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111.
太湖五里湖非点源污染物的来源与控制对策   总被引:4,自引:2,他引:2       下载免费PDF全文
现场调查显示,五里湖非点源污染物来源于城区道路、居民区、农业和绿化施肥等方面,在降雨时通过河道、湖周散流和大气沉降方式入湖.根据流域环境特点,将五里湖流域划分为西南山地风景旅游管理区,北部新城污染控制区和东南农业、渔业综合整治区3个区域类型,并对各区提出了如下的非点源污染控制对策:西南山地风景旅游管理区需采取陆上植被保护和滨水植被恢复工程;北部新城污染控制区需采取滨水区、河口区、河道区植被恢复工程以及人工湿地工程;东南农业、渔业综合整治区需采取有机农业工程、污水处理工程、植物塘净化工程和河道生态净化工程.   相似文献   
112.
Managers need measurements and resource managers need the length/width of a variety of items including that of animals, logs, streams, plant canopies, man-made objects, riparian habitat, vegetation patches and other things important in resource monitoring and land inspection. These types of measurements can now be easily and accurately obtained from very large scale aerial (VLSA) imagery having spatial resolutions as fine as 1 millimeter per pixel by using the three new software programs described here. VLSA images have small fields of view and are used for intermittent sampling across extensive landscapes. Pixel-coverage among images is influenced by small changes in airplane altitude above ground level (AGL) and orientation relative to the ground, as well as by changes in topography. These factors affect the object-to-camera distance used for image-resolution calculations. ‘ImageMeasurement’ offers a user-friendly interface for accounting for pixel-coverage variation among images by utilizing a database. ‘LaserLOG’ records and displays airplane altitude AGL measured from a high frequency laser rangefinder, and displays the vertical velocity. ‘Merge’ sorts through large amounts of data generated by LaserLOG and matches precise airplane altitudes with camera trigger times for input to the ImageMeasurement database. We discuss application of these tools, including error estimates. We found measurements from aerial images (collection resolution: 5–26 mm/pixel as projected on the ground) using ImageMeasurement, LaserLOG, and Merge, were accurate to centimeters with an error less than 10%. We recommend these software packages as a means for expanding the utility of aerial image data.  相似文献   
113.
Wild salmon stocks in the Pacific Northwest are imperiled by a variety of declining habitat factors, including riparian shade and in-channel large wood. In this paper, a relatively simple lidar model of the riparian canopy was used along anadromous streams in the Skagit River watershed in western Washington State, United States, to delineate where riparian trees were most lacking, and where restoration efforts would have the greatest benefit in terms of shade and large wood recruitment potential. Within a 45-m riparian buffer, 61% of riparian zones were currently incapable of delivering large wood to the stream. Current potential for large wood recruitment is greatest adjacent to stream edges and falls off rapidly with distance from the channel. Approximately 99% of large wood recruitment potential lies within 45 m of the channel edge, and 50% of the wood potential is within 9 m. A hypothetical canopy model in which all trees mature to a 100-year height would provide 18% more shade distributed over the entire watershed, and 90% more shade in the tributaries. Most of the potential gains in improved shade and large wood contributions are in agricultural areas, as opposed to forestry or urban land uses. The shade and large wood models were constructed from widely available geographic information system tools and are readily transferable to other watersheds with similar characteristics. Model outputs are intended for use in planning restoration projects, as an input to stream temperature models, and to inform policy on restoration priorities and regulatory buffer widths.  相似文献   
114.
Wildlife corridors aim to promote species’ persistence by connecting habitat patches across fragmented landscapes. Their implementation is limited by patterns of land ownership and complicated by differences in the jurisdictional and regulatory authorities under which lands are managed. Terrestrial corridor conservation requires coordination across jurisdictions and sectors subject to site-specific overlapping sources of legal authority. Mapping spatial patterns of legal authority concurrent with habitat condition can illustrate opportunities to build or leverage capacity for connectivity conservation. Streamside areas provide pragmatic opportunities to leverage existing policy mechanisms for riverine and terrestrial habitat connectivity across boundaries. Conservation planners and practitioners can make use of these opportunities by harmonizing actions for multiple conservation outcomes. We formulated an integrative, data-driven method for mapping multiple sources of legal authority weighted by capacity for coordinating terrestrial habitat conservation along streams. We generated a map of capacity to coordinate streamside corridor protections across a wildlife habitat gap to demonstrate this approach. We combined values representing coordination capacity and naturalness to generate an integrated legal-ecological resistance map for connectivity modeling. We then computed least-cost corridors across the integrated map, masking the terrestrial landscape to focus on streamside areas. Streamside least-cost corridors in the integrated, local-scale model diverged (∼25 km) from national-scale least-cost corridors based on naturalness. Spatial categories comparing legal- and naturalness-based resistance values by stream reach highlighted potential locations for building or leveraging existing capacity through spatial coordination of policy mechanisms or restoration actions. Agencies or nongovernmental organizations intending to restore or maintain habitat connectivity across fragmented landscapes can use this approach to inform spatial prioritization and build coordination capacity. Article impact statement: Combined mapping of legal authority and habitat condition reveals capacity to coordinate actions along streams for clean water and wildlife.  相似文献   
115.
Reconstructing long-term vegetation buffers along streams in agricultural landscapes has become a common environmental restoration strategy for improving water quality and wildlife habitat connectivity. This article developed a linear weighted model to rank the priority of agricultural sub-basins for the establishment of vegetative buffers. The method was applied to an agricultural watershed of 146 km2 in Ontario, Canada. The watershed was divided into 11 sub-basins as basic decision units. In each sub-basin, four stream buffer schemes with widths of 5, 10, 15 and 20m were generated. For each buffer, three benefit-cost attributes of reconstructing vegetation cover were estimated, which include acreage per dollar, sediment abatement per dollar and habitat benefit per dollar. These attributes were first normalized using a linear normalization approach to eliminate the effects across different units. The normalized attributes were then integrated using a simple additive weighting method to rank the 11 sub-basins for prioritizing spatial restoration action. A sensitivity analysis was also conducted to observe the impact of a change in attribute weights on the management decisions. The results suggest that vegetation buffers reconstructed for achieving the water quality goal are not effective in improving habitat connectivity and vice versa.  相似文献   
116.
Segura, Catalina and Derek B. Booth, 2010. Effects of Geomorphic Setting and Urbanization on Wood, Pools, Sediment Storage, and Bank Erosion in Puget Sound Streams. Journal of the American Water Resources Association (JAWRA) 46(5):972-986. DOI: 10.1111/j.1752-1688.2010.00470.x Abstract: Interrelationships between urbanization, the near-riparian zone, and channel morphology were examined in 44 lowland stream reaches in the Puget Lowlands of western Washington, United States. Both the degree of urbanization and channel type control channel response to a range of instream and riparian conditions. Some of these relationships are not evident in lumped datasets (i.e., with all channel types and/or degrees of urbanization) and highlight the importance of fluvial geomorphology in determining channel response. We found that in low-urbanized watersheds dominated by forced pool-riffle and plane-bed morphologies, the frequency and distribution of large woody debris (LWD), pool spacing, sediment storage, and bank erosion have a strong relationship with channel confinement and characteristics of near-riparian vegetation. In contrast, high-urbanized reaches dominated by simplified morphologies are substantially less sensitive to the condition of the near-riparian zone (e.g., size of the near-riparian vegetation and the level of channel confinement), due to the common disconnection of stream and floodplain caused by the placement of stabilizing structures in the banks. These structures are typically placed to prevent erosion; however, they also result in fewer LWD and pools, less sediment storage, and higher potential for incision.  相似文献   
117.
Abstract: Being able to identify riparian sites that function better for nitrate removal from groundwater is critical to using efficiently the riparian zones for water quality management. For this purpose, managers need a method that is quick, inexpensive, and accurate enough to enable effective management decisions. This study assesses the precision and accuracy of a simple method using three ground water wells and one measurement date for determining nitrate removal characteristics of riparian buffer zones. The method is a scaled‐down version of a complex field research method that consists of a large network of wells and piezometers monitored monthly for over two years. Results using the simplified method were compared to those from the reference research method on a date‐by‐date basis on eight sites covering a wide range of hydrogeomorphic settings. The accuracy of the three‐well, 1 day measurement method was relatively good for assessing nitrate concentration depletion across riparian zones, but poor for assessing the distance necessary to achieve a 90% nitrate removal and for estimating water and nitrate fluxes compared to the reference method. The simplified three‐well method provides relatively better estimates of water and nitrate fluxes on sites where ground‐water flow is parallel to the water table through homogeneous aquifer material, but such conditions may not be geographically widespread. Despite limited overall accuracy, some parameters that are estimated using the simplified method may be useful to water resource managers. Nitrate depletion information may be used to assess the adequacy of existing buffers to achieve nitrate concentration goals for runoff. Estimates of field nitrate runoff and buffer removal fluxes may be adequate for prioritizing management toward sites where riparian buffers are likely to have greater impact on stream water quality.  相似文献   
118.
Abstract: Ground‐water flow paths constrain the extent of nitrogen (N) sinks in deep, stratified soils of riparian wetlands. We examined ground‐water flow paths at four forested riparian wetlands in deep, low gradient, stratified deposits subjected to Southern New England’s temperate, humid climate. Mid‐day piezometric heads were recorded during the high water table period in April/May and again in late November at one site. Coupling field data with a two‐dimensional steady‐state ground‐water flow model, flow paths and fluxes were derived to 3 m depths. April/May evapotranspiration (ET) dominated total outflux (44‐100%) while flux to the stream was <10% of total outflux. ET exerted upward ground‐water flux through shallow carbon‐rich soils, increasing opportunities for N transformations and diverting flow from the stream. Dormant season results showed a marked increase in flux to the stream (27% of the total flux). Riparian sites with deep water tables (naturally or because of increased urbanization or other hydrologic modifications) or shallow root zones may not generate ground‐water upwelling to meet evaporative demand, thereby increasing the risk of N movement to streams. As water managers balance issues of water quality with water quantity, they will be faced with decisions regarding riparian management. Further work towards refining our understanding of ET mediation of N and water flux at the catchment scale will serve to inform these decisions.  相似文献   
119.
微塑料污染对水生态系统及人类健康危害大,为探究微塑料在不同环境介质中的赋存特征,选择长江一级支流玛瑙河为研究区域,通过现场采样、显微镜观察和傅里叶红外光谱测定等,对玛瑙河表层水体、沉积物、河岸带土壤和底栖动物铜锈环棱螺中微塑料的丰度、粒径、形状、颜色和组成类型进行了分析.结果表明,玛瑙河表层水体的微塑料平均丰度为(5.9±0.26)n·L-1;上层沉积物中微塑料丰度(以干重计)为(1.35±0.1)n·g-1,下层沉积物中微塑料丰度(以干重计)为(0.93±0.12)n·g-1;近河岸带土壤中微塑料丰度(以干重计)为(0.68±0.16)n·g-1,远河岸带土壤中微塑料丰度(以干重计)为(0.69±0.14)n·g-1;铜锈环棱螺体内微塑料丰度为(2.06±0.25)n·g-1.分析发现,上层沉积物和下层沉积物中微塑料丰度呈正相关;铜锈环棱螺体内微塑料丰度分别与上、下层沉积物中微塑料丰度呈正相关;近、远河岸带土壤中微塑料丰度具有相关性.各环境介质和铜锈环棱螺体内微塑料粒径大多<0.1mm,主要形态为纤维状和碎片状,颜色以蓝色和黑色为主,成分主要是聚丙烯(PP)和聚乙烯(PE).研究发现,河岸带土壤中微塑料主要来源于农用塑料薄膜的破碎和分解.通过多环境介质调查和铜锈环棱螺体内微塑料的分析,探明了大型底栖动物体内微塑料的累积效应,可为全面了解微塑料潜在生态风险提供依据.  相似文献   
120.
毛乌素沙漠东部边缘中β尺度暴雨和冰雹综合分析   总被引:2,自引:1,他引:1  
井喜  屠妮妮  井宇  万红卫  康磊 《灾害学》2010,25(1):73-77
利用多普勒雷达资料、Micaps系统提供的常规观测资料和物理量场,对2006年9月20日发生在毛乌素沙漠东部边缘的一次强对流天气过程进行了分析。结果表明:冰雹和暴雨是由两块呈块状的中β尺度强对流单体造成的;地面能量比中α尺度"Ω"系统的生成,为能量的积聚和集中释放提供了有利条件;地面能量比中β尺度能量比低值舌的生成,为强对流天气的发生提供了抬升触发机制;冰雹和暴雨发生前,涡度场和散度场的耦合、影响雹暴区次级环流的形成,为雹暴的发生维持提供了动力机制;850 hPa等压面上湿正压场和湿斜压场的配合、以及湿位涡的三维空间结构,对雹暴的发生及落区有指示意义;在多普勒雷达径向速度场上,雹暴运动的前方对流层低层有中气旋生成,雹暴运动的后方对流层低层有中反气旋生成,而对流层中高层有辐散生成,且超级单体特征明显。  相似文献   
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