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Atmospheric nitrogen loss factor (f) used in determining nitrogen-based municipal wastewater effluent irrigation rates: design and nitrogen-balance estimated f values

机译:用于确定基于氮的市政废水灌溉速率的大气氮损耗因子(F):设计和氮气平衡估计F值

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Design irrigation rates for treated municipal wastewater effluent (MWE) are usually determined from nitrogen (N) mass-balances, in which the fraction (f) of the total N in the MWE that is lost to the atmosphere is commonly obtained from US Environmental Protection Agency (USEPA) tabulated (design) values: 0.15-0.25 for secondary-treated effluents and 0.1 for tertiary-treated effluents. In 2011 and 2012, f values from an N balance in a tall fescue (Festuca arundinacea Schreb.) hay field in Central Pennsylvania were quantified and compared to the USEPA design f values. The grass field was spray-irrigated with MWE (C:N ratio = 0.04-0.2; near neutral pH, and 70-87% of the MWE-TN was NO3-N) at a rate of 5-cm wk(-1). Monthly N balances were calculated from April to September in the surface horizon of a Hagerstown soil. The f values of 0.05, 0.1, and 0.2 seemed appropriate for the months of May and June, August and September, and July, respectively. Positive fnb estimates and the logarithm of measured monthly N removal in the aboveground biomass (kg ha(-1)) were negatively correlated (R-2 = 0.99 for monthly mean air temperatures 20 A degrees C and R-2 = 0.2 for monthly mean air temperatures 20 A degrees C). The study's results suggest that existing design f values are likely less applicable especially due to the biological N-removal processes currently present in many wastewater treatment plants needing to meet effluent N limits. Thus, more studies to determine empirical f values in effluent irrigation are needed to refine design f values.
机译:对经处理的市政废水流出物(MWE)的设计灌溉速率通常由氮气(n)质量平衡决定,其中MWE中的总N的馏分(F)通常从美国环境保护中获得代理(USEPA)列表(设计)值:0.15-0.25用于二次处理过水物和0.1用于三级处理的流出物。 2011年和2012年,从一个高空(Festuca Arundinacea Schreb)的N个平衡的F值被定量了宾夕法尼亚州中部的干草田,并与USEPA设计F值进行了比较。用MWE喷射草地(C:N比= 0.04-0.2;在中性pH附近,70-87%的MWE-TN为NO 3-N),以5cm WK(-1) 。每月N平衡于4月至9月在哈特维斯敦土壤的地面地平线中计算。 F值为0.05,0.1和0.2似乎分别适用于5月和6月,8月和9月和7月的月份。正面FNB估计和测量的月度N n在地上生物质(Kg Ha(-1))中的测量对数(r-2 = 0.99用于每月平均气温20°C和R-2 = 0.2,每月平均值空气温度& 20℃)。该研究的结果表明,现有的设计F值可能不太适用于当前存在于需要满足流出物N限制的许多废水处理厂中的生物n除去方法。因此,需要更多的研究来确定流出物灌溉中的经验F值来细化设计f值。

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