首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 93 毫秒
1.
2006—2007年对东太湖网围养殖区及航道水生植物种群结构和水环境状况进行了调查.结果表明:采样区内共有水生植物10种,其中沉水植物6种、浮叶植物3种、漂浮植物1种;养殖区植物种类较单一,耐污染、再生能力强以及水质净化能力好的金鱼藻、狐尾藻和伊乐藻在养殖区呈优势种分布;航道和敞水区优势种类为苦草和马来眼子菜.从水生植物生物量变化来看,9月生物量最高,平均为2882.4±748.8g/m^2;养殖区水生植物生物量高于航道和敞水区,两个网区平均可达1251.2±1012.7g/m^2、993.9±968.6g/m^2.水生植物与水环境相互关系来看,温度、透明度和pH等水体物理环境因子对水生植物季节生长和光合作用具有重要影响;水生植物具有吸收水体氮磷营养盐和抑制藻类生长的作用,从而改善了东太湖水质,同时植物季节性生长以及空间分布差异也影响水质时空差异.  相似文献   

2.
闫云君  李晓宇 《湖泊科学》2006,18(4):437-442
大型底栖动物群落在河流生态系统中发挥着重要作用,2003年6月至2004年6月间对汉江流域2级河流——黑竹冲河大型底栖动物优势种类的生活史和生产力进行为期一周年的研究.结果表明:主要优势种圆顶华溪蟹(Sinopotamon teritisum Dai et al.)生活史周期基本为四年,每年8—10月为主要繁殖季节,衰老个体(体宽〉29mm)在每年的1—2月份死亡较多;现存量在一周年中变化较大,密度9月份达到峰值,为35ind/m^2,生物量在6月达到峰值,为41.7g/m^2;采用体长频率分布法(size—frequency method)测算的周年生产量为151,3071g/(m^2.a),P/B系数为1.4.在其胃内含物中,无形态碎屑占45.4%,虾占10.9%、水生昆虫占35.6%、螺占5.7%、植物组织占8.1%,对次级生产量的贡献率分别10.84%、18.21%、59.49%、9.52%和1.94%.  相似文献   

3.
高效净化氮磷污水的湿地水生植物筛选与组合   总被引:14,自引:2,他引:12       下载免费PDF全文
抚仙湖流域未进行生态修复的磷矿废弃地面积142×10^4m^2,对磷矿废弃地污染物流失量和区域内径流污染物含量进行调查观测,并提出磷矿废弃地水污染防治对策.富磷矿石剖面和堆土场在风化作用和降雨淋溶作用下,大量氟、磷等元素释放,造成磷矿区内地表径流和地下渗流污染结合实测的磷矿废弃地面积和土柱淋溶实验得到的污染物淋溶量,估算得到磷矿废弃地每年F和TP的淋溶流失量为60.65t/a和2734t/a,随地表径流迁移进入抚仙湖的F和TP分别为22.58t/a和7.27t/a由此可见,磷矿开采是抚仙湖的一个持久污染源,对湖泊营养化演变进程起了推动作用。  相似文献   

4.
东营凹陷古近系古湖盆演化与水化学场响应   总被引:12,自引:2,他引:10       下载免费PDF全文
陈中红  查明  刘太勋 《湖泊科学》2008,20(6):705-714
采用人工配制污水为实验用水进行室内水培实验,研究10种人工湿地中常见水生植物对氨氮和总磷的同化吸收能力,筛选出净化效果好的植物,构建植物组合,以单一植物为对照,研究植物组合对于提高氨氮、总磷净化效果的作用.结果表明:不同植物对氨氮、总磷的去除能力差别较大千屈菜(Lythrum salicaria)、菖蒲(Acorus calamus)、美人蕉(Cannindica)、达香蒲(Typha davidiana)对氨氮净化效果较好,初始浓度2969mg/L、15d后,去除率966%、98.6%、877%、95.1%美人蕉、凤眼莲(Eichhornia crssipes)、干屈菜、石菖蒲(Acorus tartarinowii)对TP净化效果较好,初始浓度4.44mg/L、15d后,去除率99.0%、546%、69.9%、36.7%千屈菜与石菖蒲的组合能同时提高氨氮与总磷的净化效果;美人蕉与干屈菜的组合、菖蒲与美人蕉的组合、菖蒲与千屈菜的组合、美人蕉与石菖蒲的组合能提高总磷的净化效果组合实验结果表明,适当的水生植物组合能提高氨氮与总磷的净化效果。  相似文献   

5.
香蒲、灯心草人工湿地的研究——Ⅰ.净化污水的效果   总被引:70,自引:5,他引:70  
本文研究了种植香蒲Typha angustifolia或灯心草Juncus effusus的人工湿地对城镇污水和人工不污染物的净化效果,调查了香蒲,灯心草不同季节的生长差异及高浓度污水冲击负荷对其生长的影响。香蒲,灯心草人工湿地净化城镇污水,出水水质总体上达到国家Ⅱ,Ⅲ类地面水标准,灯心草湿地对人工污水中凯氏氮,总磷,化学耗氧量地去除率维持在94%以上,氨氮的去除率为82.7%-99.7%;在正常  相似文献   

6.
江苏省水库底栖动物调查及其综合评价   总被引:11,自引:0,他引:11  
于1998年5月-1999年5月对江苏省48座大中型水库底栖动物进行了调查.鉴定的底栖动物计75属种,优势种类为尾鳃蚓属(Branichiura)、水丝蚓属(Limnodrilus)、管水蚓属(Aulodrilus)、长足摇蚊属(Pelopia)、隐摇蚊(Cryptochironomus)等5属.底栖动物密度为288.4ind./m^2,变动范围43.2-928.2ind./m^2;生物量为8.753g/m^2,变动范围0.235—61.884g/m^2.北部、中部、南部水库各类底栖动物的季节变化呈现较大的差异.用Goodnight & Whitley生物指数和Wright寡毛类密度法评价水库水质,除少数水库有轻度污染外,水质状况总体良好.用能量估算法估算水库底栖动物的平均渔产潜力为5.8kg/hm^2。  相似文献   

7.
人工湿地复合基质深度净水除磷实验   总被引:4,自引:0,他引:4  
通过垂直上升流人工湿地模拟柱实验,研究了泥炭、蛭石、砾石以不同体积比(柱1比例1:1:3,柱2比例1:1:2, 柱3比例1:1:1,柱4全为砾石)组成的复合基质对人工湿地出水的深度除磷效果.结果表明,填充复合基质的柱1-3对总磷和正磷酸盐的处理效果较好,去除率分别达到了77%和90%以上,明显优于填充单一基质砾石的柱4(27%和 21%);蛭石、泥炭价格远高于砾石,从经济、有效的原则出发,用蛭石、泥炭、砾石以1:1:3的体积比例混合作为复合填料比较合理;该复合基质适合于水质深度净化,在进水总磷浓度不超过0.1 mg/L的情况下,除磷效果相当稳定,可以保证 0.02mg/L以下的出水浓度(地表Ⅲ类水质标准),并达到80%左右的去除率;遇到高浓度磷污染负荷冲击时,磷去除率会降低;该复合基质的除磷机制主要为吸附净化,单独使用易吸附饱和,而与人工湿地中与湿地植物的吸收净化衔接起来,就能形成稳定持久的除磷效果.  相似文献   

8.
人工湿地对城市污染河水的净化效果及机理   总被引:15,自引:2,他引:15       下载免费PDF全文
赵建  朱伟  赵联芳 《湖泊科学》2007,19(1):32-38
针对采用人工湿地系统净化镇江市内污染较为严重的古运河河水中遇到的问题,采用复合垂直流人工湿地小试装置,研究人工湿地系统对污染河水的净化效果及净化机理.镇江古运河水质调查结果表明,河水中悬浮态污染物质含量较高,为劣V类水体;当水力负荷为750mm/d时,人工湿地系统对CODMn去除率约为50%-60%,TN去除率约为40%-50%,TP去除率约为30%-40%,能够将劣V类水处理为Ⅳ类水甚至Ⅲ类水,表明其对污染河水处理的有效性.研究人工湿地内部污染物浓度的沿程变化规律,可以发现河水中污染物质的去除主要发生在湿地下行池,尤其是表层30 cm处,而上行池未能发挥应有的作用,分析表明与可能与污染河水中的碳氮比有一定的关系.通过本次实验发现湿地表层对污染物的去除表现为滤料及植物根系的过滤、吸附、截留以及微生物的降解、植物吸收等综合作用.  相似文献   

9.
云南星云湖大街河口湖滨湿地修复及净化效果   总被引:3,自引:2,他引:3       下载免费PDF全文
星云湖入湖污染物负荷量80%来自面源,而河道是输送污染物的主要通道,为了削减入湖污染物,在大街河口末端修复湖滨湿地4.5 hm2,恢复湖湾沉水植物28.8 hm2,对表流湿地及沉水植物的净化效果进行了试验研究.研究结果表明,由于水生植物庞大的表面积吸附、分解和吸收作用、水质净化水质效果十分明显,净化大街河水317.8×104 m3/a,SS、BOD5、CODMn、TN、TP的去除率分别为82.8%、60.1%、52.8%、49.2%、40.7%.河口湖滨湿地的修复不仅净化了水质,而且改善了河湾景观,恢复了湖泊生物多样性.  相似文献   

10.
李正魁  濮培民 《湖泊科学》2000,12(4):321-326
本文依据太湖秋冬季水体氮污染的特点,应用辐射增殖氮循环细胞进行了净化湖水氮污染的动态模拟实验,研究结果表明,富营养化湖水经固定化氮循环净化后,总氮下降72.4%,氨氮下降85.6%,出水水质得到明显改善,固定化氮循环细茵在冬季低温(7℃)条件下仍保持了较高的降氮能力,总氮和氨氮去除率分别为55.6%,58.9%,降氮效果与湖水滞留时间有关,探讨了固定化氮循环细茵的降氮机理。  相似文献   

11.
Declining water quality on the south coast of Western Australia has been linked to current agricultural practices. Riparian buffers were identified as a tool available to farmers and catchment managers to achieve water quality improvements. This study compares 10 m wide regenerating grass and Eucalyptus globulus buffer performance. Surface and subsurface water quality were monitored over a 3‐year period. Nutrient and sediment transport were both dominated by subsurface flow, in particular through the B‐horizon, and this may seriously limit the surface‐runoff‐related functions of the riparian buffers. Riparian buffer trapping efficiencies were variable on an event basis and annual basis. The grass buffer reduced total phosphorus, filterable reactive phosphorus, total nitrogen and suspended sediment loads from surface runoff by 50 to 60%. The E. globulus buffer was not as effective, and total load reductions in surface runoff ranged between 10 and 40%. A key difference between the grass and E. globulus buffers was the seasonality of sediment and nutrient transport. Surface runoff, and therefore sediment and nutrient transport, occurred throughout the year in the E. globulus buffer, but only during the winter in the grass buffer. As a consequence of high summer nutrient and sediment concentrations, half the annual loads moving via surface runoff pathways through the E. globulus buffer were transported during intense summer storms. This study demonstrates that grass and E. globulus riparian buffers receiving runoff from pasture under natural rainfall can reduce sediment and nutrient loads from surface runoff. However, in this environment the B‐horizon subsurface flow is the dominant flowpath for nutrient transport through the riparian buffers, and this subsurface flow pathway carries contaminant loads at least three times greater than surface runoff. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   

12.
Rainfall takes many flowpaths to reach a stream, and the success of riparian buffers in water quality management is significantly influenced by riparian hydrology. This paper presents results from hydrometric monitoring of riparian buffer hydrology in a pasture catchment. Runoff processes and riparian flowpaths were investigated on two planar hillslopes with regenerating grass and E. globulus buffers. Surface runoff and subsurface flows (A‐ and B‐horizons) were measured for 3 years using surface runoff collectors, subsurface troughs and piezometers. Water volumes moving through the riparian buffers via the measured flowpaths were ranked B‐horizon ? surface runoff ≈ A‐horizon. Runoff volumes through the B‐horizon troughs were an order of magnitude greater than those recorded for the most productive surface runoff plots or the A‐horizon troughs. Subsurface runoff and saturation‐excess overland flow (SOF) were limited to the winter months, whereas infiltration‐excess overland flow (IEOF) can occur all year round during intense storms. Surface runoff was recorded on 33 occasions, mostly during winter (late May–early October), and total annual surface runoff volumes collected by the 20 unconfined (2 m wide) runoff plots varied between > 80 and < 20 m3. Subsurface flow only occurred in winter, and the 6 m wide B‐horizon subsurface troughs flowed above 1 l s?1 continuously, whereas the A‐horizon troughs flowed infrequently (<6 days per year). In summer, surface runoff occurred as IEOF during intense storms in the E. globulus buffer, but not in the grass buffer. Observations suggest that surface crusting reduced the soil's infiltration capacity in the E. globulus buffer. During winter, SOF and seepage were observed in both buffers, but subsurface flow through the B‐horizon was the dominant flowpath. Key hydrologic differences between the grass and tree buffers are the generation of IEOF in the E. globulus buffer during intense summer storms, and the smaller subsurface runoff volumes and fewer flow days in the E. globulus buffer. Low surface runoff volumes are likely to limit the potential of these buffers to filter pollutants from surface runoff. High subsurface flow volumes and saturated conductivities are also likely to limit the residence time of water in the subsurface domain. Based on their hydrologic performance, the key roles of riparian buffers in this landscape are likely to be displacing sediment and nutrient‐generating activities away from streams and stabilizing channel morphology. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   

13.
The United States Department of Agriculture (USDA) Annualized Agricultural Non-Point Source Pollution model (AnnAGNPS) is used to help evaluate a watershed response to agricultural management practices to control water quality. However, AnnAGNPS version 3.5 does not contain features to estimate the effect of a riparian buffer (RB) system on water quality. The Riparian Ecosystem Management Model (REMM) is used to simulate the impact of riparian buffer systems on water quality. However, frequently the lack of measured upland loadings that are required by REMM simulation limits the application of REMM. To address this data gap, a study was conducted to integrate AnnAGNPS with REMM for RB system simulation. AnnAGNPS was used to simulate water and sediment loadings from an upland field into a three-zone RB system at the Gibbs Farm located in the Georgia coastal plain. These AnnAGNPS outputs were used as the inputs to REMM. REMM was used to simulate water and sediment movement along the riparian buffers. The AnnAGNPS simulated amount of annual runoff at the edge of the field was close to observed amounts (Nash-Sutcliffe efficiency of 0.92). It is believed that a substantial portion of sand was removed from the runoff one meter into the grass buffer where the samplers were located; therefore, sand was excluded from the AnnAGNPS simulation for comparison with observed sediment. Excluding sand, the AnnAGNPS predicted amount of annual sediment matches the observed amount fairly well (Nash-Sutcliffe efficiency of 0.46). In addition, based on evaluating the percent reduction of sediment at each zonal interface, the AnnAGNPS/REMM model well simulated the function of the RB system to reduce sediment.  相似文献   

14.
Riparian buffer zones in agriculture dominated watersheds play important roles in reducing nonpoint source pollution into aquatic ecosystems and are widely used as a Best Management Practice. Assessment of the effectiveness of riparian buffer zones by modeling method is widely used for watershed management as field measurement‐based assessment is difficult and expensive. The integration of Riparian Ecosystem Management Model (REMM) and Soil and Water Assessment Tool (SWAT) has been developed to simulate the effect of nonpoint source pollution reduction by riparian buffer zones at subbasin scale. However, there are problems in using the integrated model at subbasin scale, as the size of subbasin partition could affect the pollutant reduction rate by riparian buffers. In this study, we partitioned a large watershed with size of 1331 ha into sub‐watersheds with sizes of 666, 333, 166, 83, 51, and 29 ha, and then compared the different simulation results. We found that the modeling could yield more convergent results when the sub‐watersheds were partitioned into suitable size. In the studied area, the suitable sub‐watershed size was less than about 166 ha for runoff and nitrogen and 83 ha for sediment and phosphorus. Among the eight sub‐watersheds (partitioned based on the size of 166 ha), results showed that the effects of riparian buffers on runoff and nutrient loading varied drastically. The reduction rate varied from 0.26% to 30.13% for runoff, 29.4% to 74.07% for sediment, 9.61% to 57.85% for nitrogen, and 18.61% to 68.12% for phosphorus, respectively.  相似文献   

15.
Active wildfire seasons in the western U.S. warrant the evaluation of post-fire forest management strategies. Ground-based salvage logging is often used to recover economic loss of burned timber. In unburned forests, ground-based logging often follows best management practices by leaving undisturbed areas near streams called stream buffers. However, the effectiveness of these buffers has not been tested in a post-wildfire setting. This experiment tested buffer width effectiveness with a novel field-simulated rill experiment using sediment-laden runoff (25 g/L) released over 40 min at evenly timed flow rates (50, 100 and 150 L/min) to measure surface runoff travel length and sediment concentration under unburned and high and low soil burn severity conditions at 2-, 10- and 22-month post-fire. High severity areas 2-month post-fire had rill lengths of up to 100 m. Rill length significantly decreased over time as vegetation regrowth provided ground cover. Sediment concentration and sediment dropout rate also varied significantly by soil burn severity. Sediment concentrations were 19 g/L for the highest flow 2-month post-fire and reduced to 6.9–14 g/L 10-month post-fire due to abundant vegetation recovery. The amount of sediment dropping out of the flow consistently increased over the study period with the low burn severity rate of 1.15 g L−1 m−1 approaching the unburned rate of 1.29 g L−1 m−1 by 2-year post-fire. These results suggest that an often-used standard, 15 m buffer, was sufficient to contain surface runoff and reduce sediment concentration on unburned sites, however buffers on high burn severity sites need to be eight times greater (120 m) immediately after wildfire and four times greater (60 m) 1-year post-fire. Low burn severity areas 1-year post-fire may need to be only twice the width of an unburned buffer (30 m), and 2-year post-fire these could return to unburned widths.  相似文献   

16.
17.
富营养化湖泊水体中藻蓝蛋白提取方法的对比   总被引:1,自引:1,他引:0       下载免费PDF全文
藻蓝蛋白是蓝藻的指示型色素,目前还没有标准的提取方法,特别是萃取剂的选择品种较多,对测量结果影响较大.分别以室内培养的铜绿微囊藻和巢湖夏季野生蓝藻为提取对象,运用液氮反复冻融法破碎蓝藻细胞,分别以Asolctin-CHAPS缓冲液(AC)、磷酸盐缓冲液(PBS)和Tris-HCl缓冲液来提取藻蓝蛋白,通过分光光度法分析提取液的吸收光谱、藻蓝蛋白浓度以及藻蓝蛋白浓度与叶绿素a浓度的相关性,比较3种缓冲液的提取效果.结果显示:3种缓冲液提取的藻蓝蛋白提取液在620 nm处都出现了藻蓝蛋白的特征吸收峰,但AC缓冲液和PBS缓冲液提取效率明显高于Tris-HCl缓冲液.另外,虽然AC缓冲液提取效率最高,但其成本昂贵、配制过程复杂且不易控制、难保存,不适宜大规模地推广应用;而PBS缓冲液的提取效率略低于AC缓冲液,但其配制方便快捷,更适合于大规模湖泊水质监测的要求,因此推荐PBS缓冲液作为常用的藻蓝蛋白提取液.  相似文献   

18.
The aim of this paper is to propose a method to detect the functionality of riparian vegetation as buffers/filters/trap against soil runoff and polluting agents caused by agricultural land and erosion areas, near the river. The suspended sediment yield (SSY) is the main vector for pollutants and nutrients generated from the runoff, in the Apennines torrents, indeed finer particles of the soil and their aggregates were proved to be the preferential vehicle of nitrogen, phosphorus, and other polluting agents. The stages of the current study were to spot soil erosion critical areas by the application of Universal Soil Loss Equation (USLE), on a river strip buffer of 200 m, with support of aerial photos and satellite images, land surveys, and application of a G. I. S. The riparian vegetation analysis, on a 20 m wide buffer, was obtained on the basis of ecologic richness, the structural quality, and the depth of the vegetation. The two maps obtained, “erosion risk strip” and “degree of effectiveness of riparian vegetation”, were connected to identify, for every river trunk, the level of functionality of the riparian vegetation in relation to the level of risk erosion on the near hill slopes. The methodology was applied on the Gaiana torrent, near Bologna, North Italian Apennines, where both basin soil loss and SSY have been well studies. The proposed methodology has been designed for the control of water pollution induced by suspended solids, pollutants, and nutrients coming from soil erosion and as a tool to improve the quality of the river environment. The method has the advantage of being easily applicable and can represent a basic tool for stakeholders to take decisions regarding the control and improvement of the river and it can suggest ways to improve or replant the degraded vegetation on the stream banks.  相似文献   

19.
基于GIS缓冲区分析和叠加分析的空间分析方法,定量研究南黄海活动断层与地震的关系.通过对震中与10 km和20 km断层缓冲区的叠加分析得出断层缓冲区内地震的数量,从中看出:走向NE~NEE向断裂是控制地震发生的主要活动断裂;通过对断层和震中缓冲区的叠加分析得出对地震发生有影响的断层的数量.  相似文献   

20.
天目湖流域丘陵山区典型土地利用类型氮流失特征   总被引:4,自引:2,他引:2  
天目湖丘陵山区农业综合开发持续推进,大量林地转变为茶园,迫切需要认识茶园扩张对流域氮流失的影响.本研究选取茶园、次生马尾松林和毛竹林开展自然降雨条件下的径流小区实验,分析天目湖丘陵山区典型用地类型径流氮流失规律,为评估丘陵山区综合开发的水环境影响提供实测参数.研究表明:茶园、次生马尾松林和毛竹林地表径流TN浓度分别为11.25、2.83和3.60 mg/L,均以溶解态为主;壤中流TN浓度分别为27.16、3.59和1.06 mg/L,茶园和次生马尾松林均以溶解性无机氮(尤其是硝态氮)为主,毛竹林以溶解性有机氮为主;茶园、次生马尾松林和毛竹林的小区尺度地表径流系数均不到0.03,壤中流是丘陵山区径流的主要来源;茶园开发加剧了丘陵山区的氮素流失,茶园径流TN流失强度高达103.08 kg/(hm2·a),分别是次生马尾松林和毛竹林的7.6和23.2倍,壤中流贡献了流失总量的86.7%~99.7%.防治茶园径流氮流失需重点关注壤中流输出,在减量施肥的基础上,采取坡脚构建毛竹林生态缓冲带/在小流域出口布设塘坝等原位拦截措施,实现流域氮流失综合防控.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号