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Potential for denitrification in sequencing batch constructed wetlands cultivated with T. latifolia and C. zizanioides

机译:序叶草和紫花苜蓿栽培的分批人工湿地排序的反硝化潜力

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Denitrification and uptake by plants in constructed wetlands (CWs) were studied. Nitrate was applied in CWs operated in batch mode. The systems received 50 g m(-3) NO3--N, and among six units, three received ethanol as carbon source. The experiment consisted of two main stages, with each one cycle time (t(c)) of 3 and 1 d. In an extra stage, the decay values of water variables were assessed. The range of nitrate-nitrogen removal (stage I) was 11.7-54.8% for CWs without ethanol and 98.0-99.9% for CWs receiving the external carbon source. During stage II, NO3--Nremovals were 3.6-15.7% for CWs without ethanol and 94.7-97.5% for CWs with ethanol addition. CWs were effective for removing nitrate, especially the planted systems. CWs cultivated with vetiver showed the best results in nitrogen removal. The addition of ethanol increased the denitrification efficiency, but increasing nitrite concentrations in the CWs should also be considered.
机译:研究了人工湿地中植物的反硝化作用和吸收能力。将硝酸盐应用于以批处理模式运行的连续波中。该系统接收50 g m(-3)NO3--N,在六个单元中,三个接收乙醇作为碳源。实验包括两个主要阶段,每个循环时间(t(c))为3和1 d。在另一个阶段,评估水变量的衰减值。对于没有乙醇的化工厂,硝酸盐脱氮的范围(第一阶段)为11.7-54.8%,接受外部碳源的化工厂为98.0-99.9%。在阶段II中,不含乙醇的连续水处理厂的NO3--N去除率为3.6-15.7%,添加乙醇的连续水处理厂为94.7-97.5%。连续水可有效去除硝酸盐,尤其是种植系统。用香根草栽培的连续水在脱氮方面表现出最好的效果。添加乙醇可提高反硝化效率,但也应考虑增加化学废物中亚硝酸盐的浓度。

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