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首页> 外文期刊>Journal of Environmental Science and Health. A >Behavior of Typha angustifolia L. in a free water surface constructed wetlands for the treatment of swine wastewater
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Behavior of Typha angustifolia L. in a free water surface constructed wetlands for the treatment of swine wastewater

机译:香蒲在自由水面人工湿地中处理猪废水的行为

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The objective of this study was to evaluate the behavior of Typha angustifolia L. in nitrogen retention in a Free Water Surface Constructed Wetland (FWS) for the swine wastewater treatment over a three-year operating period. Results show that the behavior of Typha angustifolia L. in a FWS for treatment of swine wastewater is affected by nitrogen concentration, seasonal variation and plant establishment in the system. Indeed, the application of Nitrogen Loading Rates (NLR) between 7.1-14.3 kg TN/ha-d removes 40% of Total Nitrogen (TN), where the maximum removal (20-40%) takes place in the spring-summer seasons. However, concentrations higher than 120.3 mg NH_4+-N/L significantly decrease (P = 0.004) diametrical growth by 55%. However, it was possible to estimate that NLR >14.3 kg TN/ha-d increased biomass production and plant uptake in Typha angustifolia L. during the period analyzed. Additionally, aboveground biomass values were between 1.509.6-2.874.0 g/m~2 and nitrogen uptake 27.4-40.8 g/m~2, where this last value represents 29% of the TN applied during the study. Finally, the TN accumulation in sediments represents less than 2% of the TN incorporated during this period. These results show that an increase of 50% of the TN in sediments increases plant abundance in 73%, which is related to the mineralization processes favored in the system during the last year of operation.
机译:这项研究的目的是评估香蒲在三年的经营期内在自由水面人工湿地(FWS)中用于养猪废水处理中的氮滞留行为。结果表明,系统中氮浓度,季节变化和植物的建立都影响香蒲中Fys Tygust angustifolia L.的行为。的确,氮负荷率(NLR)在7.1-14.3 kg TN / ha-d之间的应用可去除40%的总氮(TN),其中最大去除量(20-40%)发生在春夏季节。但是,高于120.3 mg NH_4 + -N / L的浓度会使直径增长显着降低(P = 0.004)55%。但是,有可能估计,在分析期间,香蒲的NLR> 14.3 kg TN / ha-d增加了生物量产量和植物吸收。此外,地上生物量值在1.509.6-2.874.0 g / m〜2之间,氮吸收量为27.4-40.8 g / m〜2,其中最后一个值代表研究期间施用的总氮的29%。最后,沉积物中总氮的积累少于该时期掺入总氮的2%。这些结果表明,沉积物中总氮的50%的增加使植物丰度提高了73%,这与系统在运行的最后一年中有利于该系统的矿化过程有关。

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