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排序方式: 共有209条查询结果,搜索用时 15 毫秒
1.
针对目前我国流域水环境监测管理制度的现状和流域水监测质量管理体系的缺失,从流域水环境监测管理、监督、流域水环境监测机构资质认定、质量事故行政追究和流域水环境监测机构内部质量管理等方面进行了研究,并构架了流域水环境监测的质量管理、监督、考核、评价、追究等一系列体制、机制。  相似文献   
2.
We used the interdisciplinary model network REGFLUD to predict the actual mean nitrate concentration in percolation water at the scale of the Weser river basin (Germany) using an area di erentiated (100 m 100 m) approach. REGFLUD combines the agro-economic model RAUMIS for estimating nitrogen surpluses and the hydrological models GROWA/DENUZ for assessing the nitrate leaching from the soil. For areas showing predicted nitrate concentrations in percolation water above the European Union (EU) groundwater quality standard of 50 mg NO3-N/L, e ective agri-environmental reduction measures need to be derived and implemented to improve groundwater and surface water quality by 2015. The e ects of already implemented agricultural policy are quantified by a baseline scenario projecting the N-surpluses from agricultural sector to 2015. The REGFLUD model is used to estimate the e ects of this scenario concerning groundwater and surface water pollution by nitrate. From the results of the model analysis the needs for additional measures can be derived in terms of required additional N-surplus reduction and in terms of regional prioritization of measures. Research work will therefore directly support the implementation of the Water Framework Directive of the European Union in the Weser basin.  相似文献   
3.
We used the interdisciplinary model network REGFLUD to predict the actual mean nitrate concentration in percolation water at the scale of the Weser river basin (Germany) using an area differentiated (100 m × 100 m) approach.REGFLUD combines the agro-economic model RAUMIS for estimating nitrogen surpluses and the hydrological models GROWA/DENUZ for assessing the nitrate leaching from the soil.For areas showing predicted nitrate concentrations in percolation water above the European Union (EU) groundwater quality standard of 50 mg NO 3 -N/L,effective agri-environmental reduction measures need to be derived and implemented to improve groundwater and surface water quality by 2015.The effects of already implemented agricultural policy are quantified by a baseline scenario projecting the N-surpluses from agricultural sector to 2015.The REGFLUD model is used to estimate the effects of this scenario concerning groundwater and surface water pollution by nitrate.From the results of the model analysis the needs for additional measures can be derived in terms of required additional N-surplus reduction and in terms of regional prioritization of measures.Research work will therefore directly support the implementation of the Water Framework Directive of the European Union in the Weser basin.  相似文献   
4.
This study aimed to evaluate the influence of sub‐daily precipitation time steps on model performance and hydrological components by applying the Green and Ampt infiltration method using the Soil and Water Assessment Tool (SWAT). Precipitation was measured at a resolution of 0.1 mm and aggregated to 5‐, 15‐, 30‐, and 60‐min time steps. Daily discharge data over a 10‐year period were used to calibrate and validate the model. Following a global sensitivity analysis, relevant parameters were optimized through an automatic calibration procedure using SWAT‐CUP for each time step. Daily performance statistics were almost equal among all four time steps (NSE ≈ 0.47). Discharge mainly consisted of groundwater flow (55%) and tile flow (42%), in reasonable proportions for the investigated catchment. In conclusion, model outputs were almost identical, showing simulations responded nearly independently of the chosen precipitation time step. This held true for (1) the selection of sensitive parameters, (2) performance statistics, (3) the shape of the hydrographs, and (4) flow components. However, a scenario analysis revealed that the precipitation time step becomes important when saturated hydraulic conductivities are low and curve numbers are high. The study suggests that there is no need in using precipitation time steps <1 h for lowland catchments dominated by soils with a low surface runoff potential if daily flow values are being considered. Editor's note : This paper is part of the featured series on SWAT Applications for Emerging Hydrologic and Water Quality Challenges. See the February 2017 issue for the introduction and background to the series.  相似文献   
5.
基流对亚热带农业流域氮素输出的贡献研究   总被引:3,自引:2,他引:1  
马秋梅  李玮  王毅  刘新亮  李勇  吴金水 《环境科学》2016,37(4):1371-1378
随着经济的迅猛发展和人民生活水平的逐步提高,亚热带农业小流域的面源污染日趋严峻,恶化的水体环境质量已经成为该区域可持续发展和生态文明建设的重要障碍.基流过程对流域生态水文过程有重要影响,因此本研究选取湖南省长沙县的脱甲和涧山两个农业小流域作为调查对象,通过流域观测和模型估算方法,对比分析2011年1月至2013年12月间流域基流过程对总氮(TN)输出的贡献.结果表明,在较高强度水稻种植的脱甲流域的月平均基流流量、平均基流TN流量加权浓度和平均基流对TN输出贡献[15.2 mm·month~(-1)、4.14 mg·L~(-1)和0.54 kg·(hm~2·month)~(-1)],均大于较低强度水稻种植的涧山流域[11.4 mm·month~(-1)、1.72 mg·L~(-1)和0.20 kg·(hm2·month)~(-1)].基流对TN输出贡献呈现明显的季节性变化,如在水稻生长季,脱甲和涧山流域基流对TN输出贡献分别为23.2%和18.6%,均低于休耕季的46.9%和40.0%,表明水稻种植会提高休耕季的流域基流过程对TN输出的贡献.因此,为缓解农业小流域水体面源污染,应当在农业小流域中实施合理的稻田管理措施来降低基流对TN输出的贡献.  相似文献   
6.
以湖南省长沙县的脱甲流域(高水稻种植面积比例)和涧山流域(低水稻种植面积比例)为研究对象,对比研究红壤丘陵地区典型农业流域水稻种植对河流水体氮磷浓度和输出强度的影响.连续16个月的监测结果表明,脱甲和涧山流域河流水体均存在比较严重的养分污染,尤其是氮污染;对比两个流域,脱甲流域河流水体的氮磷浓度水平和水质恶化程度均高于涧山流域.从养分组成来看,脱甲流域河流水体中氮以铵态氮为主(占总氮的58.5%),而涧山流域主要是硝态氮(占总氮的76.1%).脱甲流域中可溶性磷占总磷比例为47.1%,高于涧山流域的37.5%.从养分浓度变化的时间动态而言,两个流域河流中各形态氮素水平在1~2月和7月较高,而可溶性磷和总磷在5~6月和10~12月出现两个峰值.由于两个流域河道径流主要集中在水稻种植期间的4~10月,脱甲流域河流中较高的氮磷养分浓度意味着潜在的氮磷流失风险.脱甲流域月平均总氮输出通量为1.67 kg·(hm2·月)-1,总磷为0.06 kg·(hm2·月)-1,均高于涧山流域的0.44 kg·(hm2·月)-1和0.02kg·(hm2·月)-1.考虑到两个流域的气候、地形地貌、土壤类型、农田耕作方式相似而只是水稻种植面积比例不同,因此,在该地区传统的水稻栽培管理模式下,较高面积比例的水稻种植对流域河流水体环境存在潜在威胁.  相似文献   
7.
The aim of this study was to explore how atmospherically derived soil pollution is affected by environmental processes at two typical boreal catchment landscape type settings: wetlands and forested areas. Measurements of hydrophobic organic compounds (HOCs) in forest soil and peat from an oligotrophic mire at various depths were performed at a remote boreal catchment in northern Sweden. HOCs in peat were evenly distributed throughout the body of the mire while levels of HOCs in the forest soil increased with increased amount of organic matter. Evaluation of HOC composition by principal component analysis (PCA) showed distinct differences between surface soils and deeper soil and peat samples. This was attributed to vertical transport, degradation and/or shifting sources over time. The calculated net vertical transport differed between surface layers (0.3%) and deeper soils (8.0%), suggesting that vertical transport conditions and processes differ in the deeper layers compared to the surface layers.  相似文献   
8.
Moore, R.D. (Dan), J.W. Trubilowicz, and J.M. Buttle, 2011. Prediction of Streamflow Regime and Annual Runoff for Ungauged Basins Using a Distributed Monthly Water Balance Model. Journal of the American Water Resources Association (JAWRA) 48(1): 32‐42. DOI: 10.1111/j.1752‐1688.2011.00595.x Abstract: Prediction of streamflow in ungauged basins is a global challenge, but is particularly an issue in physiographically complex regions like British Columbia (BC), Canada. The objective of this study was to assess the accuracy of a simple water balance model that can be run using existing spatial datasets. The model was developed by modifying an existing monthly water balance model to account for interception loss from forest canopy, glacier melt, and evaporation from lakes. The model was run using monthly climate normals from the ClimateBC application, which have a horizontal resolution of 400 m. Each ClimateBC grid cell was classified as forest, open land, glacier or water surface based on provincial scale digital maps of biogeoclimatic zones, glaciers, and water. The output was monthly mean runoff from each grid cell. These values were integrated within the catchment boundaries for streams gauged by the Water Survey of Canada. Annual runoff was predicted with modest accuracy: after updating the predicted runoff by interpolating errors from neighboring gauged streams, the mean absolute error was 25.4% of the gauged value, and 52% of the streams had errors less than 20%. However, the model appears to be quite robust in distinguishing between pluvial, hybrid, and melt‐dominated hydroclimatic regimes, and therefore has promise as a tool for catchment classification.  相似文献   
9.
Principles of good practice for collaborative resource management were derived from the literature and their use studied in a range of integrated catchment management processes. Desk-based reviews and interviews with participants allowed the principles to be refined and described within a framework that illustrates the interrelationships between core principles, enabling principles, precursors to a project and the influence of external factors on such collaborative processes. The findings illustrate the importance of these relationships in understanding how success is defined and under what conditions successful outcomes can be achieved. Understanding how these procedural aspects influence outcomes contributes to the wider literature on collaborative resource management that often treats processes separately from their context.  相似文献   
10.
在滇池双龙流域选取耕地、撂荒地、草地和林地4种土地利用方式,分别取0~40 cm土壤样品,测定样品中的137Cs比活度及w(TN)、w(TP)、w(TOC),同时根据土壤有机质中δ13C(稳定性碳同位素丰度)的剖面分布特征,分析不同土地利用方式对该流域土壤侵蚀程度、土壤养分分异及有机质来源和变化的影响. 结果表明:①耕地、撂荒地、草地和林地土壤的137Cs比活度分别为0.65、0.21、3.92和0.61 Bq/kg,土壤侵蚀模数大小表现为耕地>撂荒地>林地>草地. ②不同土地利用方式下,土壤剖面w(TOC)、w(TN)和w(TP)的平均值差异显著(P<0.001);w(TOC)表现为草地>林地>耕地>撂荒地,w(TN)表现为草地>耕地>林地>撂荒地,w(TP)表现为耕地>草地>林地>撂荒地;各种土地利用方式土壤剖面养分质量分数均随土壤深度增加呈降低趋势. ③耕地、撂荒地、草地和林地土壤的δ13C平均值分别为-22.28‰±1.49‰、-23.29‰±0.24‰、-26.32‰±0.25‰和-25.94‰±0.22‰,推断该区域土壤有机质主要来源于陆生C3植物. 土壤剖面δ13C的变幅差异反映了土壤有机质分解程度的强弱,δ13C变化规律表现为耕地>林地>草地>撂荒地. ④土壤侵蚀模数越大,w(TOC)和w(TN)越低,草地和林地土壤侵蚀程度较低,土壤养分流失量较小,更有利于土壤质量的改善和流域水环境的保护.   相似文献   
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