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1.
2008年5月至2009年4月对升钟水库的浮游植物群落结构进行了研究.结果表明,升钟水库浮游植物共计8门69属219种(含变种和变型),种群结构主要以蓝藻、绿藻和硅藻为主.浮游植物的生物多样性指数平均为1.059,均匀度指数平均为0.192,平均藻类密度为33.41×10 5个/L,标志升钟水库的水体营养程度较高.  相似文献   

2.
新安江水库浮游植物群落特征及影响因素分析   总被引:4,自引:2,他引:2       下载免费PDF全文
为了解新安江水库浮游植物群落特征及影响因素,于2008年1月—2009年12月,对其浮游植物和相关理化因子进行了单月1次的采样。共检测到浮游植物103种(属),浮游植物密度为1.46×106~2.55×107cells/L,年平均密度为6.09×106cells/L,春、秋季出现2个密度峰值;浮游植物组成随季节变化有所不同,春、冬季硅藻、隐藻占优势,夏季蓝藻、绿藻占优势,秋季蓝藻、硅藻占优势;浮游植物密度与TP、Chl-a及上月降水量均呈显著正相关,与透明度呈显著负相关,与TN相关性不明显;水库的水文形势季节性变化显著影响浮游植物结构和密度的变化,浮游植物生长短期效应明显受流域降水和温度双重影响;从大尺度生态效应角度看,食物网的下行效应可能是目前影响新安江水库浮游植物密度的主导因素,大规模滤食性的杂食性鱼类对浮游动物造成较高的捕食压力,间接促进了浮游植物种群的增长;磷是关键的营养盐因子,保持水体低磷浓度和氮磷比大于100,对降低浮游植物密度有现实意义。  相似文献   

3.
1988-2017年洞庭湖共记录浮游植物8门110属,其中蓝藻门15属、绿藻门45属、硅藻门28属、裸藻门7属、甲藻门4属、隐藻门4属、金藻门5属、黄藻门2属。洞庭湖所出现的物种主要是绿藻门、硅藻门和蓝藻门,分别占全湖种类的40.9%、25.5%和13.6%,而其他5门只占20.0%。洞庭湖浮游植物优势种群从20世纪90年代初的以隐藻和硅藻为主转变为目前以硅藻和绿藻为主,在个别湖区(如大小西湖)已经出现以蓝藻为优势种群的现象,洞庭湖已经到了由中营养到轻度富营养化的转折点。洞庭湖浮游植物密度呈显著上升趋势,由20世纪90年代左右的2.06×104 cells/L上升到目前的32.3×104 cells/L。东洞庭湖浮游植物种类和密度显著高于西洞庭湖和南洞庭湖。近30年来分析表明浮游植物密度和种类都与总氮显著正相关,都与溶解氧显著负相关。  相似文献   

4.
于桥水库浮游植物群落特征   总被引:4,自引:1,他引:3  
于桥水库是天津市惟一饮用水水源地,为了研究该水库浮游植物群落特征,于2012年春、夏、秋对于桥水库浮游植物进行了监测分析。结果表明:该水库共鉴定出绿藻(Chlorophyta)、蓝藻(Cyanophyta)、硅藻(Diatoms)、裸藻(Euglenophyta)、甲藻(Pyrrophyta)、隐藻(Cryptophyta)和黄藻(Xanthophyta)7门114种,群落组成以绿藻-硅藻门为主;浮游植物细胞密度具有明显的季节变化规律,表现为春季较低,夏季急剧增长,到了秋季又有所回落。优势种对于桥水库水质的评价结果表明,春季为中营养水体,夏季为富营养化水体,秋季为中富营养水体。春、夏、秋季于桥水库香农-韦弗多样性指数平均值分别为3.22、2.51和3.17,说明2012年于桥水库春季、秋季为贫营养水体,夏季为中营养水体,且有暴发水华的危险。  相似文献   

5.
2012年夏季对金海水库水体物理和化学指标和浮游植物的群落结构组成进行了调查。结果表明,水库整体水质状态较为良好,金海水库夏季综合营养状态指数为42.34,水库水体在一定程度上已经呈现中营养水平向轻度富营养化转化的趋势。通过夏季对金海水库浮游植物的调查,共检出浮游植物27种,其中绿藻门14种,硅藻门7种,甲藻门2种,蓝藻门2种,裸藻门2种。优势种属为绿藻门和硅藻门,其中绿藻门的种类和数量均居于首位。  相似文献   

6.
于2014年5—9月逐月对青岛世园会园区内的天水水库进行了浮游植物群落结构研究,共发现浮游植物7门42属66种,密度变化范围为18.48×104~427.00×104个/L,优势种为克罗脆杆藻(Fragilaria crotonensis)、铜绿微囊藻(Microcystis aeruginosa)和尖尾蓝隐藻(Chroomonas acuta),监测期间浮游植物密度逐渐升高,均匀度和多样性指数呈下降趋势。聚类结果显示,监测区域大致可按月分为3个浮游植物群落,分别为绿藻型、硅藻-隐藻型、蓝藻型。冗余分析表明,氨氮、CODMn及总氮与水库浮游植物的群落结构关系最为密切。水质评价显示,天水水库水质处于中度污染,营养水平为中营养。  相似文献   

7.
北京减河-潮白河水系的浮游植物与水质分析   总被引:1,自引:1,他引:1  
2009年的调查结果显示,在北京减河-潮白河(顺义段)水系的10个监测断面中共检出浮游植物6门72种,其中蓝藻、绿藻、硅藻种数分别占20.8%、38.9%、27.8%。Shannon-Weaver多样性指数为1.45~2.42, 属中度污染。浮游植物平均密度为2991.17×104cells/L, 其中蓝藻、绿藻、硅藻分别占73.6%、8.1%、13.9%,群落中的优势种群均为耐有机污染的富营养型水体指示种。该水系6项理化指标(SD、TN、TP、CODCr、BOD5、 Chla )的TSIM值为86.02~89.66,属于富营养型水体,主要污染物是TP、TN、CODCr。在物理、化学和生物因素的综合作用下TN、TP含量在该水系中的降低率分别为79.36%,74.29%。浮游植物密度与CODCr、Chla呈极显著正相关(P<0.01)。  相似文献   

8.
密云水库浮游藻类和细菌污染现状及趋势分析   总被引:4,自引:0,他引:4  
为评价密云水库水体富营养化的现状及发展趋势,在水库水面不同方位和不同水深分别布点采样,对水库水质的浮游藻类群落结构、密度和卫生学性状进行了初步监测和评价。结果显示,水体浮游藻类总量有增加趋势,但主要群落结构变化不大,仍以绿藻-硅藻型为主;但蓝藻的比例随水温的增加显著;各项卫生学指标基本在正常范围;同时发现其内湖的蓝藻污染较为严重,对大库区水质形成潜在威胁,应予重视。  相似文献   

9.
江阴市主要河流夏季浮游藻类的群落结构及多样性   总被引:1,自引:1,他引:0       下载免费PDF全文
2011年6—8月采集江阴市6条河流的浮游藻类样品,分析其群落结构及物种多样性,并利用多样性指数、指示性类群和硅藻商对水质进行了生物学评价。共检出浮游藻类6门137属种,平均生物量2.38 mg/L,蓝藻、绿藻、硅藻分别占72.3%、10.2%和8.41%。Shannon-Wiener多样性指数、Margalef丰富度指数和Pielou均匀度指数的变幅分别为3.34~3.59、4.75~6.40和0.73~0.75,硅藻商变幅为8.3~16.4。多样性指数评价结果表明,水体处于轻或无污染状态;指示性浮游植物类群和硅藻商评价结果表明,河流处于α中污带-β中污滞-多污滞。相关分析表明,Shannon-Wiener多样性指数与理化水质因子不显著相关,与悬浮物SS显著负相关,与总有机碳显著正相关。研究认为,指示性浮游植物类群或硅藻商更适于作为城市河流水质评价的生物指标。  相似文献   

10.
蓝藻水华暴发过程中水华物种的演替及其与蓝藻毒素的关系,对于湖泊的风险评估具有重大意义。于2017年水华暴发较为严重的夏季(6-8月)对巢湖水体的理化参数、浮游植物和蓝藻毒素进行了调查和分析。结果表明:夏季巢湖基本上处于富营养-超富营养的状态。24个样本共鉴定出浮游植物7门72属117种,以绿藻门、蓝藻门和硅藻门为主。浮游植物的群落组成和细胞密度存在明显的时空差异性,其中6月浮游植物平均细胞密度为1.35×108 cells/L,优势种属主要为微囊藻(Microcystis spp.,优势度为0.397)、水华长孢藻(Dolichospermum flos-aquae,优势度为0.195)和水华束丝藻(Aphanizomenon flos-aquae,优势度为0.181);7月浮游植物平均细胞密度为1.31×108 cells/L,优势种属主要为微囊藻(优势度为0.741)和黏伪鱼腥藻(Pseudanabaena mucicola,优势度为0.072);8月浮游植物平均细胞密度为1.01×108 cells/L,优势种属主要为微囊藻(优势度为0.646)。11种蓝藻毒素在夏季巢湖水体中均有不同程度的检出,其中以微囊藻毒素MC-LR、MC-RR和MC-YR为主,最高检出浓度分别为0.115、0.107、0.018 μg/L。此外,分析了拟柱孢藻毒素浓度与水华束丝藻细胞密度的关系,显示两者之间存在非常显著的正相关性(P<0.01),表明水华束丝藻可能是其最主要的产毒蓝藻。11种蓝藻毒素的浓度均未超过饮用水安全标准的规定,但其潜在的安全风险依然需要密切注意。  相似文献   

11.
显微镜计数法测定浮游植物的研究进展及修订建议   总被引:1,自引:0,他引:1  
介绍了国内外淡水浮游植物密度的测定——显微镜计数法的规范和标准。提出了国外有关标准中关于浮游植物在计数框中的分布要求、计数量与测定精密度的关联、检出限的计算方法等是值得借鉴的内容。通过实验验证了浮游植物在计数框中越符合随机分布,测定的精密度越好;随计数量的增加,观察到的浮游植物种类越多且测定精密度越好。借鉴英国标准BS/EN 15204:2006中关于检出限的定义和计算方法,得出了适用于中国规范中4种常用计数方式的检出限计算方法,并得出4种计数方式的检出限分别为对角线计数4.6×105个/L、行格计数1.5×105个/L、全片计数4.6×104个/L、随机视野计数6.8×105个/L。最后提出了应在中国相关规范中补充浮游植物在计数框中的分布要求、最少计数量与精密度的关联和确定检出限的方法等建议。  相似文献   

12.
成都市河流生态健康评价   总被引:2,自引:2,他引:0  
研究以成都市域内河流为研究对象,通过采样分析得到水质、生境状况、浮游藻类、底栖动物等相关指标,利用综合指标体系法,评价成都市域内河流生态系统健康状况,并结合成都市人口、土地利用、地区生产总值等因素分析人类活动与河流生态健康的关系。结果表明:成都市河流浮游藻类以硅藻和绿藻为主,部分中下游采样点出现以蓝藻为主的情况;底栖动物以指示有机污染的颤蚓科出现的频率最高,约48%的采样点以颤蚓科为优势种;约74%的河流生态健康状况为"差"或"很差",河流生态健康状况整体呈现中上游优于下游、城市周边优于市区的特征;人口密度、人类活动用地比例与河流中氨氮呈显著正相关,人类活动会显著影响河流生态系统健康。  相似文献   

13.
The tropical cyanobacterium Cylindrospermopsis raciborskii is of particular concern for its invasive characteristics and production of the toxin cylindrospermopsin (CYN). The present study represents the first attempt to determine the distribution of C. raciborskii and CYN in tropical China. The presence of C. raciborskii and CYN, as well as the composition of phytoplankton, was determined from a total of 86 samples from 25 urban reservoirs for drinking water supply in Dongguan City of South China. The presence of C. raciborskii was observed in 21 of the 25 reservoirs and confirmed that this species has been widely distributed in the investigated reservoirs. C. raciborskii accounted for between 0.1 and 90.3 % of the total phytoplankton biomass and contributed to the majority of the phytoplankton in some reservoirs such as Tangkengbian and Xiagongyan. Its biomass was negatively correlated with NO3 ?-N concentration and Secchi depth. Dissolved CYN was detected in more than one-half of the reservoirs with concentrations up to 8.25 μg L?1, and it positively correlated with C. raciborskii biomass. Dissolved microcystins (MCs) were detected in 12 of the 25 reservoirs with a maximum concentration 1.99 μg L?1. Our data strongly suggest that C. raciborskii and CYN could be important health hazards in urban reservoirs of South China and that more data are needed for further assessment.  相似文献   

14.
2020年8月15日袁河袁州区段(棚下-袁河水厂取水口)出现溶解氧过饱和现象,为了解该河段溶解氧的变化及提高河道流量前后对水生态环境的影响,将该段河道分为6个监测断面,于8月16—24日监测每个监测点的常规水质、浮游植物群落结构、溶解氧和实时流量.结果表明:自然状态下袁河袁州区段溶解氧沿水流方向从6.8 mg/L逐渐增...  相似文献   

15.
Variability in horizontal zooplankton biomass distribution was investigated over 13 months in the Godavari estuary, along with physical (river discharge, temperature, salinity), chemical (nutrients, particulate organic matter), biological (phytoplankton biomass), and geological (suspended matter) properties to examine the influencing factors on their spatial and temporal variabilities. The entire estuary was filled with freshwater during peak discharge period and salinity near zero, increased to ~ 34 psu during dry period with relatively high nutrient levels during former than the latter period. Due to low flushing time (< 1 day) and high suspended load (> 500 mg L?1) during peak discharge period, picoplankton (cyanophyceae) contributed significantly to the phytoplankton biomass (Chl-a) whereas microplankton and nanoplankton (bacillariophyceae, and chlorophyceae) during moderate and mostly microplankton during dry period. Zooplankton biomass was the lowest during peak discharge period and increased during moderate followed by dry period. The zooplankton abundance was controlled by dead organic matter during peak discharge period, while both phytoplankton biomass and dead organic matter during moderate discharge and mostly phytoplankton biomass during dry period. This study suggests that significant modification of physico-chemical properties by river discharge led to changes in phytoplankton composition and dead organic matter concentrations that alters biomass, abundance, and composition of zooplankton in the Godavari estuary.  相似文献   

16.
滇池浮游藻类群落构成调查   总被引:3,自引:2,他引:1       下载免费PDF全文
对滇池浮游藻类群落组成和空间分布开展了2次调查,鉴定出藻类8门66属159种及变种,绿藻种类最多,蓝藻次之。5、12月滇池全湖平均藻类密度分别为1.398×108、2.180×108个/升,蓝藻门微囊藻属为优势藻类。5月的调查中滇池外海藻类生物量呈北高南低的格局,而12月则呈现南部和中部高,北部低。外海的藻类生物量明显高于草海,草海藻类群落构成与外海明显不同,主要表现为绿藻门藻类所占比例较高。12月滇池外海及全湖藻类生物量都显著高于5月。与上一次(2006—2007年)滇池浮游藻类的系统调查相比,滇池(主要是外海)浮游藻类在物种数量、常见藻类、优势藻类及生物量水平方面与之接近。  相似文献   

17.
This paper examines data obtained since 1976 in Peel Inlet and the Harvey Estuary, a shallow estuarine system in Western Australia, which has nuisance growths of macroalgae and seasonal blooms of the cyanobacterium (blue-green alga)Nodularia spumigena. Data collected at the same sites at weekly or fortnightly intervals include phytoplankton (chlorophylla), water nutrients (nitrogen and phosphorus), salinity, temperature and light penetration. Seasonally, the biomass of macroalgae has been measured at a number of sites and used to estimate total biomass.The data are characterised by large season-to-season differences, attributable to the seasonality and volume of river flow. The information has been used to relate the magnitude of summer blue-green algal blooms to the winter loading of phosphorus from the surrounding catchment, and the magnitude of macroalgal biomass to light penetration through the water column.  相似文献   

18.
Land cover changes affect ecological landscape spatial pattern, and evolving landscape patterns inevitably cause an evolution in ecosystem functionality. Various ecological landscape variables, such as biological productivity (plant biomass and stock capacity), soil nutrients (organic matter and N content) and water source conservation capacity are identified as landscape function characteristics. A quantitative method and digital model for analyzing evolving landscape functionality in the headwaters areas of the Yangtze River, China were devised. In the period 1986–2000, patch transitions of the region's evolving landscapes have been predominantly characterized by alpine cold swamp meadow, with the highest coverage tending to be steppified meadow or steppe, and desertification landscape such as sand and bare rock land expansion. As the result of such changes, alpine swamp areas decreased by 3.08 × 103 km2 and the alpine cold sparse steppe and bare rock and soil land increased by 6.48 × 103 km2 and 5.82 × 103 km2, respectively. Consequently, the grass biomass production decreased by 2627.15 Gg, of which alpine cold swamp meadows accounted for 55.9% of this loss. The overall stock capacity of the headwaters area of the Yangtze River decreased by 920.64 thousand sheep units, of which 502.02 thousand sheep units decreased in ACS (Alpine cold swamp) meadow transition. Soil organic matter and N contents decreased significantly in most alpine cold meadow and swamp meadow landscape patches. From 1986 to 2000 the total losses of soil organic matter and total N in the entire headwaters region amounted to 150.2 Gkg and 7.67 Gkg. Meanwhile, the landscape soil water capacity declined by 935.9 Mm3, of which 83.9% occurred in the ACS meadow transition. In the headwater area of the Yangtze River, the complex transition of landscape resulted in sharp eco-environmental deterioration. The main indication for these changes involved the intensity of the climate in this region is becoming drier and warmer, resulting in a gradual degradation of the permafrost.  相似文献   

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