...
首页> 外文期刊>Canadian Journal of Soil Science >Context for re-evaluating agricultural source phosphorus loadings to the Great Lakes
【24h】

Context for re-evaluating agricultural source phosphorus loadings to the Great Lakes

机译:重新评估五大湖的农业源磷含量的背景

获取原文
获取原文并翻译 | 示例

摘要

Joosse, P. J. and Baker, D. B. 2011. Context for re-evaluating agricultural source phosphorus loadings to the Great Lakes. Can. J. Soil Sci. 91: 317-327. Over the past decade, scientists have been discussing the re-emergence of harmful algal blooms and excessive growth of Cladophora in some areas of the Great Lakes. An observation that has emerged from these discussions is that management of non-point or diffuse sources of phosphorus will be more important in the future in order to address symptoms of eutrophication in the nearshore. This paper provides context for this renewed focus on managing non-point source tributary loads and is based primarily on materials and discussions from the Great Lakes P Forum. There are changes that have occurred in the lakes and tributaries in the past 15 yr that indicate a greater need to focus on non-point sources, whether urban or rural. Changes have also occurred in land management to reduce non-point P losses from agriculture. While these changes have reduced sediment and particulate P loading in some Ohio tributaries, the more bioavailable, dissolved P forms have increased. As there is incomplete knowledge about the mechanisms that are influencing algal growth, it could be a challenge to demonstrate, in the near term, improvements in water quality with further P reductions from agriculture alone. Regardless, there appears to be a desire for improved accountability and transparency for agricultural non-point source P management.
机译:Joosse,P. J.和Baker,D. B.2011。重新评估五大湖地区农业源磷负荷的背景。能够。 J.土壤科学。 91:317-327。在过去的十年中,科学家们一直在讨论大湖区某些地区有害藻华的重新出现和枝叶珊瑚的过度生长。从这些讨论中得出的观察结果是,为了解决近岸富营养化的症状,今后非点源或分散磷源的管理将变得更加重要。本文主要针对大湖P论坛的资料和讨论,为重新关注非点源支流负荷管理提供了背景。在过去的15年中,湖泊和支流发生了变化,这表明更加需要集中于非点源,无论是城市还是农村。土地管理方面也发生了变化,以减少农业面源磷的损失。尽管这些变化减少了俄亥俄州某些支流中的沉积物和颗粒物P的负荷,但生物利用度更高的溶解性P形式却有所增加。由于对影响藻类生长的机理的知识还不完全,因此在短期内证明仅通过农业进一步减少磷就能改善水质可能是一个挑战。无论如何,似乎都希望改善农业面源P管理的问责制和透明度。

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