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1.
伊乐藻—草鱼圈养复合生态系统中水生生物的变化和影响   总被引:2,自引:1,他引:2  
从细菌、浮游植物、浮游动物、底栖动物和有机碎屑等几个方面分析了养鱼对伊乐藻种植区(以下简称为有草区)和无草区水域环境的影响。结果表明:两个区域存在着显著的差异性。有草区由于生长着茂密的水生植被,对环境压迫的缓冲能力增强,水生生物的群落结构较为稳定,物种多样性指数高于无草区,有机物的沉降速率也大大低于无草区。与此相比,无草区对环境压迫的缓冲能力较差,水体浮游植物数量增加,富营养化加剧。通过本项实验可以看出,人工种植伊乐藻对养鱼区水质有着明显地控制作用,是发展生态渔业的一条有效途径。  相似文献   

2.
从细菌、浮游植物、浮游动物、底栖动物和有机碎屑等几个方面分析了养鱼对伊乐藻种植区(以下简称为有草区)和无草区水域环境的影响。结果表明:两个区域存在着显著的差异性。有草区由于生长着茂密的水生植被,对环境压迫的缓冲能力增强,水生生物的群落结构较为稳定,物种多样性指数高于无草区,有机物的沉降速率也大大低于无草区。与此相比,无草区对环境压迫的缓冲能力较差,水体浮游植物数量增加,富营养化加剧。通过本项实验可以看出,人工种植伊乐藻对养鱼区水质有着明显地控制作用,是发展生态渔业的一条有效途径。  相似文献   

3.
刘鑫  王哲  张一  柳光宇  黄诚 《湖泊科学》2003,15(2):184-188
以黄颡鱼夏花培育水体为实验用养殖污水,伊乐藻、轮叶黑藻作为净化水质的沉水植物材料,建立封闭型(非换水)和交换型(定期换水)的两种鱼草共生的生态系统并与传统的商业性养殖系统模式作同步比较,分析了养鱼水体水质主要因子的变化及对鱼存活率的影响.实验结果如下:1.作为实验组的鱼草共生系统两种水体水质优良,鱼类生长良好,交换型水体中D0值≥8.0,NH4—N≤0.34,COD≤18mg/L,悬浮物≤12mg/L夏花成活率为93.3%;封闭型水体中D0值≥7.5,总NH4—N≤0.92,COD≤28mg/L,悬浮物毒20mg/L夏花成活率为60.0%.2.作为对照组有色无草的封闭系统中水质逐渐恶化,鱼类生长受到抑制甚至生存也不能保障,其中,D0值≥2.5,NH4-N≤3.22,COD≤88mg/L,悬浮物≤55mg/L,夏花成活率仅为6.7%;交换系统中D0值≥4.0,总NH4—N≤2.41,COD≤66mg/L,悬浮物≤51mg/L,即使定期换水夏花成活率也仅达66.7%;研究结果表明:鱼草共生系统中栽培伊乐藻、轮叶黑藻等沉水植物可有效地净化水质,不仅确保了夏花生产良性运行,还节约了水资源并达到无污染排放.  相似文献   

4.
采集武昌南湖湖水、沉积物进行沉水植物的盆栽试验,试验设置沉积物未施磷处理和施100mg/kg磷处理,分别对应沉积物低内源磷和高内源磷状态,同时种植菹草、伊乐藻,以研究沉积物中磷形态及上覆水水质的变化特点.研究从2007年9月15日开始,历时160d.结果表明,高内源磷沉积物处理后,上覆水中水溶性总磷含量在沉水植物的作用下明显降低;种植沉水植物可使水体总磷、总氮、叶绿素a含量显著降低,且伊乐藻对总磷的净化效果优于菹草;沉水植物对高内源磷沉积物的上覆水中叶绿素a的控制比对低内源磷条件下的效果更好;无论沉积物是否输入磷,在盆栽条件下,上覆水中叶绿素a随时间的变化均能较好地用一级动力学模型来描述;上覆水TDP、TP与沉积物中Ca_(10)-P之间有极显著正相关;种植菹草或伊乐藻的沉积物中Ca_(10)-P与上覆水中TDP和TP的相关系数分别为0.990(P≤0.01)和0.977(P≤0.05).  相似文献   

5.
在东太湖网围养殖区进行不同放养密度(3000、6000、9000只/hm2)饲喂太湖水草与螺蛳的中华绒螯蟹(Eriocheir sinensis)养殖实验,各处理组均设投喂鱼肉与玉米等外源性饵料的对照,以获得不同养殖模式对中华绒螯蟹生长、品质及养殖水环境的影响,以及利用浅水草型湖泊内源性饵料养殖中华绒螯蟹的适宜放养密度.结果表明,规格和增肉倍数虽然均显著小于相同养殖密度下投喂外源性饵料的对照组,但是各实验组商品蟹体重均能达到150 g;低密度养殖组(3000只/hm2)的产量与对照组无显著差异,其余两组显著低于对照组;而低密度养殖组的河蟹回捕率显著低于对照组,其余两组则无显著差异.实验养殖区水质状况优于投喂外源性饵料的对照区,其TP含量显著低于对照区,投喂外源性饵料会增加水体N、P含量,导致水体富营养化.投喂太湖水草与螺蛳等内源性饵料进行中华绒螯蟹养殖不但可以有效地抑制浅水湖泊水草的疯长,还可通过中华绒螯蟹收获从水体输出N、P营养盐,起到净化水质的作用.不同密度养殖的生态与经济效益对比结果显示,利用草型湖泊内源性饵料养殖中华绒螯蟹的适宜放养密度为6000只/hm2左右.  相似文献   

6.
氮、磷等营养物质对低洼盐碱地鱼塘水质的影响   总被引:4,自引:0,他引:4  
高光  胡文英  李宽意 《湖泊科学》2001,13(4):345-350
通过在实验围隔中添加不同浓度的氮、磷等营养物质,对黄淮海平原低洼盐碱地鱼塘中的水质变化情况进行了初步研究,结果表明:1)围隔水体中异养细菌数量的变动,与水体中氮、磷等营养物质的浓度及比例密切相关,尤其是水体中磷的浓度对异养细菌数量的影响更为显著。2)围隔水体中的氮、磷等营养浓度及比率,明显地影响着其中藻类的数量和生物量。在实验条件下,水体中磷对藻类生长的影响要大于氮对藻类生长的影响,水体中N:P比为10:1左右是比较适宜藻类生长的比例。3)围隔水体中氮、磷等营养盐的去除能力与其中藻类的生物量及水体中N:P的比率密切相关,当围隔水体中的N:P比为10:1左右时,围隔水体中的藻类生长最好,生物量增加最快,相应地其对TN、TP的去除率也是最高的。  相似文献   

7.
伊乐藻-草鱼圈养人工复合生态系统建设的研究   总被引:1,自引:2,他引:1  
十多年来,在长江中下游浅水湖泊,特别是城郊湖泊,围栏圈养草食性鱼类发展迅速,产量大幅度提高,经济效益明显增长。养鱼过程中,由于大量投喂商品饲料和过量利用湖泊水草资源,加之湖滨人口不断增加等多种原因,导致不少草型湖泊水生植被退化,水草消失,加速了湖泊富营养化进程,湖泊整体功能下降。 伊乐藻是1986年从国外引种东太湖的高等沉水植物,已在东太湖归化,并被广大渔民用作草食性养殖鱼类的饲料。本研究是充分利用伊乐藻的生物学和生态学特性,以及易种植、生物量大、可利用程度高等特点,研究了在浅水湖泊人工种植、采收时间和刈割方法,提高其单位面积产量;测定了草鱼对伊乐藻的消化吸收和饲料系数;研究了伊乐藻在水生态系统中的功能等,从而在浅水湖泊中设计和建设伊乐藻—草鱼圈养人工复合生态系统。即以种植伊乐藻为中心,并以它作为草食性鱼类饲料和在水界物质循环的中介,在湖泊大系统内建立的草—鱼平衡系统,以提高湖泊养鱼产量和其他水产品产量,改善渔业水质和优化湖泊生态环境为主要目的。  相似文献   

8.
于桥水库的水质保护与渔业生产   总被引:5,自引:0,他引:5  
王洪起 《湖泊科学》1995,7(4):379-384
大水面增养殖将水体中的氮、磷、有机物转化成鱼产品,并以渔获物的形式输出水体,从而加大水体氮、磷、有机物的输出量,有减缓水体富营养化、净化饮水水质的作用;同时鱼类的摄食、消化、排泄等新陈代谢活动可加速水中氮、磷等物质循环,使藻类繁衍,如果大量放养草鱼还会导致水草资源破坏、生态失衡,对饮水卫生、安全不利;网箱养鱼投入饲料,直接增加了水源有机污染。围网养殖对局部水域生态平衡有破坏作用,放养密度过大,投入  相似文献   

9.
张民  孔繁翔  史小丽  邢鹏  谭啸 《湖泊科学》2007,19(2):118-124
在室内研究了有、无伊乐藻存在条件下,不同水平的氮及氮磷比(N/P)对实验体系中附着藻类和浮游藻类生长的影响,结果表明:1)在有沉水植物的体系中,当氮浓度较高时(5 mg/L),浮游藻类对N/P的变化比附着藻类更为敏感;而当氮浓度较低时(2 mg/L),浮游藻类与附着藻类对N/P的响应则没有显著的差异;2)在有沉水植物的体系中,当N/P为15时,随水体中氮浓度的升高,附着藻类的生物量显著增加,但浮游藻类的变化不显著.当N/P为25时,随水体中氮浓度的升高,浮游藻类及附着藻类的生物量均显著升高;3)附着藻类的生物量在无沉水植物(伊乐藻)存在的情况下要比有沉水植物(伊乐藻)存在时高得多,且随氮浓度升高,其生物量的增加量也远高于后者.而对浮游藻类而言,情况则完全相反.  相似文献   

10.
伊乐藻,轮叶黑藻净化养鱼污水效果试验   总被引:27,自引:0,他引:27  
高光 《湖泊科学》1996,8(2):184-188
在实验室条件下.对伊乐藻及轮叶黑藻净化养鱼污水的能力进行了比较研究。结果表明:(1)伊乐藻和轮叶黑藻对养鱼污水中的N、P等物质有较好的净化效果。在96h内,它们对TN、TP、PO_4~(3-)-P、NH_4~+-N、NO_3~--N、COD_(Mn)的平均净化率分别为:60.7%,53.6%.74.4%.59.7%,75.1%,63.2%;61.8%,54.2%.85.3%,81.8%,31.4%,33.5%。(2)水生植物在净化过程中,其效率受温度、光照、及水体中营养盐浓度等外界条件的制约。(3)微生物在水生植物净化养鱼污水的过程中起着重要的作用。  相似文献   

11.
伊乐藻等水生高等植物的快速营养繁殖技术和栽培方法   总被引:16,自引:5,他引:16  
在太湖自然条件下,伊乐藻等7种沉水植物主要靠营养繁殖来延续和扩大种群。在浅水湖泊的生态恢复中,需要在短期内大面积恢复水生植被,营养繁殖与栽培为之提供了有效的手段。在五里湖的实验研究结果表明,伊乐藻、黑藻和金鱼藻的插枝繁殖简单易行,可以大面积操作,种源充足,栽植期长,适合于大规模繁殖和栽培。苦草、微齿眼子菜和马来眼子菜营养繁殖力较差,可以分苗移栽,但效率较低,操作比较困难。苦草地下块茎和马来眼子菜根状茎的采集和栽植更加困难,不宜采用这种繁殖与栽培方式。  相似文献   

12.
Recent research has shown that planting deep-rooted trees, such as poplar, can take up and degrade important ground water pollutants such as trichloroethylene (TCE) as they transpire water from the capillary fringe of shallow contaminated aquifers. The effect of hydrogeologic factors on the minimum plantation area needed to prevent downgradient migration of contaminated ground water is not well known. Accordingly, the objective of this research was to identify the hydrogeologic parameters that control phytoremediation effectiveness. We used a numerical ground water flow model to evaluate the effect that natural variations in hydrogeologic parameters and growing season duration have on the minimum plantation area required for capture. We found that the plantation area that was needed to completely capture a ground water contamination plume was directly proportional to aquifer horizontal hydraulic conductivity, saturated thickness, and ground water gradient. The plantation area needed for capture increased nonlinearly with increasing plume width, aquifer anisotropy, and decreasing growing season duration. The plantation area needed for capture was generally insensitive to aquifer-specific yield and storativity. Steady-state simulations can be used to predict the plantation area needed for capture in many applications. A particularly important finding of this work is that evapotranspiration fluxes through plantations appropriately sized to contain the plume substantially exceeded the ground water flux through the plume itself.  相似文献   

13.
Our aim was to quantify the effects of forest plantation and management (clear cut or 30% partial harvest) in relation to pasture, on catchment discharge in southeast Rio Grande do Sul state, Brazil. A paired‐catchment approach was implemented in two regions (Eldorado do Sul and São Gabriel municipalities) where discharge was measured for 4 years at three catchments in each region, two of which were predominantly eucalypt plantation (mainly Eucalyptus saligna, rotation of approximately 7–9 years) with native forest and grass in streamside zones. The third catchment was covered with grazed pasture. Weather, soils, canopy interception, groundwater level, tree growth, and leaf area index were also measured. The 3‐PG process‐based forest productivity model was adapted to predict spatial daily plantation and pasture water balance including precipitation interception, soil evaporation, transpiration, soil moisture, drainage, discharge, and monthly plantation growth. The TOPMODEL framework was used to simulate water pools and fluxes in the catchments. Discharge was higher under pasture than pre‐harvesting plantation and increased for 1–2 years after complete plantation harvest; this change was less pronounced in the catchments under partial harvest. The ratio of discharge to precipitation before harvesting varied from 7% to 13% in the eucalypt catchments and 28% to 29% under pasture. The ratio increases to 23–24% after total harvest, and to 17% after partial harvesting. The ratio under pasture also increases during this period (to 32–44%) owing to increased precipitation. The baseflow, in relation to total discharge, varied from 28% to 62% under Eucalyptus and from 38% to 43% in the pasture catchments. Hence, eucalypt plantations in these regions can be expected to influence discharge regimes when compared with pasture land use, and modelling suggests that partial harvesting would moderate the magnitude of discharge variation compared with a full catchment plantation harvesting. The model efficiency coefficient (Nash–Sutcliffe model efficiency coefficient) varied from 0.665 to 0.799 for the total period of the study. Simulation of alternative harvesting scenarios suggested that at least 20% of the catchment planted area must be harvested to increase discharge. This model could be a useful practical tool in various plantation forestry contexts around the world. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   

14.
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   

15.
Fast-growing forest plantations have been expanding in Brazil in the last 50 years, which reach productivities by over 40 m3 ha−1 year−1 in reduced rotation between 5 and 15 years. In the 1990s, environmental warnings about these plantations guided research projects seeking to understand their effects on water and propose forest management actions to minimize them. The assessment of forest management effects on water resources is conducted by long-term experiments in paired catchments. In this paper we present results of some studies conducted at the hydrological monitoring centre of Itatinga Experimental Forest Station, of the University of São Paulo, where hydrological monitoring began in 1987, and currently include three catchments (83–98 ha) under different forest management regimes: short-rotation Eucalyptus plantation, long-term forest plantation mosaic and native forest restoration. Results show that at similar conditions observed at study area including deep soils and good natural water regulation, hydrological effects vary according to the forest management regime adopted, increasing water consumption and making the flow regime vulnerable to intra- and inter-annual seasonality. Regarding water quality, weekly sampling results showed suspended sediments and nitrate concentrations below water quality thresholds criteria by silvicultural operations, and the effects were transient but higher concentrations of nutrients were observed in intensive management regime. In the study area, reducing the management intensity of forest plantation by increasing the rotation time, adopting forest age mosaic and avoiding the coppice technique are alternative choices that reduced water use and increased flow regulation. Different adopted forest management schemes directly affected water use, showing that in water-deficit tropical regions, management regime of fast-growing forest plantations controls water availability.  相似文献   

16.
Barry Fahey  John Payne 《水文研究》2017,31(16):2921-2934
This paper presents results from 34 years of the Glendhu Experimental Catchment Study, established in 1979 by the former New Zealand Forest Service in upland east Otago in New Zealand's South Island to determine the hydrological consequences of converting indigenous tussock grassland to plantation forestry. A traditional paired catchment approach was adopted; after a 2.5‐year pretreatment period, one catchment (GH2, 310 ha) was planted over two thirds of its area in Pinus radiata, and an adjacent catchment (GH1, 216 ha) was left in tussock as a control. The average annual reduction in water yield from the planted catchment between canopy closure in 1991 and 2013, compared with that in tussock, was 273 mm (33%). Annual water yields from the planted catchment continued to decline relative to the tussock catchment until 2010. Since then, the difference in annual water yields between the two catchments has narrowed. Ripping before planting caused some redistribution of the total streamflow from stormflow to baseflow. Following canopy closure, afforestation has reduced the low flow (Q95) by an average of 26% compared with the tussock catchment. Average peak flows for small events (2–5 L/s/ha) were reduced by 78%, but only by 37% for larger, less frequent storms (>15 L/s/ha), suggesting that peak flows during high magnitude storms are less dependent on the prevailing land cover.  相似文献   

17.
The heat-pulse technique was used to estimate year-long water uptake in a discharge zone plantation of 9-year-old clonal Eucalyptus camaldulensis Dehnh. near Wubin, Western Australia. Water uptake matched rainfall closely during weter months but exceeded rainfall as the dry season progressed. Average annual water uptake (1148 mm) exceeded rainfall (432 mm) by about 2.7 fold and approached 56% of pan evaporation for the area. The data suggest that at least 37% (i.e. (1/2.7) × 100) of the lower catchment discharge zone should be planted to prevent the rise of groundwater.

Water uptake varied with soil environment, season and genotype. Upslope trees used more water than did downslope trees. Water uptake was higher in E. camaldulensis clone M80 than in clone M66 until late spring. The difference reversed as summer progressed. Both clones, however, have the potential to dry out the landscape when potential evapotranspiration exceeds rainfall. This variation in water uptake within the species indicates the potential for manipulating plantation uptake by matching tree characteristics to site characteristics.

Controlled experiments on the heat-pulse technique indicated accuracy errors of approximately 10%. This, combined with the ability to obtain long-term, continuous data and the superior logistics of use of the heat-pulse technique, suggests that results obtained by it would be much more reliable than those achieved by the ventilated chamber technique.  相似文献   


18.
洪泽湖养殖网围拆除生态效应   总被引:2,自引:0,他引:2       下载免费PDF全文
为研究湖泊网围养殖对湖泊生态系统的影响,2018年全年3次于洪泽湖养殖网围及主要出入湖河道开展调查,通过对比洪泽湖不同区域(河口、湖心、网围区、外围区和拆除区)水质及水生生物的空间分布特征,分析养殖网围拆除后湖泊生态系统的响应机制.结果表明,洪泽湖不同区域的水质及水生生物群落结构存在明显差异,其中养殖区水体总氮、总磷及悬浮颗粒物浓度明显低于河口和湖心,但浮游动植物密度及生物量则整体高于河口和湖心,且养殖区蓝藻、轮虫所占比重较高,这种分布差异很大程度上受外源输入及水动力条件影响.与之相对,养殖区内网围区、拆除区和外围区的水质及水生生物群落结构差异并不明显,表明养殖网围拆除后的短期时间内水质并未明显改善,且高藻类密度、低透明度的水体环境也不利于沉水植物的萌发生长与群丛恢复,有必要进一步采取合理有效的生态修复措施促进养殖迹地生态系统的恢复.  相似文献   

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