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1.
辽宁大伙房水库水质生态学监测的研究   总被引:6,自引:2,他引:4  
1961~1996年对大伙房水库6个站进行了不同季节浮游植物、底栖动物群落特征的生态调查.共发现藻类8门,174种,底栖动物34种,分析了水生生物种类组成,数量变化和生物演替.水质生态学评价结果表明,大伙房水库只受到轻度污染,水质等级为2级.  相似文献   

2.
赵然  顾平  刘允 《中国环境监测》2018,34(6):164-169
阿什河作为松花江的一级支流,全境包含了从Ⅰ类到劣Ⅴ类的各种类型水质。通过对阿什河沿线底栖动物群落构成进行调查,结合典范对应性分析(CCA)对底栖动物群落与环境因子进行相关性分析得出结论,溶解氧和高锰酸盐指数为研究区域内底栖动物群落构成的主要限制因子。为分析不同水质条件下底栖动物种群变化成因和从生物学角度提出阿什河治理方法提供技术依据。  相似文献   

3.
通过2018年5月在京杭运河江苏段布设23个采样点调查底栖动物群落结构和生境状况,并用Shannon-Wiener多样性指数评价底栖动物多样性,用聚类法分析采样点底栖动物群落结构相似性,用ANOSIM分析检验聚类组差异性,用SIMPER对聚类组作主要特征物种分析。结果显示:23个采样点共采集底栖动物42种,其中甲壳纲4种、软体动物16种、多毛纲2种、蛭纲2种、昆虫纲4种(均为摇蚊类)、寡毛纲14种。聚类分析将23个采样点分成4组,ANOSIM分析检验表明各聚类组底栖动物群落结构具有显著差异(p<0.05),底质类型和水生植被等生境状况是影响京杭运河江苏段底栖动物群落结构的重要原因。  相似文献   

4.
滆湖大型底栖动物群落分布和氮磷因子的相关分析   总被引:1,自引:0,他引:1       下载免费PDF全文
于2012年12月—2013年11月对滆湖水体进行了调查,分析了水体氮、磷及大型底栖动物的时空分布,初步探讨大型底栖动物群落结构与氮、磷环境因子的关系。结果表明,滆湖水体的ρ(TN)在冬春季较高,ρ(TP)四季的差异不大,在空间分布上,北部湖区的ρ(TN)、ρ(TP)均高于南部湖区;大型底栖动物出现频率最高的为霍甫水丝蚓和中国长足摇蚊,其丰度在时间上均表现为秋季夏季冬季春季,在空间上的规律性不明显;CCA分析表明滆湖大型底栖动物群落结构随季节变化规律显著,且氮含量是滆湖底栖动物群落结构的重要影响因子;对优势种的丰度与氮磷的相关性分析结果显示,滆湖底栖动物优势种与TN和NO_3~--N有显著的负相关关系。  相似文献   

5.
于2004—2010年5月对西苕溪流域20个参照点,5个中度干扰点以及2个重度干扰点的底栖动物进行了调查,共鉴定出74科190属226个种;受干扰后,底栖动物群落物种丰富度、EPT物种丰富度、Shannon-wiener多样性指数和B-IBI指数显著下降,BI指数显著升高。CCA分析结果表明,参照、中度和重点干扰样点的底栖动物群落差异明显。城镇化引起的溪流水温上升、营养盐升高、泥沙输入量增多和堤岸固化是导致溪流底栖动物群落退化的主要原因。  相似文献   

6.
长江源区位于青藏高原腹地,对气候变化敏感,存在河流径流增加、湖泊扩张淡化的趋势,研究该区域的水生生物有助于理解气候变化对该区域生态系统的影响。该研究于2017年夏季对长江西源沱沱河、南源当曲以及周围5个典型湖泊(班德湖、雅西措、玛章错钦、格勒措、昂错钦)的底栖动物群落开展调查。湖泊水体盐度为0.96‰~14.72‰,pH为8.89~9.63。结果表明,共采集到大型底栖动物25种,隶属于5纲7目10科。河流的底栖动物平均密度和生物量分别为36个/m2和0.22 g/m2,优势种为恩非摇蚊属;湖泊的底栖动物平均密度和生物量分别为674个/m2和5.35 g/m2,优势种为直突摇蚊属,83.33%的物种为单一湖泊特有。蒙特卡罗置换检验结果表明,影响底栖动物群落的水体环境变量主要包括碱度、总悬浮性固体、浊度、pH、总溶解性固体、盐度和叶绿素a。典范对应分析排序图显示,在长江源区的湖泊水体中,底栖动物较多分布在酸碱度相对低、清澈程度高、盐度低、叶绿素高的环境中。在未来的气候变化背景下,河流径流增加可能导致水体...  相似文献   

7.
为了探究流溪河大型底栖动物的群落结构特征和关键影响因素,于2016年4月(平水期)、7月(丰水期)和11月(枯水期)对流溪河的14个采样断面进行了生态调查,共鉴定出133种大型底栖动物,隶属于55科127属。大型底栖动物平均密度和生物量分别为213 ind./m2和20.02 g/m2,寡毛类和水生昆虫的密度占优势,软体动物的生物量占优势。此外,结果表明流溪河大型底栖动物群落结构具有明显的时空变化。在空间方面,从上游至下游大型底栖动物种类数呈现逐渐减少的趋势,并且支流的大型底栖动物种类数高于干流;从上游至下游大型底栖动物密度和生物量变化无规律,支流大型底栖动物的密度明显高于干流,而生物量却明显低于干流;上游的大型底栖动物Shannon-Wiener多样性指数和Margalef丰富度指数均高于下游,支流的大型底栖动物Shannon-Wiener多样性指数和Margalef丰富度指数均高于干流,而Pielou均匀度指数是支流低于干流。在时间方面,平水期至枯水期大型底栖动物种类数呈现逐渐增加的趋势;密度分布为平水期>枯水期>丰水期,生物量分布规律与密度相似;Shannon-Wiener多样性指数和Margalef丰富度指数均为枯水期最高,平水期最低。流溪河大型底栖动物群落可划分为干流群落和支流群落,群落间物种组成存在显著性差异。综上结果表明:流溪河支流大型底栖动物群落结构较干游更加稳定,下游断面群落受到了较大程度的干扰,生态环境质量状况较差,影响大型底栖动物群落结构的主要因素为有机质、总磷和溶解氧。  相似文献   

8.
江苏地表水体大型底栖无脊椎动物生物多样性状况研究   总被引:3,自引:1,他引:2  
大型底栖无脊椎动物群落结构与水体水质和水生态系统健康状况关系密切,其受外界干扰后群落结构的变化趋势可以反映水体受污染的性质和程度。2008年,对江苏省主要饮用水源地,长江、京杭大运河等主要河流及太湖等重点湖泊开展底栖动物调查与评价研究,共设置调查点位154个。江苏主要饮用水源地底栖动物的物种数量为78种,主要河流发现底栖动物96种,主要湖泊底栖动物发现65种。从物种多样性指数评价结果看,主要湖泊的底栖生物多样性状况优于地表水源地和主要河流,丰富和较丰富所占比例合计达58%;主要河流的评价结果最差,丰富和较丰富所占比例合计仅达30.7%,存在11.3%物种多样性极贫乏的点位,且大部分水体底栖动物组成以耐污种为主,优势种为极耐污的霍甫水丝蚓,水质状况劣于饮用水源地和主要湖泊。  相似文献   

9.
广西贝江大型底栖动物群落结构时空分布特征   总被引:1,自引:0,他引:1  
为了解贝江大型底栖动物群落结构特征并对其水质进行生物学评价,于2015年1、8月对贝江流域17个采样点进行了调查,共采集大型底栖动物146个分类单元,隶属于8纲20目52科,其中昆虫纲所占比例最高(86.99%),软体动物次之(6.16%)。贝江底栖动物群落结构存在季节性差异,群落数量特征和结构复杂性均表现为冬季夏季。无度量多维标定排序和ANOSIM分析发现,贝江流域冬季和夏季底栖动物群落组成存在显著差异(r=0.26,P0.001)。群落相似性分析表明,贝江底栖动物存在显著的空间差异,整个流域可以分为2组,组1基本分布在自然河段,组2主要包括电站采样点和贝江下游采样点,各组间差异显著(P0.01)。底栖动物功能摄食类群以集食者(55%)和撕食者为主(16%),其次为滤食者(14%)和捕食者(11%),刮食者(4%)所占比例较小。水质评价结果显示,Shannon-Wiener生物多样性指数(H′)评价贝江水质为轻污-清洁。Hilsenhoff生物指数(BI)评价贝江流域水质属于清洁,与实际水质情况最接近。总体上,贝江流域自然河段底栖动物群落结构复杂多样,整体水质清洁。  相似文献   

10.
于2019-2021年春、秋季在长江干流南京段设置6个调查点位对水体理化因子、底栖动物群落特征开展调查研究。采用典范对应分析方法(CCA)分析了底栖动物与环境因子的响应关系。结果表明,共检出35种底栖动物,分属3门6纲12目19科30属,昆虫纲为优势纲。各监测点位的底栖动物检出种类数相差较大,最多检出21种,最少检出11种。春季优势种为霍甫水丝蚓,秋季优势种为齿吻沙蚕。底栖动物物种密度为2~176个/m^(2),春季的底栖动物平均密度(139个/m^(2))略高于秋季(125个/m^(2)),底栖动物平均密度年度排序为:2019年>2020年>2021年。各监测点位的香农威纳(Shannon-Wiener)多样性指数为2.9~3.5,水质状况处于良好和优秀之间。CCA分析结果表明,高锰酸盐指数和溶解氧对南京段底栖动物群落结构物种时空分布影响较大且大部分群落特征物种分布在含氮营养盐较低的水域,高浓度的含氮营养盐已经对南京段底栖动物产生了负面影响。  相似文献   

11.
The extent of degradation of benthic communities of the Chesapeake Bay was determined by applying a previously developed benthic index of biotic integrity at three spatial scales. Allocation of sampling was probability-based allowing areal estimates of degradation with known confidence intervals. The three spatial scales were: (1) the tidal Chesapeake Bay; (2) the Elizabeth River watershed; and (3) two small tidal creeks within the Southern Branch of the Elizabeth River that are part of a sediment contaminant remediation effort. The areas covered varied from 10–1 to 104 km2 and all were sampled in 1999. The Chesapeake Bay was divided into ten strata, the Elizabeth River into five strata and each of the two tidal creeks was a single stratum. The determination of the number and size of strata was based upon consideration of both managerially useful units for restoration and limitations of funding. Within each stratum 25 random locations were sampled for benthic community condition. In 1999 the percent of the benthos with poor benthic community condition for the entire Chesapeake Bay was 47% and varied from 20% at the mouth of the Bay to 72% in the Potomac River. The estimated area of benthos with poor benthic community condition for the Elizabeth River was 64% and varied from 52–92%. Both small tidal creeks had estimates of 76% of poor benthic community condition. These kinds of estimates allow environmental managers to better direct restoration efforts and evaluate progress towards restoration. Patterns of benthic community condition at smaller spatial scales may not be correctly inferred from larger spatial scales. Comparisons of patterns in benthic community condition across spatial scales, and between combinations of strata, must be cautiously interpreted.  相似文献   

12.
The Sediment Quality Triad (SQT) consists of complementary measures of sediment chemistry, benthic community structure, and sediment toxicity. We applied the SQT at 20 stations in the tidal portion of the Anacostia River from Bladensburg, MD to Washington, DC to establish a baseline of conditions to evaluate the effects of management actions. Sediment toxicity was assessed using 10-day survival and growth tests with the freshwater amphipod, Hyalella azteca and the midge, Chironomus dilutus. Triplicate grabs were taken at each station for benthic community analysis and the Benthic Index of Biotic Integrity (B-IBI) was used to interpret the data. Only one station, #92, exhibited toxicity related to sediment contamination. Sediments from this station significantly inhibited growth of both test species, had the highest concentrations of contaminants, and had a degraded benthic community, indicated by a B-IBI of less than 3. Additional sediment from this station was tested and sediment toxicity identification evaluation (TIE) procedures tentatively characterized organic compounds as the cause of toxicity. Overall, forty percent of the stations were classified as degraded by the B-IBI. However, qualitative and quantitative comparisons with sediment quality benchmarks indicated no clear relationship between benthic community health and contaminant concentrations. This study provides a baseline for assessing the effectiveness of management actions in the Anacostia River.  相似文献   

13.
Synoptic data on concentrations of sediment-associated chemical contaminants and benthic macroinfaunal community structure were collected from 1,389 stations in estuaries along the U.S. Atlantic and Gulf of Mexico coasts as part of the nationwide Environmental Monitoring and Assessment Program (EMAP). These data were used to develop an empirical framework for evaluating risks of benthic community-level effects within different ranges of sediment contamination from mixtures of multiple chemicals present at varying concentrations. Sediment contamination was expressed as the mean ratio of individual chemical concentrations relative to corresponding sediment quality guidelines (SQGs), including Effects Range-Median (ERM) and Probable Effects Level (PEL) values. Benthic condition was assessed using diagnostic, multi-metric indices developed for each of three EMAP provinces (Virginian, Carolinian, and Louisianian). Cumulative percentages of stations with a degraded benthic community were plotted against ascending values of the mean ERM and PEL quotients. Based on the observed relationships, mean SQG quotients were divided into four ranges corresponding to either a low, moderate, high, or very high incidence of degraded benthic condition. Results showed that condition of the ambient benthic community provides a reliable and sensitive indicator for evaluating the biological significance of sediment-associated stressors. Mean SQG quotients marking the beginning of the contaminant range associated with the highest incidence of benthic impacts (73–100% of samples, depending on the province and type of SQG) were well below those linked to high risks of sediment toxicity as determined by short-term toxicity tests with single species. Measures of the ambient benthic community reflect the sensitivities of multiple species and life stages to persistent exposures under actual field conditions. Similar results were obtained with preliminary data from the west coast (Puget Sound).  相似文献   

14.
Water levels of Lake Sevan (Armenia) were artificially lowered by nearly 20?m between 1949 and 1997. Lowered water levels, combined with increased eutrophication, were associated with seasonally anoxic conditions (lasting 1-4?months) near the bottom of the profundal zone each year during 1976-2004. In addition, the extents of the macrophyte zone and of certain substrate types were severely reduced following drawdown. Maximal depth of occurrence decreased by 2-44?m for at least for 50 species of benthic macroinvertebrates between 1982 and 2004 compared to 1937-1961. Species richness of benthic macroinvertebrates declined from 25 to three species at depths where seasonal anoxia occurred. Total biomass increased by a factor of 10 from the period 1928-1948 to 1976-1979 then declined by a factor of 3 to 4 between 1987 and 2004. Energy flow through detritivores was more than tripled during 1976-2004 compared to 1928-1971, a result of increased plankton primary production. In contrast, energy flow through herbivorous benthic macroinvertebrates decreased by a factor of nearly 5, due to reduced areal coverage of macrophytes. Energy flow through filter feeders did not change over the time period examined, but energy flow through the entire zoobenthos community was nearly tripled. The biomasses of Oligochaeta, Chironomidae, and total zoobenthos showed a delayed response to changes in primary production of 7-9, 2, and 2-4?years, respectively. These patterns may provide a basis to predict results of restoration efforts based on the abundance of the zoobenthos in future years as the level of the lake is restored and water quality improves.  相似文献   

15.
The concentration of 12 organochlorine pesticides (OCPs) were measured in water, sediment, aquatic plant, and animal (shrimp and fish) of Nansi Lake by gas chromatography equipped with an electron capture detector. The total OCPs concentrations were 65.31–100.31 ng L?1 in water, 2.9–6.91 ng g?1 dry weight (dw) in sediments, 1.29–6.42 ng g?1 dw in aquatic plants and 7.57–17.22 ng g?1 dw in animals. The OCPs composition profiles showed that heptachlor compounds was also the predominant OCPs contaminants in addition to hexachlorocyclohexanes (HCHs) and dichlorodiphenyltrichloroethanes (DDTs) in Nansi Lake. According to the source of HCHs and DDTs in sediment samples, there was no new input and the HCHs pollution mainly came from the use of Lindane in Nansi Lake. Bioaccumulation of OCPs in aquatic biota indicated that DDTs and heptachlor compounds had a strong accumulation, followed by HCHs and drins. The accumulation abilities of fish for OCPs were higher than those of plants and shrimps. The OCPs biota-sediment accumulation factor values of Channa argus was the highest in fish samples, followed by Carassius auratus, and Cyprinus caspio. Risk assessment of sediment showed that heptachlor epoxide had a higher occurrence possibility of adverse ecological effects to benthic species. Based on the calculation of acceptable daily intake and hazard ratio, HCHs in fish and shrimps from Nansi Lake had a lifetime cancer risk of greater than one per million. The risk assessment of water, sediment, and fish indicated the water environment of Nansi Lake is at a safe level at present.  相似文献   

16.
通过在太阳山湿地设置11个采样点,监测水质及生物等17个指标,采用层次分析法、熵值法确定指标权重,运用灰色关联法、模糊综合评价法对研究区水生生态系统的健康状况进行评价。结果表明:在层次分析法赋权下,经灰色关联法评价得南湖为亚健康,其余湖为不健康;经模糊综合评价法得4个湖为病态。在熵值法赋权下,经灰色关联法评价得南湖为很健康,其余湖为不健康;经模糊综合评价得西湖为不健康,南湖为很健康,其余湖为病态。结合两种评价方法的计算过程及研究区实际情况,模糊综合评价结果较灰色关联法更符合实际。  相似文献   

17.
入湖溪流对西湖富营养化的影响调查   总被引:1,自引:0,他引:1  
分析了西湖水质现状 ,指出入湖溪流的水质不佳是目前西湖保持富营养化状态的重要原因。提出了相应的对策建议。  相似文献   

18.
太湖氮磷大气干湿沉降时空特征   总被引:6,自引:0,他引:6  
为了探索太湖氮磷营养盐干湿沉降特征及对太湖营养盐输入的贡献,于2011年不同季节采集太湖不同位点的大气干湿沉降样品,分析干湿沉降中氮(N)和磷(P)的形态和沉降量。研究结果表明,输入太湖的磷以干沉降为主,而氮以湿沉降为主。在太湖干沉降中总无机氮(TIN)占总氮(TN)的77.1%,溶解性磷(DIP)占总磷(TP)的77.9%。干沉降中TIN主要以NH+4-N为主。西太湖是TN与TP通过大气干湿沉降输入太湖的最高湖区。太湖全年大气TN沉降总量为20 978 t,TP沉降总量为1 268 t,因此,氮磷大气干湿沉降是太湖营养盐输入的重要来源之一。  相似文献   

19.
We studied nine small man-made reservoirs located in different climate regions of Kenya to get an insight into the relationship between phytoplankton community structure and its environment. The investigated ponds form three groups of three reservoirs each found in the rural areas of Machakos district, Mount Kenya region, and Lake Victoria area with varied climatic characteristics. The ponds were sampled in monthly intervals between May 2007 and June 2008 for physicochemical variables including water chemistry, phytoplankton community composition, zooplankton abundance, and bacterial numbers. All ponds were classified as hypertrophic. Seasonal changes were reflected in the phytoplankton pattern, as all ponds showed a community shift after the short dry season in February. Due to high nutrient loads and increased turbidity, Cyanobacteria, which were initially thought to be predominating in all investigated water bodies, were found to play only a minor role except for the Bomet reservoir in Lake Victoria region. Instead, Chloro- and Streptophyta, Dinophyta, and Euglenophyta were abundant in the pelagial. A principal component analysis explained around 85 % of the data variance with four principal components (PCs) interpreted as “location”, “ions”, “zooplankton”, and “particulate matter”. A clear separation of ponds with and without cattle access based on algal species community data was found indicating the need for a sustainable use and regular monitoring program as the local population is largely dependent on these sensitive small-scale ecosystems.  相似文献   

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