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Net nutrient uptake in the White River, downstream of a municipal wastewater treatment plant.

机译:市政废水处理厂下游的怀特河净养分吸收量。

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摘要

Wastewater treatment plays a crucial role in preserving water quality in receiving streams; however, continuous nutrient enrichment diminishes a river's ability to take up and transform nutrients. The longitudinal gradient in nutrient concentrations downstream from a wastewater treatment plant (WWTP) effluent discharge can be used to evaluate nutrient retention and more specifically the net nutrient uptake length. Nutrient retention can be analyzed by comparing the input to output nutrient load of a study reach. The net nutrient uptake length is an average distance that nutrients travel in the dissolved inorganic form before sediment or biotic assimilation occurs. The objectives of this study were to: (i) determine if the Paul R. Noland WWTP in Fayetteville, AR affects water quality among differing river discharges of the White River, AR, (ii) determine the fate and transport (i.e. retention efficiency) of nutrients added in the WWTP effluent, and (iii) determine if the retention efficiency of nutrient uptake is correlated with water quality parameters. A two-year study (2006--2007) was conducted along a 6.1-km reach of the White River. The fate and transport of added nutrients were examined by comparing nutrient load inputs to outputs and by using the nutrient spiraling framework for calculating net nutrient uptake lengths. The WWTP effluent discharge increased stream nitrite, soluble reactive phosphorus, and total organic carbon concentrations as well as conductivity. Increasing river discharge raised dissolved oxygen concentrations and turbidity, but lowered temperature, conductivity, and total organic carbon concentrations. Significant interactions between site location and river discharge were observed with nitrate, total nitrogen, total phosphorus, and chloride concentrations. The longitudinal pattern in nutrient concentrations fits the net nutrient uptake model only 33% of the time. Net nutrient uptake lengths were inconsistent for nitrate, ammonium, or soluble reactive phosphorus. Interpretations for nitrate and soluble reactive phosphorus suggested that the fluvial channel acted as both a sink and a source of nutrients, but the channel always acted as a sink for ammonium. When retention of nutrients was analyzed by the whole-study-reach approach, only the mean ammonium retention coefficient was numerically different from zero suggesting that only 12% of added ammonium was retained in the study reach. The effluent discharge increased the concentrations of several water quality parameters, and it appears the long-term enrichment has rendered the immediate-downstream reach ineffective as a nutrient sink. Nutrients added in the WWTP discharge were transported downstream with little to no uptake or transformation before reaching Beaver Lake.
机译:废水处理在保持接收溪流的水质方面起着至关重要的作用。但是,持续的养分富集会削弱河流吸收和转化养分的能力。废水处理厂(WWTP)废水排放下游的养分浓度的纵向梯度可用于评估养分保留,尤其是净养分吸收长度。可以通过比较研究范围的输入养分和输出养分来分析养分保留。净养分吸收长度是养分以沉积的无机物或生物同化前以溶解的无机形式传播的平均距离。这项研究的目的是:(i)确定阿拉斯加州费耶特维尔市的Paul R. Noland污水处理厂是否影响着阿拉斯加州怀特河不同河道之间的水质,(ii)确定命运和运输(即保留效率)污水处理厂废水中添加的养分的数量;(iii)确定养分吸收的保留效率是否与水质参数相关。沿着怀特河6.1公里的河段进行了为期两年的研究(2006--2007)。通过将养分负荷输入与输出进行比较,并使用养分螺旋框架计算净养分吸收长度,来检查添加养分的结局和运输。污水处理厂的废水排放量增加了亚硝酸盐流,可溶性反应性磷,总有机碳浓度以及电导率。不断增加的河流流量增加了溶解氧的浓度和浊度,但降低了温度,电导率和总有机碳浓度。在硝酸盐,总氮,总磷和氯化物浓度下,观察到了地点和河流流量之间的显着相互作用。营养素浓度的纵向模式仅在33%的时间内适合净营养素吸收模型。硝酸盐,铵盐或可溶性反应性磷的净养分吸收长度不一致。对硝酸盐和可溶性反应性磷的解释表明,河流通道既充当营养物的吸收源,又充当营养物的来源,但该通道始终充当铵盐的吸收源。当通过全研究覆盖方法分析养分保留时,只有平均铵保留系数在数值上不同于零,这表明研究范围仅保留了12%的添加铵。废水排放增加了几个水质参数的浓度,并且似乎长期富集使下游下游无法有效地吸收营养。污水处理厂污水中添加的营养物被输送到比弗湖之前,几乎没有吸收或转化,甚至没有吸收或转化。

著录项

  • 作者

    Hufhines, Bradley.;

  • 作者单位

    University of Arkansas.;

  • 授予单位 University of Arkansas.;
  • 学科 Engineering Sanitary and Municipal.;Environmental Sciences.;Water Resource Management.
  • 学位 M.S.
  • 年度 2010
  • 页码 94 p.
  • 总页数 94
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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