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对土壤、河床沉积物和溪流水体中磷的流域尺度模式的控制因素。

Controls on catchment-scale patterns of phosphorus in soil, streambed sediment, and stream water.

作者信息

van der Perk Marcel, Owens Philip N, Deeks Lynda K, Rawlins Barry G, Haygarth Philip M, Beven Keith J

机构信息

Dep. of Physical Geography, Utrecht Univ., P.O. Box 80 115, 3508 TC Utrecht, The Netherlands.

出版信息

J Environ Qual. 2007 Apr 5;36(3):694-708. doi: 10.2134/jeq2006.0175. Print 2007 May-Jun.

Abstract

Many models of phosphorus (P) transfer at the catchment scale rely on input from generic databases including, amongst others, soil and land use maps. Spatially detailed geochemical data sets have the potential to improve the accuracy of the input parameters of catchment-scale nutrient transfer models. Furthermore, they enable the assessment of the utility of available, generic spatial data sets for the modeling and prediction of soil nutrient status and nutrient transfer at the catchment scale. This study aims to quantify the unique and joint contribution of soil and sediment properties, land cover, and point-source emissions to the spatial variation of P concentrations in soil, streambed sediments, and stream water at the scale of a medium-sized catchment. Soil parent material and soil chemical properties were identified as major factors controlling the catchment-scale spatial variation in soil total P and Olsen P concentrations. Soil type and land cover as derived from the generic spatial database explain 33.7% of the variation in soil total P concentrations and 17.4% of the variation in Olsen P concentrations. Streambed P concentrations are principally related to the major element concentrations in streambed sediment and P delivery from the hillslopes due to sediment erosion. During base flow conditions, the total phosphorus (<0.45 microm) concentrations in stream water are mainly controlled by the concentrations of P and the major elements in the streambed sediment.

摘要

许多流域尺度磷(P)转移模型依赖于通用数据库的输入数据,其中包括土壤和土地利用图等。空间详细的地球化学数据集有潜力提高流域尺度养分转移模型输入参数的准确性。此外,它们能够评估现有通用空间数据集在流域尺度土壤养分状况建模和预测以及养分转移方面的效用。本研究旨在量化土壤和沉积物特性、土地覆盖以及点源排放对中型流域尺度土壤、河床沉积物和溪水中磷浓度空间变化的独特贡献和共同贡献。土壤母质和土壤化学性质被确定为控制流域尺度土壤总磷和 Olsen 磷浓度空间变化的主要因素。从通用空间数据库得出的土壤类型和土地覆盖解释了土壤总磷浓度变化的 33.7%和 Olsen 磷浓度变化的 17.4%。河床磷浓度主要与河床沉积物中的主要元素浓度以及由于沉积物侵蚀导致的山坡磷输送有关。在基流条件下,溪水中总磷(<0.45 微米)浓度主要受河床沉积物中磷和主要元素浓度的控制。

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