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461.
462.
Christopher J. Woltemade Jinnieth Woodward 《Journal of the American Water Resources Association》2008,44(1):222-234
ABSTRACT: In 2001, the 1.04‐ha Hornbaker wetland in south‐central Pennsylvania was restored by blocking an artificial drainage ditch to increase water storage and hydraulic retention time (HRT). A primary goal was to diminish downstream delivery of nitrate that enters the wetland from a limestone spring, its main source of inflow. Wetland inflow and outflow were monitored weekly for two years to assess nitrate flux, water temperature, pH, and specific conductivity. In Year 2, spring discharge was measured weekly to allow calculation of nitrate loads and hydraulic retention time. Surface runoff was confirmed to be a small fraction of wetland inflows via rainfall‐runoff modeling with TR‐55. The full dataset (n = 102) was screened to remove 13 weeks in which spring discharge constituted < 85% of total inflows because of high precipitation and surface runoff. Over two years (n = 89), mean nitrate‐nitrogen concentrations were 7.89 mg/l in inflow and 3.68 mg/l in outflow, with a mean nitrate removal of 4.19 mg/l. During Year 2 (n = 47), for which nitrate load data were available, the wetland removed an average of 2.32 kg N/day, 65% of the load. Nitrate removal was significantly correlated with HRT, water temperature, and the concentration of nitrate in inflow and was significantly greater during the growing season (5.36 mg/l, 64%) than during the non‐growing season (3.23 mg/l, 43%). This study indicates that hydrologic restoration of formerly drained wetlands can provide substantial water quality benefits and that the hydrologic characteristics of spring‐fed wetlands, in particular, support effective nitrogen removal. 相似文献
463.
Jonathan T. Angier Gregory W. McCarty 《Journal of the American Water Resources Association》2008,44(2):367-380
Abstract: Nonpoint source pollution, which contributes to contamination of surface waters, is difficult to control. Some pollutants, particularly nitrate (), are predominantly transmitted through ground water. Riparian buffer zones have the potential to remove contaminants from ground water and reduce the amount of that enters surface water. This is a justification for setting aside vegetated buffer strips along waterways. Many riparian zone hydrologic models assume uniform ground‐water flow through organic‐rich soil under reducing conditions, leading to effective removal of ground‐water prior to discharge into a stream. However, in a small first‐order stream in the mid‐Atlantic coastal plain, base‐flow generation was highly variable (spatially and temporally). Average base‐flow loads were greater in winter than summer, and higher during a wetter year than in dryer years. Specific sections of the stream consistently received greater amounts of high ground water than others. Areas within the riparian zone responsible for most of the exported from the watershed are termed “critical areas.” Over this 5‐year study, most of the exported during base flow originated from a critical area comprising less than 10% of the total riparian zone land area. Allocation of resources to address and improve mitigation function in critical areas should be a priority for continued riparian zone research. 相似文献
464.
Use of SWAT to Estimate Spatial Scaling of Phosphorus Export Coefficients and Load Reductions Due to Agricultural BMPS
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James E. Almendinger Jason S. Ulrich 《Journal of the American Water Resources Association》2017,53(3):547-561
Phosphorus export coefficients (kg/ha/yr) from selected land covers, also called phosphorus yields, tend to get smaller as contributing areas get larger because some of the phosphorus mobilized on local fields gets trapped during transport to regional watershed outlets. Phosphorus traps include floodplains, wetlands, and lakes, which can then become impaired by eutrophication. The Sunrise River watershed in east central Minnesota, United States, has numerous lakes impaired by excess phosphorus. The Sunrise is tributary to the St. Croix River, whose much larger watershed is terminated by Lake St. Croix, also impaired by excess phosphorus. To support management of these impairments at both local and regional scales, a Soil and Water Assessment Tool (SWAT) model of the Sunrise watershed was constructed to estimate load reductions due to selected best management practices (BMPs) and to determine how phosphorus export coefficients scaled with contributing area. In this study, agricultural BMPs, including vegetated filter strips, grassed waterways, and reduction of soil‐phosphorus concentrations reduced phosphorus loads by 4‐20%, with similar percentage reductions at field and watershed spatial scales. Phosphorus export coefficients from cropland in rotation with corn, soybeans, and alfalfa decreased as a negative power function of contributing area, from an average of 2.12 kg/ha/yr at the upland field scale (~0.6 km2) to 0.63 kg/ha/yr at the major river basin scale (20,000 km2). 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
465.
不同复合人工湿地对高污染河流有机污染物的去除 总被引:1,自引:0,他引:1
为了研究复合人工湿地对高污染河流污水中有机污染物的去除效果及规律,实验构建了不同水力负荷下的潜流+潜流、潜流+表面流、潜流+潜流+表面流、表面流+表面流等人工湿地单元组合成的5个复合人工湿地.连续运行一年以来,各复合人工湿地对BOD5、COD和SS的去除效果分别为91.9% ~94.7%、69.3% ~75.8%和92.3% ~ 93.9%,相对于多级表流湿地,多级潜流湿地更利于有机污染物和悬浮物的去除;BOD5、COD和SS主要在各复合湿地的第一级湿地单元内得到去除;复合人工湿地对COD去除效果秋夏季两季好,春冬两季差;复合人工湿地能有效去除悬浮态BOD5和COD,出水中部分溶解态有机物难以有效降解. 相似文献
466.
基于面向对象分类方法建立汉江流域2000年、2005年和2010年湿地景观数据库。运用湿地景观动态变化指数、强度指数及多度指数等方法分析近10a来汉江流域湿地景观变化的时空分异特征及空间趋向性。结果表明:2000年以来,汉江流域湖泊、河流、水田湿地面积大幅度减少,其中前5a(2000~2005年)湿地变化强度明显高于后5a(2005~2010年)。空间趋向性以湿地景观内部转变和湿地向其他用地转移为主要特征,内部转变以水田与水库坑塘间的转变为主,在空间上呈现3种趋向特征:湖泊周围[0-12]km两者之间转化强度随距离拉大而增大;河流周围两者转变趋势明显,在[4-6] km变化尤为突出;交通用地附近[0-4] km水田与水库坑塘间转变强度高。水田、湖泊和水库坑塘湿地向建设用地的转变是引起区域湿地面积萎缩的重要原因,10a间湿地向建设用地转变总量约为470.43 km2,占湿地变化总量的22.55%。 相似文献
467.
Modeling the Effects of Tile Drain Placement on the Hydrologic Function of Farmed Prairie Wetlands
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Brett Werner John Tracy W. Carter Johnson Richard A. Voldseth Glenn R. Guntenspergen Bruce Millett 《Journal of the American Water Resources Association》2016,52(6):1482-1492
The early 2000s saw large increases in agricultural tile drainage in the eastern Dakotas of North America. Agricultural practices that drain wetlands directly are sometimes limited by wetland protection programs. Little is known about the impacts of tile drainage beyond the delineated boundaries of wetlands in upland catchments that may be in agricultural production. A series of experiments were conducted using the well‐published model WETLANDSCAPE that revealed the potential for wetlands to have significantly shortened surface water inundation periods and lower mean depths when tile is placed in certain locations beyond the wetland boundary. Under the soil conditions found in agricultural areas of South Dakota in North America, wetland hydroperiod was found to be more sensitive to the depth that drain tile is installed relative to the bottom of the wetland basin than to distance‐based setbacks. Because tile drainage can change the hydrologic conditions of wetlands, even when deployed in upland catchments, tile drainage plans should be evaluated more closely for the potential impacts they might have on the ecological services that these wetlands currently provide. Future research should investigate further how drainage impacts are affected by climate variability and change. 相似文献
468.
为了克服人工湿地存在的供氧能力不足、总化学需氧量(TCOD)去除率不高及生物硝化不完全等问题,采用新型的潮汐流人工湿地(TF-CWs)处理分散型生活污水。TF-CWs由四级人工湿地构成,以潮汐流方式运行(运行周期为8h),以提高DO供给量;并以从建筑固体废弃物中回收的砾石和粉煤灰为填料,以强化除磷效果。结果表明,出水水质基本满足《城镇污水处理厂污染物排放标准》(GB 18918—2002)一级A标准,其中NH+4-N、TP的达标率均为100%,TCOD的达标率为98.31%;TF-CWs采用潮汐流方式运行,提高了DO供给能力,强化了对NH+4-N和TCOD的去除效果,其平均去除率分别达到96.78%、86.98%;以建筑固体废弃物粉煤灰砖制成的粉煤灰颗粒为填料的人工湿地对磷的吸附性能良好。TF-CWs可作为分散型生活污水的有效处理工艺之一,而且为建筑固体废弃物的资源化利用提供了新途径。 相似文献
469.
Temporal evolution in PPCP removal from urban wastewater by constructed wetlands of different configuration: a medium-term study 总被引:1,自引:0,他引:1
Reyes-Contreras C Hijosa-Valsero M Sidrach-Cardona R Bayona JM Bécares E 《Chemosphere》2012,88(2):161-167
Pharmaceuticals and personal care products (PPCPs) are widely distributed in urban wastewaters and can be removed to some extent by constructed wetlands (CWs). The medium-term (3-5 years) behaviour of these systems regarding PPCP removal is still unknown. Seven mesocosm-scale (1 m2) CWs of different configurations were operated outdoors for 39 months under the same conditions to assess their PPCP removal ability and temporal evolution. CWs differed in some design parameters, namely plant presence, species chosen (Typha angustifolia vs Phragmites australis), flow configuration and presence/absence of gravel bed (floating macrophytes surface flow, FM-SF; free-water surface flow, FW-SF; free-water subsurface flow, FW-SSF; or conventional horizontal subsurface flow, SSF). PPCP efficiencies decreased throughout time and performance differences among CWs disappeared with the systems aging. This could be due to a homogenization process in the systems caused by detrimental factors like saturation, clogging and shading. Winter efficiencies were lower than summer ones for salicylic acid, caffeine, methyl dihydrojasmonate, galaxolide and tonalide, and seasonal biological activities seem key factors to explain this fact. Maximal removal efficiencies were achieved in an unplanted-FW-SSF for ketoprofen (47-81%), naproxen (58-81%) and salicylic acid (76-98%); in an unplanted-SSF for caffeine (65-99%); in a Phragmites-FM-SF for ibuprofen (49-96%) and diclofenac (16-68%); in a Typha-FM-SF for carbamazepine (35-71%); and in a Typha-FW-SSF for methyl dihydrojasmonate (71-96%), galaxolide (67-82%) and tonalide (55-74%). Photodegradation could be involved in ketoprofen, naproxen, ibuprofen and diclofenac removal. Carbamazepine and diclofenac were moderately removed by the most efficient CWs studied. Carbamazepine might be eliminated by vegetal uptake. 相似文献
470.
城市湿地公园是人们休闲娱乐的重要场所,但其地表灰尘的人群暴露健康风险却鲜有报道。该研究收集昆明市3个最受欢迎的湿地公园景区地表灰尘样品,利用等离子发射光谱仪(ICP-OES)测定灰尘中Pb、Cd、Hg、As、Zn、Cr、Cu、Ni、Co、Mn含量,使用地累积指数法(Igeo)、污染负荷指数法(PLI)和潜在生态风险指数法(RI)探讨湿地公园灰尘重金属污染特征,借助美国环保署健康风险评价模型,开展成人和儿童的重金属健康风险评价。结果表明:灰尘中10种重金属平均含量均超昆明市土壤背景值,其中Cd、Hg和Zn平均含量超背景值6倍,Cr、Ni、Co的Igeo<1。污染负荷指数法结果显示Hg、Cd、Zn中度污染,Pb、Cu和As则具有中等以上生态风险。人体健康风险评价结果显示,经口摄入为重金属主要暴露途径,其次是皮肤直接接触和呼吸吸入。Ni、As、Cd、Co和Cr的致癌风险值均小于10-6,但若长期处于此种环境,可能会存在潜在的致癌风险。对于非致癌元素而言,Pb、Zn、Cu、Mn非致癌健康风险值都远小于1,即风险可以忽略。 相似文献