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A method to quantify and value floodplain sediment and nutrient retention ecosystem services

机译:量化和评估洪泛区沉积物和养分保留生态系统服务的方法

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Floodplains provide critical ecosystem services to local and downstream communities by retaining floodwaters, sediments, and nutrients. The dynamic nature of floodplains is such that these areas can both accumulate sediment and nutrients through deposition, and export material downstream through erosion. Therefore, estimating floodplain sediment and nutrient retention should consider the net flux of both depositional and erosive processes. An ecosystem services framework was used to quantify and value the sediment and nutrient ecosystem service provided by floodplains in the Difficult Run watershed, a small (151 km(2)) suburban watershed located in the Piedmont of Virginia (USA). A sediment balance was developed for Difficult Run and two nested watersheds. The balance included upland sediment delivery to streams, stream bank flux, floodplain flux, and stream load. Upland sediment delivery was estimated using geospatial datasets and a modified Revised Universal Soil Loss Equation. Predictive models were developed to extrapolate field measurements of the flux of sediment, sediment-bound nitrogen (N), and sediment-bound phosphorus (P) from stream banks and floodplains to 3232 delineated stream segments in the study area. A replacement cost approach was used to estimate the economic value of the sediment and nutrient retention ecosystem service based on estimated net stream bank and floodplain flux of sediment-bound N for all streams in the study area. Results indicated the net fluvial fluxes of sediment, sediment-bound N, and sediment-bound P were - 10,439 Mg yr(-1) (net export), 57,300 kg-N yr(-1) (net trapping), and 98 kg-P yr(-1)(net trapping),. respectively. For sediment, floodplain retention was offset by substantial losses from stream bank erosion, particularly in headwater catchments, resulting in a net export of sediment. Nutrient retention in the floodplain exceeded that lost through stream bank erosion resulting in net retention of nutrients (TN and TP). Using a conservative cost estimate of $12.69 (USD) per kilogram of nitrogen, derived from wastewater treatment costs, the estimated annual value for sediment and nutrient retention on Difficult Run floodplains was $727,226 +/- 194,220 USD/yr. Values and differences in floodplain nitrogen retention among stream reaches can be used to target areas for floodplain conservation and stream restoration. The methods presented are scalable and transferable to other areas if appropriate datasets are available for validation.
机译:洪泛区通过保留洪水,沉积物和养分为当地和下游社区提供关键的生态系统服务。洪泛区的动态性质使得这些区域既可以通过沉积来积累沉积物和养分,又可以通过侵蚀将材料输出到下游。因此,估算洪泛区的沉积物和养分保留量时应考虑沉积和侵蚀过程的净通量。生态系统服务框架用于量化和评估由Difficult Run流域提供的沉积物和养分生态系统服务,Difficult Run流域是位于美国弗吉尼亚州皮埃蒙特的一个郊区小流域(151公里(2))。开发了“困难运行”和两个嵌套流域的泥沙平衡。余额包括向河流输送的高地沉积物,河岸通量,洪泛区通量和河流量。使用地理空间数据集和修改后的修订的通用土壤流失方程估算了陆地沉积物的输送量。开发了预测模型,以将来自水库和洪泛区的泥沙通量,与泥沙结合的氮(N)和与泥沙结合的磷(P)的现场测量值外推到研究区域内的3232个划定的溪流段。在研究区域内所有河流的估计净流库和含沙量氮的洪泛区通量的基础上,采用替代成本法来估算沉积物和养分保留生态系统服务的经济价值。结果表明,沉积物,沉积物结合的N和沉积物结合的P的净河流通量分别为-10,439 Mg yr(-1)(净出口),57,300 kg-N yr(-1)(净捕集)和98 kg -P yr(-1)(净诱捕)。分别。对于沉积物,洪泛区的保留被河岸侵蚀的大量损失所抵消,尤其是在源头集水区,造成了沉积物的净出口。洪泛区中的养分保留量超过了因河岸侵蚀而损失的养分,导致养分(TN和TP)净保留。使用从废水处理成本得出的每公斤氮的保守成本估算值12.69美元,估算“困难运行”洪泛区的沉积物和养分保留的年度价值估算为727,226美元+/- 194,220美元/年。河段之间洪泛区氮保留的值和差异可用于洪泛区保护和河流恢复的目标区域。如果适当的数据集可用于验证,则所提出的方法可扩展并可以转移到其他领域。

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