Risk evaluation of available phosphorus loss in agricultural land based on remote sensing and GIS

Xiaodong Ding, Bin Zhou, Junfeng Xu, Ting Liu, Bin Xie
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引用次数: 1

Abstract

The surplus of phosphorus leads to water eutrophication. Huge input of fertilizers in agricultural activities enriches nutrition in soil. The superfluous nutrient moves easily to riparian water by rainfall and surface runoff; leads to water eutrophication of riparian wetlands and downstream water; and consequently affects ecological balance. Thus it is significant to investigate the risk of phosphorus loss in agricultural land, to identify high concentration areas and guide the management of nutrition loss. This study was implemented mainly in the area of agricultural use in southern Western Australia, where a three-year period preliminary monitoring of water quality showed that the concentration of different forms of phosphorus in water had far exceeded the standard. Due to the large scale surface runoff caused by occasional storms in Western Australia, soil erosion was selected as the main driving factor for the loss of phosphorus. Remote sensing and ground truth data were used to reflect the seasonal changes of plants. The spatial distribution of available phosphorus was then predicted and combined with the evaluation matrix to evaluate the loss risk of phosphorus. This evaluation was based on quantitative rather than qualitative data to make better precision. It could help making decision support for monitoring water quality of rivers and riparian wetlands.
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基于遥感和GIS的农用地有效磷流失风险评价
磷的过剩导致水体富营养化。农业活动中大量投入的肥料丰富了土壤的营养。多余的营养物质很容易通过降雨和地表径流转移到河岸;导致河岸湿地及下游水体富营养化;从而影响生态平衡。因此,研究农用地磷流失风险,识别磷高发区,指导营养流失管理具有重要意义。本研究主要在西澳大利亚州南部的农业用地进行,对该地区的水质进行了为期三年的初步监测,发现水中不同形态磷的浓度远远超标。由于西澳大利亚州偶发的暴风雨造成了大规模的地表径流,因此土壤侵蚀被选为磷流失的主要驱动因素。利用遥感和地面真实数据反映植物的季节变化。预测速效磷的空间分布,并结合评价矩阵对速效磷的损失风险进行评价。该评价是基于定量而非定性数据,以提高准确性。它可以为监测河流和河岸湿地的水质提供决策支持。
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