首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Numerical assisted assessment of vadose-zone nitrogen transport under a soil moisture controlled wastewater SDI dispersal system in a Vertisol
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Numerical assisted assessment of vadose-zone nitrogen transport under a soil moisture controlled wastewater SDI dispersal system in a Vertisol

机译:土壤水分控制废水SDI分散系统在Vertisol中渗流区氮运移的数值辅助评估

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摘要

A real-time soil moisture controlled wastewater SDI dispersal system was tested in a Vertisol for approximately one year to regulate soil nitrogen from an artificially prepared septic effluent. The control strategy was to allow wastewater hydraulic disposal only when the drain field moisture level was near field capac-ity. Due to limited field sampling and resulting uncertainty in rate of field nitrification/denitrification, numerical simulation (HYDRUS 2D) was utilized to assess system control over nitrogen concentrations in the drain field. Using nitrification/denitrification rates estimated from cumulative frequency distributions (CFD), simulated drain field moisture levels were found statistically lower than actual field observations over the entire year, suggesting persistent drain field soil swelling which is theoretically favorable to denitrification. Short- and long-term simulations suggest that denitrification level should be 50% higher than 50% CFD (first-order reaction, 0.042 day~(-1)). Although no conclusive results are presented, this study indicates a potential management approach that favors denitrification by regulating nitrogen application using soil moisture. Further study is required to optimize soil moisture to increase wastewater hydraulic disposal while restricting nitrogen concentrations within the managed soil horizon.
机译:在Vertisol中测试了实时土壤水分控制废水SDI分散系统大约一年,以调节来自人工制备的化粪池出水的土壤氮。控制策略是仅在排水田含水量接近田间容量时才允许废水水力处理。由于有限的田间采样以及田间硝化/反硝化速率的不确定性,数值模拟(HYDRUS 2D)被用来评估排水田中氮浓度的系统控制。使用根据累积频率分布(CFD)估算的硝化/反硝化速率,在统计上发现模拟的流失场湿度在统计上低于整年的实际观测值,表明流失场土壤持续膨胀,这在理论上有利于反硝化。短期和长期模拟表明,反硝化水平应比50%CFD高50%(一级反应,0.042天〜(-1))。尽管没有给出结论性的结果,但这项研究表明了一种潜在的管理方法,该方法通过利用土壤水分调节氮的施用而有利于反硝化作用。需要进一步研究以优化土壤湿度,以增加废水的水力处理能力,同时将氮浓度限制在受控土壤层内。

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