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Nutrient Removal in Wetlands During Intermittent Artificial Aeration

机译:间歇人工曝气过程中湿地的养分去除

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In a pilot-scale study, the contribution of intermittent artificial aeration to nitrogen and phosphorus removal in three (i.e., aeration in the middle of the substrate, aeration at the bottom of the substrate, nonaerated substrate) subsurface vertical-flow constructed wetlands planted with Typha latifolia L. (cattail) was tested with eutrophic river water in Tianjin (China). In contrast with the nonaerated wetland, aeration enhanced ammonia–nitrogen, total nitrogen, soluble reactive phosphorus, and total phosphorus removal: 10.1, 4.7, 10.2, and 8.8% for aeration in the middle, and 25.1, 10.0, 7.7, and 7.4% for aeration at the bottom of the substrate, respectively. Analysis of above-ground plant biomass indicated that intermittent aeration restrains the increase in biomass, but stimulates assimilation of nitrogen and phosphorus into stems and leaves. Additional total nitrogen removal of 116 kg N/ha and 126 kg N/ha by harvested above-ground T latifolia biomass for intermittent artificial aeration in the middle and at the bottom of the wetland substrate, respectively, was observed. Outflow water quality of aerated subsurface vertical-flow wetlands was better than the one in the nonaerated wetlands during the whole period of the test run. Artificial aeration improved nitrogen and phosphorus removal, especially during the very hot month of August.
机译:在一项中试研究中,间歇性人工通气对以下三种人工湿地的垂直下渗人工湿地的贡献(即,基质中部的通气,基质底部的通气,未充气的基质)为三者去除氮和磷的贡献。香蒲(香蒲)在天津(中国)用富营养化的河水进行了测试。与未充气的湿地相比,通气提高了氨氮,总氮,可溶性反应性磷和总磷的去除率:中部通气提高了10.1、4.7、10.2和8.8%,中度通气提高了25.1、10.0、7.7和7.4%分别在基板底部进行曝气。对地上植物生物量的分析表明,间歇通气抑制了生物量的增加,但刺激了氮和磷吸收到茎和叶中。通过在湿地基质中部和底部进行间歇性人工通气,收获了地面上的紫叶生物质,分别去除了116 kg N / ha和126 kg N / ha的总氮。在整个试验过程中,充气的地下垂直流湿地的出水水质优于未充气的湿地。人工曝气改善了氮和磷的去除,特别是在八月的炎热月份。

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