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Evaluating Confidence in the Impact of Regulatory Nutrient Reduction on Chesapeake Bay Water Quality

机译:评估对Chesapeake湾水质对调节营养减少影响的信心

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Excess nutrients derived from anthropogenic activity have resulted in the degradation of coastal water quality and an increase in low-oxygen and hypoxic events worldwide. In an effort to curb these impacts and restore water quality in the Chesapeake Bay, a maximum load of nutrients has been established based on a framework of regulatory standards and models. This research aims to evaluate the projected changes in water quality resulting from the implementation of these nutrient reductions by applying the regulatory methodology to two different models that have been previously shown to have similar model skill. Results demonstrate that although the two models differ structurally and produce a different degree of absolute change, they project a similar relative improvement in water quality along the main stem of the Chesapeake Bay and the lower reaches of the tributaries. Furthermore, the models largely agree on the attainment of regulatory water quality standards as a result of nutrient reduction, while also establishing that meeting water quality standards is relatively independent of hydrologic (wet/dry) conditions. By developing a Similarity Index that compares model results across habitat, time, and methodology, this research identifies the locations and causes of greatest uncertainty in modeled projections of water quality. Although there are specific locations and times where the models disagree, overall this research lends support and increased confidence to the appropriateness of the nutrient reduction levels and in the general impact of nutrient reduction on Chesapeake Bay water quality under current environmental conditions.
机译:源自人为活性的过量营养素导致沿海水质的降解,全世界低氧和低氧和缺氧事件的增加。为了抑制这些影响和恢复水质的切萨皮克湾,基于监管标准和模型的框架,已经建立了最大程度的营养素。本研究旨在通过将监管方法应用于前面显示具有类似模型技能的两种不同模型来评估这些营养减少所产生的水质的预计变化。结果表明,尽管两种模型在结构上有所不同并产生不同程度的绝对变化,但它们沿着切萨皮克湾的主茎和支流下游的水质进行了类似的相对改善。此外,由于营养减少,该模型在很大程度上达成了培养的监管水质标准,同时建立满足水质标准的水能标准相对独立于水文(湿/干)条件。通过开发与栖息地,时间和方法的模型结果进行比较的相似性指数,该研究识别了水质模型预测中最大不确定性的位置和原因。虽然有特定的位置和模型不同意的时间,但总体而言,这项研究借给了对营养减少水平的适当性和营养减少对当前环境条件下切萨皮克湾水质的一般影响的对营养减少的适当性。

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