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1.
于2008-2009年按照季节调查了西藏地区尼洋河大型底栖动物群落的组成和丰度,并运用多元统计方法定量分析了大型底栖动物的空间和季节变化特征及其与主要环境因子之间的关系.结果显示,石蚕幼虫、萝卜螺以及摇蚊幼虫是尼洋河主要的大型底栖动物,另外,随着海拔的升高,尼洋河大型底栖动物总丰度呈现降低趋势;Duncan检验法显示,物种总丰度在各采样点之间均不存在显著性差异;PCA方法显示,对于采样点,大型底栖动物总丰度最大值和最小值分别出现在采样点Ⅳ和采样点Ⅱ,对于季节,大型底栖动物总丰度最大值和最小值分别出现在秋季和冬季;CCA方法显示,可分别从尼洋河中上游和中下游两个河段来概括尼洋河大型底栖动物与环境因子之间的关系;CART模型显示,从11项环境因子筛选了4项环境因子用以解释它们与大型底栖动物总丰度之间的相互关系,这4项环境因子包括矿化度、总磷、海拔和季节,建议加强对大型底栖动物及这些环境因子的关注,保障尼洋河水域生态环境的可持续发展.  相似文献   

2.
于2008-2009年按照季节调查了西藏尼洋河浮游植物群落的组成、丰度和多样性,并运用多元统计方法定量分析了浮游植物的空间和季节变化特征及其与主要环境因子之间的关系.结果显示,尼洋河浮游植物共计7门29科48属,其中硅藻为优势浮游藻类.浮游植物Shannon-Wiener多样性指数(Pielou均匀度指数)在尼洋河中游(尼洋河下游)最高,其他河段呈下降趋势,符合中间高度膨胀假说.尼洋河沿程浮游植物的总丰度、物种丰富度、Shannon-Wiener多样性指数以及Pielou均匀度指数不存在显著差异,夏季的浮游植物物种丰富度与其他季节的存在显著差异,夏季总丰度与秋、冬季的存在显著差异,冬季的浮游植物Shannon-Wiener多样性指数与春季的存在显著差异,冬季的均匀度指数与其他3个季节的存在显著差异.尼洋河浮游植物季节演替依赖于外源性水源补充,沿程演替则与河道底质有着很大关系.典范对应分析(CCA)表明,尼洋河硅藻门舟形藻科的藻类与理化因子铵态氮、表层pH、表层水温相关,部分蓝藻以及绿藻与水质理化因子也存在着关联.分类回归树(CART)模型预测了尼洋河着生藻类时空分布与主要环境因子之间的定量关系,尼洋河浮游植物群落总丰度和均匀度指数受pH值影响较大,pH值低于8.0的水域浮游植物均匀度指数比pH值高于8.0的水域大,尼洋河浮游植物Shannon-Wiener多样性指数受到河道底质影响较大,底质为黏土的水域浮游植物Shannon-Wiener多样性指数较底质为砂石的大.这些关键环境因子对尼洋河水域浮游植物的时空变化有着重要的指示作用,建议加强对浮游植物及这些环境因子的关注,保障尼洋河水域生态环境的可持续发展.  相似文献   

3.
本文于2008-2009年按照季节调查了西藏地区尼洋河着生藻类群落的组成、丰度和多样性,并运用多元统计方法定量分析了着生藻类的空间和季节变化特征及其与主要环境因子之间的关系.结果显示,尼洋河着生藻类共计6门30科49属,其中硅藻为优势着生藻类.着生藻类的Shannon-Wiener多样性指数在尼洋河中游最高,在中上游河段和中下游河段呈下降趋势,符合中间高度膨胀(mid-altitude bulge)假说.着生藻类的总丰度、物种丰富度以及Shannon-Wiener多样性指数在尼洋河沿程不存在显著差异,总丰度在各个季节之间不存在显著差异,但物种丰富度在秋季和冬季存在显著差异,夏、秋季着生藻类的Shannon-Wiener多样性指数显著高于冬、春季.主成分分析(PCA)表明,随着海拔的升高,着生藻类的物种丰富度和总丰度呈递减趋势;典范对应分析(CCA)表明,尼洋河部分硅藻与理化因子相关联,如:双壁藻(Diploneis)的丰度与总磷相关联,窗纹藻(Epithemia)的丰度与铵态氮相关联,双菱藻属(Surirella)的丰度与pH值相关联;部分绿藻与理化因子相关联,如:小球藻属(Chlorella)、栅藻属(Scenedesmus)、溪菜属(Prasiola)的丰度与水温相关联,小椿藻(Characium)的丰度与硬度相关联,转板藻(Mougeotia)的丰度与表层溶氧、矿化度相关联,新月藻属(Closterium)的丰度与碱度相关联;分类回归树(CART)模型预测了尼洋河着生藻类时空分布与主要环境因子之间的定量关系,即低海拔水域的着生藻类总丰度较高海拔高,高矿化度水域的着生藻类总丰度较低矿化度的高,不能用影响尼洋河着生藻类种类和数量的环境因子来解释着生藻类的Shannon-Wiener多样性指数.这些关键环境因子对尼洋河水域着生藻类的时空变化有着重要的指示作用,建议加强对着生藻类及这些环境因子的关注,保障尼洋河水域生态环境的可持续发展.  相似文献   

4.
于2008-2009年按照季节调查西藏地区尼洋河浮游动物群落的组成、丰度和多样性,并运用多元统计方法定量分析浮游动物的空间和季节变化特征及其与主要环境因子之间的关系.结果显示,尼洋河浮游动物包括原生动物、轮虫、枝角类和桡足类,其中原生动物9目13科14属,轮虫1目7科17属,枝角类仅1目1科1属,桡足类2目2科2属.原生动物以砂壳虫和瞬目虫属为主,轮虫则以橘轮虫属和单趾轮虫属为主.尼洋河浮游动物的物种丰富度和生物量随尼洋河海拔高度不断提升呈现递减的趋势,夏季浮游动物生物量、物种丰富度、总丰度较低,其中夏季浮游动物物种丰富度最低,而浮游动物生物量和总丰度则仅高于冬季.受到水体稳定性的影响,尼洋河浮游动物Shannon-Wiener多样性指数和均匀度指数在交汇处较低;季节方面,夏季最低,冬季次之.尼洋河原生动物和轮虫总丰度在季节方面存在相似的演替规律,即出现2次高峰和2次低谷,2次高峰分别出现在春季和秋季,2次低谷分别出现在夏季和冬季.尼洋河浮游动物沿程变化方面,浮游动物群落4个指标不存在显著差异.尼洋河浮游动物季节变化方面,仅总丰度秋季和冬季之间存在显著差异,其他3个指标在各个季节之间均不存在显著差异.典范对应分析表明,原生动物类群里,砂壳虫属丰度受水体溶解氧浓度的影响较大,前管虫、袋座虫、肾形虫、瞬目虫和斜口虫属丰度受水体矿化度的影响较大,鳞壳虫属丰度则主要与水体中氨氮浓度关联较大;轮虫类群里,单趾轮虫、无柄轮虫、枝胃轮虫、囊足轮虫属丰度与水体的矿化度关联较大,龟甲轮虫属丰度则与总磷浓度有着较大的关联.分类回归树模型预测了尼洋河浮游动物时空分布与主要环境因子之间的定量关系,结果表明尼洋河浮游动物总丰度受到硬度、季节、海拔以及河道底质等因素的影响,Shannon-Wiener多样性指数受到总碱度、季节、硬度和水温的影响,均匀度指数受到总碱度、总磷浓度和水温的影响.这些关键环境因子对尼洋河水域浮游动物的时空变化有着重要的指示作用,建议加强对浮游动物及这些环境因子的关注,推动尼洋河水域生态环境的可持续发展.  相似文献   

5.
以流经四川绵阳市安县河流茶坪河为研究对象,在对该河流水污染负荷、水环境现状及水环境功能充分调查的基础上,结合该河流的水文特征和排水规划以及四川省绵阳市环境监测站2005年实测的数据,采用二维浅水水动力学—水质模型方程组对茶坪河的各监测断面CODCr和NH3-N的浓度场进行了计算模拟和对比,并用一维水环境容量计算模型计算了该河流的水环境容量,提出了具体的总量控制措施.结果表明:用二维浅水水动力学—水质模型方程组计算各监测断面的CODCr和NH3-N与实测值相差不大;茶坪河水环境容量CODCr为123.96t/a,NH3-N为42.95t/a,所排放的CODCr量、NH3-N量已经超过该流域容量,出水水质已超过水质保护目标Ⅲ类标准.  相似文献   

6.
鄱阳湖流域乐安河重金属污染水平   总被引:11,自引:3,他引:11       下载免费PDF全文
万金保  闫伟伟  谢婷 《湖泊科学》2007,19(4):421-427
乐安河是鄱阳湖五大入湖水系中重金属污染最严重的水域.为研究其污染现状,于2003-2004年度对乐安河水体、底泥及水生生物的重金属污染进行了调查与分析.结果表明,乐安河水体中的重金属除Cu的含量超出地表水环境质量标准Ⅲ类标准外,其它各项监测指标均能达到地表水环境质量Ⅲ类标准.乐安河底泥的重金属含量平均值与国家土壤环境质量相比,Cu的平均值超出了三级标准,而Pb和Zn的含量指标均符合三级标准;通过地质累积指数评价结果表明,乐安河底泥中Cu为严重污染,Pb为偏中度污染,Zn为中度污染.乐安河水生植物对Cu,Pb,Zn都有不同程度的富集,根据富集系数评价表明,植物对Cu的平均富集能力相对较强,其次是Pb和Zn.浮游动物、植物和底栖动物也受到不同程度的污染,其分布和数量因河段水质变化的影响也出现类似的波动.  相似文献   

7.
2012-2018年洪泽湖水质时空变化与原因分析   总被引:1,自引:0,他引:1  
洪泽湖是南水北调东线工程的重要枢纽.为评估水环境长期变化,于2012-2018年开展逐月水质监测.结合水文气象与淮河水质水量数据,分析洪泽湖水质长期变化趋势及空间分异的驱动因素,结果显示:2012-2018年,洪泽湖总氮、总磷多年平均浓度为1.74和0.081 mg/L,分别为Ⅴ类水和Ⅳ类水,透明度均值为0.48 m,下降趋势不显著,而高锰酸盐指数、叶绿素a多年平均浓度分别为4.13和0.008 mg/L,呈显著下降趋势.在空间分布上,过水区总氮、总磷浓度显著高于成子湖、溧河洼;高锰酸盐指数、叶绿素a浓度则相对较低,透明度则是成子湖较高,溧河洼和过水区相近.3个湖区的叶绿素a浓度下降明显,但过水区的高锰酸盐指数呈上升趋势.洪泽湖与淮河水质相关性分析结果显示,洪泽湖总氮、总磷浓度与淮河水质呈强相关性,特别是过水区各个水质指标与淮河水质均有显著的相关性,而成子湖、溧河洼水质与淮河水质相关性较弱.广义可加模型(GAM)显示,过水区的总氮、总磷浓度等参数与淮河营养盐、高锰酸盐指数及悬浮物浓度变化的关系显著,成子湖和溧河洼的水质指标影响因素差异较大,成子湖、过水区的叶绿素a浓度与高锰酸盐指数相关性较强,而溧河洼的叶绿素a浓度与降水、透明度关系显著.相关性和GAM模型表明淮河对于洪泽湖,尤其是对过水区的水质影响极为明显,是洪泽湖维持较高营养水平和水质空间分异的重要原因.尽管不同湖区叶绿素a浓度下降趋势表明洪泽湖营养状态有所降低,但其氮、磷浓度仍维持在较高水平,存在富营养化风险.应持续关注淮河入湖水质变化,削减污染物输入,压缩湖泊围网、圈圩养殖规模,通过加强水污染防治和水域空间管控保障洪泽湖水环境安全.  相似文献   

8.
夏季短期调水对太湖贡湖湾湖区水质及藻类的影响   总被引:1,自引:0,他引:1  
贡湖湾作为"引江济太"工程长江来水进入太湖的第一站,湖湾水体生态环境的变化是对调水工程净水效果的最好响应,因此本文针对贡湖湾一次夏季短期调水展开调查研究,分别取2013年7月24日(调水前)和2013年8月18日(短期调水后)两次监测水样的水体理化指标和浮游藻类群落数据进行了对比分析,并对浮游藻类群落与环境因子做了相关性分析.结果表明:受来水影响,短期调水后监测区水体的p H略有下降,溶解氧、浊度、硝态氮、总氮、总磷以及高锰酸盐指数等水体理化指标浓度均较调水前有所升高;其中受调水影响最为显著的区域为望虞河的入湖口区、湾心区.两次监测调水前后湖区水体优势藻种属未发生变化,仍以微囊藻为主,但蓝藻种属比例有所下降,绿藻和硅藻等种属比例则有所上升.望虞河入湖口区和贡湖湾湾心区的Shannon-Wiener多样性指数和Pielou均匀度指数受调水的影响升高.同时,浮游藻类群落结构与受水水体理化参数的冗余分析结果表明,此次监测的短期调水后,太湖贡湖湾监测湖区水体p H、溶解氧、硝态氮、总氮、总磷、高锰酸盐指数等环境因子与浮游藻类的群落分布呈显著相关,是影响受水水体中藻类群落的主要环境因子.  相似文献   

9.
以艾比湖主要入湖河流——精河与博尔塔拉河为研究对象,分别分析了精河与博尔塔拉河的水体溶解性有机质(DOM)的组成结构及水质参数与荧光指数的关系.利用平行因子分析法对三维荧光光谱(EEM)分析发现,精河与博尔塔拉河均含有C1(260/420 nm)腐殖酸等有机质、C2(240,240/490 nm)UVC类腐殖质、C3(220/280,300/450 nm)蛋白质类有机质和C4(260,270/530 nm)类腐殖质,且不同荧光组分结构具有一定差异性.为了进一步了解DOM组分特征,采用三维荧光区域积分法分析各区域标准体积百分比,结果表明精河与博尔塔拉河EEM的区域Ⅰ与区域Ⅱ蛋白质有机质含量最高,区域Ⅲ富里酸含量最低.相关性分析表明,主要入湖河流的水质参数与荧光指数中,自生源指数(BIX)与总氮(TN)浓度以及腐殖化指数(HIX)与铵态氮(NH_4~+-N)浓度的相关性较强,相关系数分别为0.831和0.684,且具有显著性;HIX与TN浓度的相关系数为0.604,达到显著性水平.进而对相关性较强的水质参数与荧光指数进行3次拟合,其中HIX与NH_4~+-N浓度的拟合效果最好,相关性系数为0.908,其次是BIX与TN浓度,相关性系数为0.844.总之,通过分析精河与博尔塔拉河三维荧光特征,以及探讨荧光指数与水质参数的关系,可为治理干旱区水环境问题提供理论依据和参考.  相似文献   

10.
基于中国太湖梅梁湾东部的无锡市滨湖区河网29个监测点在丰水期、平水期和枯水期的流速和水质监测数据,将河网分为梁溪河、曹王泾、骂蠡港、城市河网南区以及城市河网北区5个区域,对流速和典型水质指标的时空异质性进行分析,结合主成分分析和相关性分析,得到各区域水动力与水质现状及其成因.结果显示:梁溪河和曹王泾的水质条件和水动力条件较好,多数水质因子与流速表现出了强相关性;骂蠡港的水质和流速区域变化明显,表现弱相关性;城市河网北区和南区的流速较缓,河道污染负荷较大,流速与水质因子之间的相关性较低.通过在滨湖河网开展流速和水质的野外监测,分析流速对于河网水环境的实际效果,验证不同水质指标与流速之间的响应关系,为滨湖河网区水质保护和科学的水污染治理技术提供基础支撑.  相似文献   

11.
In this study we discuss probabilistic forecasts of Citarum River streamflow, which supplies 80 % of the water demands in Jakarta, Indonesia, based on general circulation model (GCM) output, for the September–November (SON) season. Retrospective forecasts of precipitation made over the period 1982–2010 with two coupled-ocean atmosphere GCMs, initialized in August, are used in conjunction historical streamflow records, with a cross-validated regression model. Pearson’s product moment correlation skill values of 0.58–0.67 are obtained, with relative operating characteristic scores of 0.67–0.84 and 0.74–0.92 for the lower and upper tercile categories of flows respectively. Both GCMs thus demonstrate promising ability to forecast below/above normal streamflow for the Citarum River flow during the SON season.  相似文献   

12.
The main objective in this study was to compare the physico-chemical characteristics and biota of a river (Mukuvisi) passing through an urban area to that of a non-urbanised river (Gwebi). Five sites in the Mukuvisi River and five sites in the Gwebi River were sampled for water physico-chemical parameters (pH, conductivity, DO, BOD, TDS, ammonia, Cl, SO42−, PO42−, NO33−, F, Pb, Cu, Fe, Mn, Zn and Cr) once every month between August, 2012–August, 2013. Cluster analysis based on the physico-chemical parameters grouped the sites into two groups. Mukuvisi River sites formed their own grouping except for one site which was grouped with Gwebi River sites. Principal Component Analysis (PCA) was used to extract the physico-chemical parameters that account for most variations in water quality in the Mukuvisi and Gwebi Rivers. PCA identified sulphate, chloride, fluoride, iron, manganese and zinc as the major factors contributing to the variability of Mukuvisi River water quality. In the Gwebi river, sulphate, nitrate, fluoride and copper accounted for most of the variation in water quality. Canonical Correspondence Analysis (CCA) was used to explore the relationship between physico-chemical parameters and macroinvertebrate communities. CCA plots in both Mukuvisi and Gwebi Rivers showed significant relationships between macroinvertebrate communities and water quality variables. Phosphate, ammonia and nitrates were correlated with Chironomidae and Simulidae. Gwebi River had higher (P < 0.05, ANOVA) macroinvertebrates and fish diversity than Mukuvisi River. Clarias gariepinus from the Mukuvisi River had high liver histological lesions and low AChE activity and this led to lower growth rates in this river.  相似文献   

13.
为了解太湖流域上游支流水体的营养状态特征及流域附近土地利用对水质的影响,选取了入湖水系西苕溪的10条主要支流进行了野外采样和实验室研究.研究结果表明,支流总磷(TP)、颗粒磷(PP)、总溶解性磷(TDP)、总氮(TN)、铵态氮(NH+4-N)、硝态氮(NO-3-N)含量季节间差异较大,TP含量范围为0.033~0.205 mg/L,PP含量范围为0.007~0.104 mg/L,TN含量范围为2.014~5.921 mg/L,NH+4-N含量范围0.021~1.659 mg/L,NO-3-N含量范围1.082~3.415mg/L,COD范围为6.5~15.5 mg/L.总体上呈现为枯水期平水期丰水期.部分支流受到不同程度的氮污染.利用水质参数进行聚类分析,可以将10条支流分成4类,其水体营养特征与周围环境相联系.支流营养盐、COD的通量明显受流量控制,表现为丰水期平水期枯水期.土地利用类型的差异是导致其水质变化的主要原因,耕地和居民地主要起源的作用,林地和草地主要起汇的作用.在丰水期和枯水期,对各指标影响最大的土地利用类型为耕地和林地;在平水期,对TP影响最大的是居民地,而对TN影响最大的是林地.  相似文献   

14.
Quantitative assessment of water quality and its spatial variation identification, as well as the discernment of primary factors affecting water quality are in its urgent in water environment management. In this study, four key water quality indicators,namely, ammonia nitrogen(NH_4~+-N), permanganate index(COD_(Mn)), total phosphorus(TP) and total nitrogen(TN) at 71 sampling sites were selected to evaluate water quality and its spatial variation identification. More concerns were emphasized on the anthropogenic factors(land use pattern) and natural factors(river density, elevation and precipitation) to quantify the overall water quality variations at different spatial scales. Results showed that the Yi-Shu-Si River sub-basin had a better water quality status than the Huai River sub-basin. The moderate polluted area nearly distributed in the upper and middle reaches of the Shaying River and Guo River. The high cluster centers which were surrounded with COD_(Mn), NH_4~+-N, TN and TP mainly also distributed in the upper and middle reaches of the Shaying River and Guo River. Redundancy analysis showed that the 200 m buffer area acted as the most sensitive area, which was easily subjected to pollution. The precipitation was identified as the most important variables among all the studied hydrological units, followed by farmland, urban land or elevation. The point source pollution was still existed although the non-point source pollution was also identified. The urban surface runoff pollution was severer than farmland fertilizer loss at the sub-basin scale in flood season, while the farmland showed "small-scale" effects for explaining overall water quality variations. This research is helpful for identifying the overall water quality variations from the scale-process interactions and providing a scientific basis for pollution control and decision making for the Huai River Basin.  相似文献   

15.
A number of studies have indicated a transition from warm-dry to warm-wet climate in Northwest China after the 1980s. This transition was characterized by an increase in temperature and precipitation, added river runoff volume, increased lake water surface elevation and area, and elevated groundwater table. However, some literatures showed that the Hotan River has presented a contrary situation, i.e. the runoff decreased, whereas temperature and precipitation increased. In order to discover the nonlinear runoff trend and its causes in the Hotan River, based on the related data from hydrological stations, ground and air sounding meteorological stations, this study applied a comprehensive method combing correlation analysis, wavelet analysis and regression analysis to investigate the runoff change in the Hotan River with its relevant climatic factors over the past decades. The main findings are: (a) the hydrological process of the Hotan River is a nonlinear system, with a periodicity of 24 year cycle, and it shows different nonlinear trends at different time scales; (b) the data from the ground meteorological stations in the Hotan area shows a false appearance that there is almost no correlation between runoff and temperature, and a little negative correlation between runoff and precipitation; (c) but the data from air sounding meteorological stations shows the truth that there is a close relation between the runoff in the Hotan River and the 0°C level height in summer on the north slope of Kunlun Mountains. The two variables present a same periodicity, i.e. 24-year cycle, having similar nonlinear trends and significant correlations at different time scales.  相似文献   

16.
Rapid urbanization coupled with increase in population growth rate in recent years has accelerated economic pressure on the ecological environment leading to a gradual deterioration of global and regional environment. This has particularly resulted into water contamination and shortage of water resources thus posing a great threat to human survival. How to guaranteeing sustainable use of basin water resources has attracted more and more attentions. The Heihe River Basin is the secondary longest river inland China and the significantly water source of Hexi Corridor, the problem of water pollution, ecological environment deterioration and the shortage of water has seriously threatened the ecological system of the Heihe River Basin. In this study, through depicting the characteristics of natural environment, human activities, water ecosystem services and other factors in Heihe River Basin we delineated the water ecological function in Heihe River using the principal components analysis and the K-means clustering method. In the study, Heihe River Basin is divided into 3 primary level areas and 8 secondary level sub-areas. Water ecological characteristics analysis showed that the spatial distribution of the water ecological function of Heihe River Basin was not uniform, which are mainly showed in three aspects, function of windproof and sand fixation, function of soil erosion prevention and function of water sources conservation. The results of this study can provide effective and scientific theoretical references for the integrated water sources management and the ecological function optimization of the Heihe River Basin.  相似文献   

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