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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Exploring effective best management practices in the Miyun reservoir watershed, China
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Exploring effective best management practices in the Miyun reservoir watershed, China

机译:探索中国宫山水库流域的有效最佳管理实践

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Miyun reservoir watershed is a major source of drinking water for China's capital, Beijing, which has a population of 21.75 million. Recently, the capacity of the Miyun reservoir to supply clean drinking water has been threatened by increasing eutrophication (or algae bloom), mainly due to the discharge of wastewater and excessive fertilization application in the upstream watershed. Therefore, there is an urgent need to design effective best management practices (BMPs) to reduce upstream nutrient load and improve water quality in the Miyun reservoir. In this study, we built a watershed model (the Soil and Water Assessment Tool) for the Miyun Reservoir Watershed (MRW) and calibrated and validated it using long-term sediment, nitrogen (N) and phosphorus (P) data. Furthermore, we developed a Markov Chain based multi-objective optimization program to explore optimal BMPs with tradeoffs between economic costs and water quality responses. Using the watershed model and multi-objective optimization algorithms, we explored the potential effectiveness of BMPs under two scenarios that are currently being considered. Scenario 1 assumes that funding for BMP implementation comes from national grants and targets high water quality standards, whereas scenario 2 assumes funding is provided by farmers and targets water quality that meet the drinking water standards. We found substantial discrepancies between the two scenarios with respect to the types and spatial configurations of BMPs and associated economic costs, highlighting the need to reconcile concerns from different stakeholders in order to arrive at a BMP plan that all parties will agree upon. In addition, we found that cross-subwatershed coordination and targeting flood season instead of year-round water quality standards could pronouncedly reduce the economic costs of BMP implementations without substantially degrading water quality. The watershed scale optimization method developed here holds promise to serve as an effective tool to explore tradeoffs between economic costs, water quality improvements, and decision makers' and stakeholders' concerns in BMP design, thereby informing sustainable watershed scale water resources management and ecosystem maintenance.
机译:Miyun水库流域是中国首都北京饮用水的主要来源,人口为2175万。最近,通过增加富营养化(或藻类绽放),Miyun水库供应清洁饮用水的能力主要是由于废水排出和在上游流域中的过度施肥。因此,迫切需要设计有效的最佳管理实践(BMP),以降低上游营养负荷,提高Miyun水库的水质。在这项研究中,我们为Miyun储层流域(MRW)建立了一个流域模型(土壤和水评估工具),并使用长期沉积物,氮气(N)和磷(P)数据进行校准并验证。此外,我们开发了基于马尔可夫链的多目标优化计划,探讨了经济成本与水质反应之间的权衡的最佳BMP。使用流域模型和多目标优化算法,我们探讨了在目前考虑的两种情况下的BMP的潜在效果。方案1假设BMP实施的资金来自国家拨款和针对高水质标准,而场景2假定农民提供资金,并针对符合饮用水标准的水质。我们发现两种情景之间的大量差异,关于BMP的类型和空间配置以及相关的经济成本,突出了协调不同利益相关者的关注,以便到达所有各方达成一致的BMP计划。此外,我们发现,交叉副行业的协调和瞄准汛期而不是全年水质标准,可以发布缩短BMP实现的经济成本,而不会降低水质。在此开发的流域规模优化方法拥有承诺作为探索BMP设计中经济成本,水质改善和决策者的关注的权衡的有效工具,从而了解可持续流域的水资源管理和生态系统维护。

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