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点源效应对森林和农业地中海溪流中氮磷吸收的影响。

Point-source effects on N and P uptake in a forested and an agricultural Mediterranean streams.

机构信息

Departament d'Ecologia, Universitat de Barcelona, Diagonal 645, E-08028 Barcelona, Spain.

出版信息

Sci Total Environ. 2011 Feb 1;409(5):957-67. doi: 10.1016/j.scitotenv.2010.11.014. Epub 2010 Dec 24.

Abstract

We examined the effect of point-source inputs from wastewater treatment plants (WWTP) on in-stream uptake of ammonium, nitrate and phosphate and compared it between two streams draining catchments with contrasting land use. The selected streams were La Tordera and Gurri (NE Spain), draining a forest- and an agriculture-dominated catchment, respectively. In each stream, we compared nutrient uptake metrics, estimated from nutrient additions, between two reaches located upstream and downstream of a WWTP input. Measurements were done on 8-9 dates during 2002-2003. In La Tordera, the point-source increased concentrations of all studied nutrients; whereas in Gurri, this effect was less evident. Point-source effects on nutrient uptake differed between the two streams, and among solutes. In La Tordera, uptake lengths (S(w)) of ammonium and phosphate averaged hundreds of meters above the point-source, and increased (i.e., decreased uptake efficiency) 4 and 5 times, respectively, below the point-source. S(w) of nitrate was ≥2km regardless of reach location. In Gurri, S(w) of all studied nutrients was within the km range in the two reaches. In this stream, diffuse nutrient inputs from adjacent fields may overwhelm the local effect of the point-source input. Uptake velocities (v(f)) of the studied nutrients ranged between 10EXP(-6) and 10EXP(-4)m/s in the two streams, and were similar between the two reaches in each stream. However, phosphate v(f) decreased under increasing concentrations following a power function. This trend remained significant when combining our results with those compiled from literature, suggesting the efficiency loss response may be a general trend for phosphate across streams. The relative increases in uptake rates (U) below the point-source were proportional to the relative point-source contribution to downstream nutrient loads, especially for ammonium and nitrate. However, the increases in U were not enough to compensate for the increases in nutrient loads downstream of the WWTP input.

摘要

我们研究了污水处理厂(WWTP)点源输入对河流中铵、硝酸盐和磷酸盐吸收的影响,并比较了两种具有不同土地利用的流域河流之间的差异。所选河流分别为拉托雷拉(西班牙东北部)和古尔里(西班牙东北部),分别流经森林和农业为主的流域。在每条河流中,我们比较了 WWTP 输入上下游两个河段的养分吸收指标,这些指标是通过养分添加来估计的。测量工作于 2002 年至 2003 年期间的 8-9 个日期进行。在拉托雷拉,点源增加了所有研究养分的浓度;而在古尔里,这种影响则不太明显。点源对养分吸收的影响在两条河流之间以及不同溶质之间存在差异。在拉托雷拉,铵和磷酸盐的吸收长度(S(w))在点源上方平均数百米,在点源下方分别增加(即吸收效率降低)4 倍和 5 倍。硝酸盐的 S(w)无论在哪个河段都≥2km。在古尔里,两条河段中所有研究养分的 S(w)都在 km 范围内。在这条河流中,来自相邻田地的弥散养分输入可能会超过点源输入的局部影响。研究养分的吸收速度(v(f))在两条河流中的范围为 10EXP(-6) 至 10EXP(-4)m/s,并且在每条河流的两个河段之间相似。然而,随着浓度的增加,磷酸盐的 v(f)呈幂函数下降。当将我们的结果与文献综述中的结果相结合时,这种趋势仍然显著,这表明效率损失反应可能是整个河流中磷酸盐的普遍趋势。点源下游养分负荷的相对增加与点源相对贡献成正比,特别是对于铵和硝酸盐。然而,增加的吸收速率(U)不足以补偿 WWTP 输入下游养分负荷的增加。

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