period. COD removal primarily occurred at the upper part of the soil column (0~40cm), where there was high dissolved oxygen content and a large amount of microorganism. The removal performance of COD was improved in the wetting/drying column with relatively higher dissolved oxygen (DO) concentration under the unsaturated condition. And performance for the annual average COD removal kept stable under both conditions. The much higher removal rate of TN was obtained under the wetting/drying condition (80.7%) than that under the saturated condition (31.2%). Performance for TN removal under both conditions was increased gradually year by year. Temperature was one of the impact factors for TN removal in riverbank filtration system. The results showed that the removal rate of TN was increased exponentially under continuous wetting condition and increased logarithmically under wetting/drying condition with the temperature ranging from 15℃ to 31℃, respectively. The TN removal efficiency could reach higher than 90% as the temperature was higher than 30℃. The results can provide important information and basis for reclaimed water reuse for rivers and lakes.

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潘维艳,普薇如,黄权中,黄冠华.河岸渗滤系统净化再生水效果试验研究[J].农业机械学报,2017,48(5):237-243.

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  • 收稿日期:2016-09-09
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  • 在线发布日期: 2017-05-10
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