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31.
迄今为止,全球范围共报道出100多种鱼腥藻,中国记录报道的仅有50余种,但有些种类的描述仍较模糊.最近在福建、浙江等地进行野外调查时,发现了多种丝状蓝藻.其中就有2种鱼腥藻在中国尚未报道:威格鱼腥藻(Anabaenaviguieri Denis et Frémy 1923)和史密斯鱼腥藻(Anabaena smithii(Komárek)Watanabe 1992).  相似文献   
32.
利用MODIS影像提取太湖蓝藻水华的尺度差异性分析   总被引:4,自引:2,他引:2  
有效地提取蓝藻水华信息对分析蓝藻动态分布有重要意义,然而低空间分辨率数据提取的蓝藻水华会产生尺度误差.本文以太湖为研究区,利用2005年10月17日和2010年12月3日两景MODIS(250和500m)数据,采用浮游藻类指数(FAI)法提取太湖蓝藻水华面积;通过将FAI50均值化为FAImean(500 m),然后与...  相似文献   
33.
太湖藻源溶解性有机质光化学降解研究   总被引:5,自引:2,他引:3  
蓝藻水华暴发过程会产生大量的溶解性有机质——藻源溶解性有机质(A-DOM);A-DOM的光化学降解影响其迁移转化和在湖泊中的功能.本研究从太湖藻华中提取A-DOM,利用三维荧光光谱-平行因子分析法(EEMsPARAFAC),研究A-DOM中各组分的光化学降解;再研究不同光照强度、溶解氧浓度、A-DOM浓度、波长对A-DOM的降解的影响.结果显示,A-DOM中含有4种EEMs-PARAFAC组分:C1(UVC类腐殖质)、C2(UVA类腐殖质)、C3(类色氨酸)和C4(类络氨酸),对总荧光强度的贡献比例分别为22.2%、8.6%、68.1%和1.1%.当DOC初始浓度为10 mg/L、反应温度为28℃、pH=8.0时,经500 W汞灯(391.7 W/m~2)光照12 h,A-DOM的总光化学降解率(以a_(355)计)为70.4%;荧光组分C1、C2和C3的降解率分别为96.1%、85.4%和99.2%,三者的光反应性为C3C1C2.条件控制实验显示溶解氧的增加和光强的增强均有助于A-DOM的降解;A-DOM光化学降解主要发生在紫外区,可见光不能使C1和C2得到降解.结果表明A-DOM的光化学降解速度较快,且能通过控制光强、照射光波长和引入溶解氧等条件控制降解速度.实验结果可为湖泊蓝藻水华暴发时的应急处理和保障饮用水安全提供理论依据.  相似文献   
34.
基于MODIS数据的太湖藻华水体识别模式   总被引:8,自引:3,他引:5  
针对2007年5月太湖爆发的蓝藻水华事件,利用MODIS植被指数数据对其进行遥感监测.结果表明:MODIS数据可成功提取蓝藻水华信息.近红外/红光波段比值识别模式和植被指数NDVI值、EVI值识别模式均可确定蓝藻分布范围,但前两者不易将高浑浊水体区分开来,或不易识别低蓝藻分布区域,因此易扩大或缩小蓝藻分布范围;而后者由于引入了背景调节参数,可有效抑制背景水体及泥沙的影响,因此根据EVI值得到的蓝藻范围及强度较为真实的反映了藻华情况.该研究可为今后利用遥感技术,建立太湖蓝藻水华监测系统奠定基础.  相似文献   
35.
高密度蓝藻厌氧分解过程与污染物释放实验研究   总被引:18,自引:6,他引:12  
采用批次培养实验模拟高密度蓝藻堆积发生的厌氧分解过程,分析蓝藻的分解速率及污染物释放规律.厌氧分解实验中,设置三组蓝藻初始密度分别为2.23×1012、1.19×1013、4.47×1013cells/L,得到叶绿素a的分解速率常数分别为0.074、0.133、0.081 d-1.蓝藻厌氧分解过程中水体呈酸性,电导率呈上升趋势,最高值为949μS/cm.化学需氧量持续升高,而UV254值先升高后降低,说明水体中有机物浓度增大,并逐渐由大分子分解为小分子有机物.蓝藻厌氧分解释放出大量溶解态氮、磷,溶解态有机氮逐渐被降解为无机氮,铵态氮含量占90%以上.研究表明,高密度蓝藻堆积发生厌氧分解可释放大量有机物和溶解态营养盐至水体中,并且随着蓝藻密度升高,污染物释放强度增大.因此水华期间应及时打捞蓝藻,以避免蓝藻大量堆积死亡导致水源区水质下降并影响自来水出水质量.  相似文献   
36.
膦酸酯是新近发现的一类生物可利用磷,其广泛存在于水生生态系统,是水体有机磷库的重要组成,构成水体磷氧化还原循环的关键环节。随着研究的深入,越来越多的蓝藻藻株被证实参与膦酸酯的生物利用与合成,有助于阐明其适应低磷环境的机制,促进了对蓝藻磷策略与水体磷循环的全面理解,具有重要的生态学意义。与此同时,蓝藻对膦酸酯的利用性状,使得膦酸酯作为环境污染物与蓝藻磷源的双重作用开始显现,这会对水体浮游生物竞争格局的研究产生深远影响;而蓝藻的甲基膦酸代谢也被认为是水体好氧甲烷发生的来源之一。本文回顾了蓝藻膦酸酯利用与合成的研究历史,对目前蓝藻膦酸酯代谢过程生态风险与生态意义的研究进展进行了梳理,并对这一领域未来发展趋势进行了评述。  相似文献   
37.
西湖生态系统健康评价初探   总被引:27,自引:3,他引:24  
卢志娟  裴洪平  汪勇 《湖泊科学》2008,20(6):802-805
建立了基于多源卫星遥感影像的太湖蓝藻水华信息提取的普适模式,获取了天气晴好条件下蓝藻水华的面积和空间分布近年来,太湖蓝藻水华暴发时间逐渐提前至3-4月,暴发的高频繁期发生在6—7月,其次是10—11月;2000年以来,蓝藻水华的持续时间有所增加,几乎全年(3—12月)都有发生北部(梅梁湾、竺山湾)是蓝藻水华的最初暴发地,是蓝藻水华暴发的重灾区+每年都有发生;2001年以来,南部沿岸区(浙江附近水域,即夹浦新塘一带的沿岸水体)也几乎每年都有发生,且集聚面积逐年扩大,持续时间越来越长,逐渐成为太湖蓝藻的最早暴发地;2003年以来,蓝藻水华开始向湖心扩散,严重时几乎覆盖整个太湖的非水生植被区:值得注意的是.2005年以来,以前很少有蓝藻水华发生的贡湖湾,也开始有大面积蓝藻水华覆盖,2007年发生的频率显著增加.  相似文献   
38.
Shallow coastal lakes are under increasing pressure from climate change. Low rainfall and reduced run-off contributed to an unprecedented drought in Lake St. Lucia since 2002. Physico-chemical variables and microalgal biomass are analysed, tracking the transition from drought (2009) to wet conditions (2014). Despite low water levels and habitat loss due to desiccation, microalgal biomass remained high mainly due to cyanobacterial contribution. The system exhibited distinct spatio-temporal patterns in terms of salinity, water level, DIN, microalgal biomass and class composition associated with the drought, transition and wet climatic phases. Regime shifts were detected, coinciding with the end of the drought and the beginning of the wet phase. The St. Lucia ecosystem responds rapidly to changes in climatic phases while sustaining microalgal stocks; it may therefore be relatively resilient to extreme drought events.  相似文献   
39.
Excessive biomass development of benthic algae is often considered undesirable, but understanding the causes is confounded by complex interactions among driving factors. Pristine rivers allow a benchmark where human interference should be limited to climate change. In this study a time series comprising >20 years of annual benthic algae surveys from two pristine, soft water, boreal stream sites is used to determine whether year-to-year variations in benthic algal assemblages and cover were related to climate (temperature, precipitation, North Atlantic Oscillation) or hydrological regime. Total benthic algal cover ranged from 6 to 100% at Atna (the outflow of the Atna River from Lake Atnasjø), and from 3 to 50% at the headwater stream Li. Climate and hydrological regime explained 18 - 74% of the variability in benthic algal assemblages and cover. Generally, more variance was explained at Li than at Atna, possibly because (i) aquatic bryophytes blurred nutrient-mediated effects of climate and hydrology at Atna, and (ii) the upstream lake buffered hydrological variation. Temperature was more important for explaining benthic algal assemblages and cover at Atna, while hydrology was more important at Li. Climate and hydrological regime had no major impact on benthic algal taxon richness. High temperatures were associated with high benthic algal cover, particularly at Atna, while high suspended particle concentrations were associated with reduced benthic algal cover at Li, possibly due to scouring. Cover of the cyanobacterium Phormidium sp. increased at Li with increasing temperature, and decreased with prolonged periods of high discharge. Current predictions of climate change would lead to a “greener” Atna (increased cover of benthic algae), while Li would become more “bluegreen” (more Phormidium sp. but less filamentous green algae). It would also lead to a slightly more “eutrophic” algal assemblage at Atna (as indicated by the PIT-index for ecological status assessment), while a possible drift of the PIT-index is less clear at Li. The differences between Atna and Li likely reflect differences among river types, and it seems possible to make some generalizations: climate will likely affect benthic algae in lake outlets primarily via temperature, while headwater streams will primarily be affected via altered hydrology and particle concentrations.  相似文献   
40.
Physical and chemical characteristics of intertidal sediments and their relationships with bacteria and cyanobacteria were analyzed at four stations at Pereque Beach. Granulometric analysis showed that Pereque beach has sediment that is classified as sand. The lowest value of the sediment C/N rates (6.08), mainly due to a higher concentration of organic nitrogen, was found at the northern part of Pereque Beach, where organic matter of marine source was more prominent. In this area, density (9.6x10(6)cells cm(-3)), biomass (1992.04ngC cm(-3)) and activity of bacteria were higher than at the southern end. In contrast, cyanobacteria density varied from 2.0 to 4.0x10(5)cells cm(-3), with biomass and total chlorophyll a of the sediment being higher at the southern part, where there are water input from Pereque River and higher organic matter of continental origin. The variability in the microbial population is discussed in the light of the sediment granulometry, organic matter quality, fresh water inflow and pollution.  相似文献   
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