...
首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >The effectiveness and resilience of phosphorus management practices in the Lake Simcoe watershed, Ontario, Canada
【24h】

The effectiveness and resilience of phosphorus management practices in the Lake Simcoe watershed, Ontario, Canada

机译:加拿大安大略省辛科湖流域磷管理实践的有效性和适应力

获取原文
获取原文并翻译 | 示例
           

摘要

Uncertainty surrounding future climate makes it difficult to have confidence that current nutrient management strategies will remain effective. This study used monitoring and modeling to assess current effectiveness (% phosphorus reduction) and resilience (defined as continued effectiveness under a changing climate) of best management practices (BMPs) within five catchments of the Lake Simcoe watershed, Ontario. The Integrated Catchment Phosphorus model (INCA-P) was used, and monitoring data were used to calibrate and validate a series of management scenarios. To assess current BMP effectiveness, models were run over a baseline period 1985-2014 with and without management scenarios. Climate simulations were run (2070-2099), and BMP resilience was calculated as the percent change in effectiveness between the baseline and future period. Results demonstrated that livestock removal from water courses was the most effective BMP, while manure storage adjustments were the least. Effectiveness varied between catchments, influenced by the dominant hydrological and nutrient transport pathways. Resilience of individual BMPs was associated with catchment sensitivity to climate change. BMPs were most resilient in catchments with high soil water storage capacity and small projected changes in frozen-water availability and in soil moisture deficits. Conversely, BMPs were less resilient in catchments with larger changes in spring melt magnitude and in overland flow proportions. Results indicated that BMPs implemented are not always those most suited to catchment flow pathways, and a more site-specific approach would enhance prospects for maintaining P reduction targets. Furthermore, BMP resilience to climate change can be predicted from catchment physical properties and present-day hydrochemical sensitivity to climate forcing.
机译:围绕未来气候的不确定性使人们难以相信当前的养分管理策略将仍然有效。这项研究使用监视和建模方法来评估安大略省Simcoe湖流域五个集水区的最佳管理实践(BMP)的当前有效性(磷减少百分比)和复原力(定义为在不断变化的气候下的持续有效性)。使用了综合集水磷模型(INCA-P),并使用了监测数据来校准和验证一系列管理方案。为了评估当前的BMP有效性,模型在1985-2014年的基线期间运行,有无管理方案。进行了气候模拟(2070-2099),并计算了BMP的恢复力,即基线与未来时期之间有效性的百分比变化。结果表明,从水道中清除牲畜是最有效的BMP,而调整粪便储存量最少。受主要水文和养分输送途径的影响,流域之间的效益各不相同。个体BMP的适应力与流域对气候变化的敏感性有关。 BMP在集水能力高的流域,冻水供应量和土壤水分不足的预计变化很小的流域中最具弹性。相反,BMP在集水区的弹性较小,而春季融化量和陆上流量比例的变化较大。结果表明,实施的BMP并不一定总是最适合流域的径流,而更具针对性的方法将提高维持P削减目标的前景。此外,BMP对气候变化的恢复能力可以根据集水区的物理性质和当今的水化学对气候强迫的敏感性来预测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号