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Irrigation with reclaimed water in an urban watershed and nutrient levels in adjacent streams

机译:在邻近溪流中的城市流域和营养水平中的再生水灌溉

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Reclaimed water, used commonly for lawn irrigation, can be a complicating factor for watershed managers addressing sources of nonpoint source pollution. This research examined concentrations of total nitrogen (TN) and total phosphorus (TP) in the reclaimed water effluent from the City of St. Petersburg wastewater treatment plant (WWTP) (secondary treatment), the Pinellas County WWTP (tertiary treatment), and four tributary sites in the highly urbanized Joe's Creek watershed in Pinellas County, Florida. Two of the four tributary sites are control sites (35-10 and 35-11). The Bonn Creek tributary is within the tertiary treatment service area, and Miles Creek tributary is within the secondary treatment service area. For the 6-year study period, results show that Bonn Creek's mean TN concentration of 0.92 mg/L was lower than Miles Creek's (1.077 mg/L), and both control sites were the lowest (0.66 mg/L and 0.71 mg/L, respectively). Similar results were found for TP concentrations. Bonn Creek's TP concentration was 0.084 mg/L slightly lower than Miles Creek's (0.096 mg/L), and both control sites were the lowest (0.064 mg/L and 0.07 mg/L, respectively). Potential TN and TP loadings from each WWTP to their service areas were calculated, as well as potential TN loadings to each landscape.Practitioner pointsWe investigated TN and TP concentrations from secondary and tertiary WWTPs and streams that receive runoff from two neighborhoods using reclaimed water from these plants for landscape irrigation.As expected, reclaimed water from the secondary WWTP had higher TN and TP concentrations.The surface water concentrations of TN and TP in the adjacent streams within the reclaimed service areas were higher than the concentrations at the control sites outside of the reclaimed service areas.The nitrogen applied to landscapes in the secondary WWTP reclaimed service area was ten times higher than the nitrogen applied to landscapes in the tertiary WWTP reclaimed service area.
机译:再生水,通常用于草坪灌溉,可以是处理非点源污染源来源的流域管理人员的复杂因素。该研究检查了来自圣彼得堡废水处理厂(WWTP)(二次治疗),Pinellas County WWTP(三级治疗)和四个佛罗里达州Pinellas County的高度城市化乔的小溪流域的支流网站。四个支流网站中的两个是控制位点(35-10和35-11)。 Bonn Creek支流位于高等教育服务区内,英里克里克支流位于二级治疗服务区内。对于6年的研究期,结果表明,波恩溪的平均浓度为0.92 mg / L低于Mars Creek(1.077 mg / L),并且两种控制位点最低(0.66 mg / L和0.71 mg / L. , 分别)。发现了类似的结果是针对TP浓度。 Bonn Creek的TP浓度为0.084 mg / L略低于Miles Creek(0.096 mg / L),并且两种控制位点都是最低(0.064mg / L和0.07 mg / L)。计算来自每个WWTP到其服务区域的潜在TN和TP加载,以及每个景观的潜在TN加载.PRACTINGER PAINSWE研究了来自二级和三级WWTP的TN和TP浓度,以及使用来自这些的再生水从两个社区接收径流的流用于景观灌溉的植物。预期的,来自二级WWTP的再生水具有较高的TN和TP浓度。再生服务区域内相邻流中的TN和TP的表面水浓度高于控制场外的浓度回收服务领域。应用于二级WWTP再生服务区的景观的氮气比第三届WWTP再生服务区的景观施加量高十倍。

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