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1.
一株产碱性磷酸酶附生菌对微囊藻生长的影响   总被引:1,自引:1,他引:0  
为研究产碱性磷酸酶(ALP)细菌对微囊藻(Microcystis aeruginosa)从有机磷中获得磷营养的影响,从微囊藻群体中分离获得一株产ALP附生菌Y6,通过ITS分子鉴定该菌属赤杆菌属(Erythrobacter).探讨该菌在有机磷条件下对微囊藻生长及生理代谢的影响,结果表明:(1)细菌发酵液中ALP活性与Y...  相似文献   

2.
微囊藻毒素对人类健康影响相关研究的回顾   总被引:19,自引:6,他引:13       下载免费PDF全文
谢平 《湖泊科学》2009,21(5):603-613
本文回顾了微囊藻毒素(MC,一种最常见而重要的蓝藻毒素)对人类健康影响相关的研究,迄今为止的一些重要历史事件包括:(1)1990年,科学家首次发现,MC进入肝细胞后,能强烈地抑制蛋白磷酸酶(PP1、PP2A)的活性,这是MC致毒的最重要的分子基础;(2)1996年,在巴西发生了肾透析用水被MC(-LR、-YR和-AR)污染导致52人死亡的严重事件;(3)中国南方原发性肝癌的高发病率被认为与饮水中的MC污染有关;(4)1998年,世界卫生组织提出了饮用水中MC-LR含量的临时指导值为1μg/L;(5)从巢湖的专业渔民血液中检测出MCs,并发现长期的低剂量慢性暴露引起了一定程度的肝损伤,微囊藻毒素对人类健康的影响证据确凿,不容忽视,尤其是在富营养化越演越烈、有毒蓝藻水华肆虐的今天.  相似文献   

3.
蓝藻水华及其释放的蓝藻毒素给我国很多地区的饮用水安全带来较大威胁.尽管去除蓝藻和净化藻毒素的技术目前已有较多报道,但能同时对二者起作用的技术方法还较少,发展能够同时去除蓝藻和蓝藻毒素的技术显得十分必要.根据前期Fe(Ⅲ)化合物去除微囊藻毒素的工作基础,选取4种不同的土壤对其进行Fe(Ⅲ)改性,并应用于微囊藻毒素的去除.结果表明,黏土含量高低决定土壤本身对毒素的吸附能力强弱;土壤经过离子改性后,其毒素吸附能力与其阳离子交换量大小直接相关,且毒素去除能力较未改性前有显著提高,其中效率提升最高的一种土壤离子改性后其吸附能力增加了约148倍.离子改性土壤对微囊藻细胞同样具有絮凝沉降功能,沉降能力同样随土壤对Fe(Ⅲ)负载能力的提高而上升,使用剂量提高时微囊藻沉降平衡时间明显缩短.在野外蓝藻水华去除实验中,蓝藻细胞去除可以保持与室内实验相近的高去除率,但蓝藻毒素的去除效率有一定的下降,可能与天然水体中其它杂质的竞争作用有关.  相似文献   

4.
研究了微囊藻毒素降解菌S3和椭圆小球藻L1共固定化后,对微囊藻毒素(MC-LR)的降解作用.结果表明,共固定化藻菌体系比单独固定化菌对MC-LR有更好的降解效果,共固定的藻可促进降解菌S3的生长.固定化细胞对毒素的降解能力较稳定,受环境温度和pH变化的影响较小,重复使用仍可维持较高的降解活性.  相似文献   

5.
浮游蓝丝藻是水华蓝藻的常见种属,但对其生长和产毒特性认识不多本文首次对我国水体中的浮游蓝丝藻进行了研究.从广东省一重要供水水库中分离到一株丝状蓝藻,经形态特征鉴定为阿氏浮游蓝丝藻,并在不同的光照和温度下对该藻株进行了培养.结果表明,适合于该藻生长的光强和温度分别为20μmol/(m~2·s)和30℃;该藻株具有mcyE基因,能产生微囊藻毒素MCRR,产量为0.06μg/mg(DW).  相似文献   

6.
2013年洱海水华期间微囊藻毒素和浮游植物动态变化   总被引:2,自引:1,他引:1  
朱荣  王欢  余得昭  曾诚  沈宏  陈隽 《湖泊科学》2015,27(3):378-384
2013年秋季,洱海再次出现大规模水华,周边几十万居民的饮用水安全引起当地政府的极大关注.为了解水华发生期间洱海水体微囊藻毒素的含量和浮游植物的种类及丰度,分别在2013年9月和10月两次在洱海采集水样,测定其中两种主要微囊藻毒素MC-LR和MC-RR含量,探讨微囊藻毒素含量对洱海周边水源地的安全影响.同时也对水华期间的浮游植物特别是蓝藻进行研究,从而分析微囊藻毒素与浮游植物种类和丰度的关系.结果表明,洱海水体中微囊藻毒素含量偏低,暂不会对人类健康产生威胁,但在洱海的水鸟体内仍然检测到微囊藻毒素的富集,显示洱海蓝藻水华对水生生物的潜在危害不容忽视.浮游植物的研究发现,洱海水华的优势种属为微囊藻(Microcystis)和暗丝藻(Psephonema aenigmaticus).9月份暗丝藻更占优势,10月份则是微囊藻更占优势.研究结果显示处于富营养化初期的洱海水体中湖湾微囊藻毒素的含量与浮游植物中产毒蓝藻的种类和丰度密切相关.  相似文献   

7.
太湖微囊藻毒素时空分布特征及与环境因子的关系   总被引:8,自引:4,他引:4  
采用高效液相色谱法(HPLC)对太湖水体中溶解态微囊藻毒素(MC-LR;MC-RR)浓度进行检测,探讨微囊藻毒素浓度的时空变化及其与氮、磷、总有机碳、蓝藻生物量以及温度等湖泊环境因子之间的关系.结果表明:微囊藻毒素表底层浓度基本一致;在一天之内的变化没有明显规律;冬季微囊藻毒素浓度较高;位于竺山湾和西部沿岸地区的两个点...  相似文献   

8.
细菌VBNC状态(Viable but non-culturable state),又称"活的非可培养状态",是自然水体中广泛存在的细菌的一种特殊存活状态,复杂的环境因子变化是VBNC状态转换的可能原因.本研究利用接种温和气单胞菌的无菌湖水,研究铜绿微囊藻(Microcystis aeruginosa)培养液和微囊藻毒素粗提液对水环境中温和气单胞菌VBNC状态转换的影响,结果发现,温和气单胞菌在无菌湖水中同时存在VBNC状态和可培养状态;产毒微囊藻培养液和微囊藻毒素粗提液均能促进温和气单胞菌中VBNC细菌与可培养细菌之间的状态转换,说明微囊藻毒素可能是水环境中影响细菌VBNC状态转换的重要环境因素,其进一步的分子机制研究正在进行中.  相似文献   

9.
对太原市汾河景区采集到的微囊藻进行分离纯化,得到7株微囊藻藻株,运用ITS、PC-IGS和gyrB基因序列构建系统树来研究其分子多样性.结果表明,太原市汾河景区微囊藻具有一定的分子多样性.采用mcyA基因和ELISA检测两种方法,即全细胞PCR测定微囊藻毒素合成酶基因A( mcyA),对这些藻株的微囊藻毒素进行测定,检...  相似文献   

10.
对武汉东湖水柱和沉积物中几丁质分解菌的种类组成、数量分布及动态的研究结果表明:几丁质分解菌中.放线菌居于优势,在水柱中约为总数的50—72.3%;在沉积物中约为63—88.5%。经鉴定的102株放线菌中,链霉菌属(Steptomyces)占总数的70.6%;链孢囊菌属(Streptosporangium)、小单孢菌属(Micromonospora)、小多孢菌属(Micropolyspora)分别为8.8%、9.8%和10.8%。细菌中主要是芽孢杆菌属(Bacillus),占鉴定菌株数的42%,其次为沙雷氏菌属(Serratia)、气单胞菌属(Aeromonas)、微球菌属(Micrococcus)和短杆菌属(Brevibacterium)的一些菌株。在数量分布上,沉积物中高于水柱2—3个数量级;东湖Ⅰ站高于Ⅱ站。随着季节更迭,水温上升,其数量亦有相应变化。对菌株分解几丁质的能力和其它生物活性作了比较,并就所得结果进行了讨论。  相似文献   

11.
为探究太湖梅梁湾水体及沉积物中微囊藻毒素(MC-LR、MC-RR、MC-YR)含量的垂向分布特征,于2018年5月采集梅梁湾6个点位表层水、上覆水、混合水、间隙水以及柱状沉积物样品,并采用超高效液相色谱-串联质谱法分析样品中微囊藻毒素的含量.分析结果表明:水体中(表层水、上覆水、混合水以及间隙水)MC-LR、MC-RR、MC-YR的浓度范围分别为11.80~1297.14、2.50~818.40、1.80~176.00 ng/L,表层水、上覆水以及混合水中MC-LR的浓度高于MC-RR和MC-YR,MC-RR和MC-YR之间差别较小,而间隙水中MCs三种异构体浓度大小顺序为:MC-LR > MC-RR > MC-YR;垂向分布上,间隙水中MCs异构体(MC-LR、MC-RR、MC-YR)浓度均远高于表层水、上覆水以及混合水,表层水MCs异构体浓度略高于上覆水,混合水MCs异构体浓度介于表层水和上覆水之间.对沉积物的研究发现,1~10 cm表层沉积物中MC-LR、MC-RR、MC-YR含量范围分别为0.60~26.95、0~0.90、0~8.10 ng/g,且1~10 cm层中MCs三种异构体平均含量大小顺序为:MC-LR > MC-YR > MC-RR,其中MC-LR、MC-RR、MC-YR的检出率分别为100%、70%、92%;垂向分布上,MC-RR含量较低且变化不大,而MC-YR和MC-LR含量均随沉积物深度的增加先升高后降低.相关性分析结果表明,表层水和混合水中MCs与总磷浓度呈显著正相关,而与总氮浓度无显著相关性;上覆水、间隙水以及沉积物中MCs与总氮、总磷浓度均呈显著正相关.  相似文献   

12.
水体富营养化导致的有害蓝藻水华仍是目前全世界普遍面临的水环境问题,而有害蓝藻水华所引起的饮用水安全问题亦受到人们的广泛关注.为了解太湖水源地水源水及自来水厂出厂饮用水中微囊藻毒素(MCs)的污染现状,于2014年8月期间对贡湖湾某水厂水源水及出厂水中浮游植物胞内及胞外MCs浓度进行了调查,并同时检测了相关的理化指标.结果表明,水源水中胞内MCs总浓度平均值为7165.5 ng/L,以MC-LR和MC-RR为主,平均浓度分别为3408.7和3398.8 ng/L,其中MC-RR占总MCs比例的平均值为56.1%;而胞外溶解性MCs浓度相对较低,平均浓度为142.6 ng/L,最高浓度仅为512.8 ng/L.水厂出厂水中胞内MCs的检出浓度(平均值为0.77 ng/L)和检出频率都很低,去除率达99.8%以上;而胞外溶解性MCs的检出浓度(平均值为21.71 ng/L)和检出频率相对较高,但浓度仍远低于国家标准1.0μg/L,其去除率相对较低,仅为62.9%~81.8%.数据分析发现,水源水中胞内与胞外MCs浓度之间呈显著正相关,胞内MCs浓度与总氮(TN)浓度、铵态氮(NH+4-N)浓度、总磷(TP)浓度、高锰酸盐指数(CODMn)和浊度呈显著相关,而胞外MCs浓度与TN浓度、TP浓度、CODMn、浊度和叶绿素a浓度呈显著正相关;逐步回归结果显示,TP对胞内MCs浓度变化的解释率最高,而胞外MCs浓度变化主要与胞内MCs浓度相关.最终,通过对出厂饮用水中MCs浓度非致癌风险指数的计算发现,出厂饮用水对人类健康的威胁较小,但致癌风险相对较高.  相似文献   

13.
杞麓湖作为典型的富营养化高原湖泊,其藻华暴发引发的微囊藻毒素(microcystins, MCs)污染问题会危害水生态安全并造成人体健康风险。为了评估杞麓湖流域MCs的秋冬季节污染现状以及健康风险情况,对湖内和7条主要入湖河流入湖口的表层水进行采样检测,分析MCs主要异构体的时空分布特征,研究MCs与水质和浮游植物等环境因子的关系,并通过人体非致癌健康风险评价MCs的风险等级。结果发现,MCs浓度自秋季到冬季呈下降趋势,秋季湖内胞内MCs(IMCs)占比超过99%,冬季IMCs与胞外MCs(EMCs)浓度接近。MC-RR和MC-LR是主要的MCs异构体类型,其中MC-RR在秋季浓度占比高于MC-LR和MC-YR,而冬季MC-LR最高。MCs与微囊藻密度等生物因子呈极显著正相关关系,与TN、TP和NH3-N营养盐呈显著负相关关系。杞麓湖EMCs污染的风险指数范围为0.004~0.110,处于极低或低风险,冬季风险略高于秋季,因南岸入湖EMCs污染以及湖内IMCs释放带来的风险需要进一步关注。  相似文献   

14.
A rapid reduction in run-off has been observed in the middle reaches of the Yellow River basin in recent decades. Understanding the contributions of climate change and human activities, such as vegetation restoration and water consumption, to surface water resource reduction has become urgent and very important for future regional planning. Here, we use attribution approaches to explore the effects of climate change and human activities on run-off over the past six decades. The results showed that the observed annual run-off at Tongguan station, which is located within the mainstream of the Yellow River, exhibited a significant decreasing trend of −0.69 mm year−1 (p < .01) and varied from −0.28 to −1.46 mm year−1 (p < .01) in the eight selected tributaries from 1960 to 2015. Two relatively abrupt changes in the double mass curves occurred around 1979 and 1999; compared with Period 1 (P1; 1960–1979), the average catchment run-off decreased 32% during Period 2 (P2; 1980–1999) and up to 49% during Period 3 (P3; 2000–2015). We calculated that approximately 29% of the reduction in the run-off during P2 and 18% during P3 were attributed to climate change. Increased surface water consumption resulted in effective run-off reduction, with relative contributions of approximately 27% and 28% during P2 and P3, respectively. With the implementation of the “Grain-for-Green” project, the vegetation coverage rapidly increased from 36% in P1 to 52% in P3 and reduced run-off by 35% during P3. These findings explain the run-off reduction and benefit water resource management in the middle reaches of the Yellow River basin.  相似文献   

15.
Four micro‐catchment (MC) areas were identified to represent the main terrain types of a remote, sparsely populated upland valley catchment of 18 km2 in Cumbria, UK. These were improved land with good grazing (IB), steeply sloping land with rough grazing (SG), wet moorland with sparse grazing (WM) and enclosed woodland that excluded livestock and deer (EW). Each MC contained the origin of a small stream that flowed into Swindale Beck, the river draining the valley. The water quality during the 14‐month study, as judged by chemical and physical parameters, was excellent, but it could not be regarded as pristine because of the frequent presence of Cryptosporidium oocysts arising from livestock and wild mammal faeces. Oocysts (0·2–5·6 l?1) detected by genus‐specific immunofluorescent antibody were found in 32% of 188 water samples tested: ranking order EW 44%, IB 34%, Beck 30%, SG and WM 26%. Similarly, oocysts were identified in 9·5% of 1730 faecal samples. Small wild mammals (28%), calves (15·7%) and lambs (8·1%) were the dominant sources, whereas adult livestock (1·8%) and large wild mammals (4·8%) were less important. Autumn showed the highest occurrence of oocysts for both water and faecal samples. No hydrological controls were found to have a significant impact on the occurrence or concentration of oocysts in the main river or in the MCs, suggesting that their presence is controlled by seasonal changes in pathogen prevalence in the animal reservoir. Copyright © 2006 John Wiley & Sons, Ltd.  相似文献   

16.
Commercial ZnO, MnO2, and their acid‐treated forms were used as catalysts for oxidative degradation of Orange II dye in water. ZnO and MnO2 were treated with 0.5, 0.75, or 1.0 N aqueous H2SO4. The acid treated oxides were found to be highly effective in bringing about degradation of Orange II in water. As much as 68.7% of the dye in an aqueous solution of 1 mg/L concentration could be degraded with untreated ZnO as the catalyst. The degradation increased to 79.5% with 1.0 N acid treated ZnO as the catalyst when the reaction was carried out at room temperature for 240 min. The catalytic activity was slightly affected by the solution pH in the range of 2.0–8.0. With MnO2 as the catalyst, there was only 12.7% degradation of the dye, but this increased up to 100% when 0.5 N acid treated MnO2 was used as the catalyst. It was found that a catalyst loading of 5.0 g/L of raw and acid‐treated ZnO and a loading of 0.5 g/L of raw and acid‐treated MnO2 could bring about almost 100% degradation of Orange II in water in an interaction time of 240 min at room temperature.  相似文献   

17.
Abstract

A dynamic water quality model, HYPE, was applied to a large, data-sparse region to study whether reliable information on water quantity and water quality could be obtained for both gauged and ungauged waterbodies. The model (called S-HYPE) was set up for all of Sweden (~450 000 km2), divided into sub-basins with an average area of 28 km2. Readily available national databases were used for physiographic data, emissions and agricultural practices, fixed values for representative years were used. Daily precipitation and temperature were used as the dynamic forcing of the model. Model evaluation was based on data from several hundred monitoring sites, of which approximately 90% had not been used in calibration on a daily scale. Results were evaluated using the Nash-Sutcliffe efficiency (NSE), correlation and relative errors: 92% of the spatial variation was explained for specific water discharge, and 88% and 59% for total nitrogen and total phosphorus concentrations, respectively. Day-to-day variations were modelled with satisfactory results for water discharge and the seasonal variation of nitrogen concentrations was also generally well captured. In 20 large, unregulated rivers the median NSE for water discharge was 0.84, and the corresponding number for 76 partly-regulated river basins was 0.52. In small basins, the NSE was typically above 0.6. These major achievements relative to previous similar experiments were ascribed to the step-wise calibration process using representative gauged basins and the use of a modelling concept, whereby coefficients are linked to physiographic variables rather than to specific sites.

Editor D. Koutsoyiannis

Citation Strömqvist, J., Arheimer, B., Dahné, J., Donnelly, C. and Lindström, G., 2012. Water and nutrient predictions in ungauged basins: set-up and evaluation of a model at the national scale. Hydrological Sciences Journal, 57 (2), 229–247.  相似文献   

18.
An understanding of surface and subsurface water contributions to streamflow is essential for accurate predictions of water supply from mountain watersheds that often serve as water towers for downstream communities. As such, this study used the end‐member mixing analysis technique to investigate source water contributions and hydrologic flow paths of the 264 km2 Boulder Creek Watershed, which drains the Colorado Front Range, USA. Four conservative hydrochemical tracers were used to describe this watershed as a 3 end‐member system, and tracer concentration reconstruction suggested that the application of end‐member mixing analysis was robust. On average from 2009 to 2011, snowmelt and rainwater from the subalpine zone and groundwater sampled from the upper montane zone contributed 54%, 22%, and 24% of the annual streamflow, respectively. These values demonstrate increased rainwater and decreased snow water contributions to streamflow relative to area‐weighted mean values derived from previous work at the headwater scale. Young water (2.3 ± 0.8 months) fractions of streamflow decreased from 18–22% in the alpine catchment to 8–10% in the lower elevation catchments and the watershed outlet with implications for subsurface storage and hydrological connectivity. These results contribute to a process‐based understanding of the seasonal source water composition of a mesoscale watershed that can be used to extrapolate headwater streamflow generation predictions to larger spatial scales.  相似文献   

19.
Isotopic compositions of the water sources and evapotranspiration in large rivers of China are not well explored. In this investigation, d18 O and dD values of water from major large rivers of China are integrated to understand the spatial and temporal variations in the isotopes of water and d-excess. River water samples were collected from the channels and tributaries of the Changjiang, Yellow, Songhua and Liao Rivers in China. Water from upstream was generally enriched with light isotopes relative to that from downstream areas. Water from the Songhua River and upper reach of the Changjiang River has relatively negative isotopic values impacted by latitude and altitude effects, respectively. The spatial pattern showed that d18O-H2 O values in rivers mainly ranged from-9 to-7 % in most of China based on roughly mapped contours, and rivers enriched in light isotopes were primarily located in the Tibetan Plateau and northeast China The slopes of linear regression from the Yellow and Liao Rivers suggested that the loss of water by direct evaporation shifted the isotopes of water, especially in some small tributaries. Additionally, there was a narrow range of low d18OH2 O values from the main channel of rivers during the lowflow season relative to the high-flow season due to influence of the monsoon climate. No distinct spatial variation of d-excess values was found in the rivers of China. However, water samples in some rivers with low d-excess values had high d18 O values, indicating that evaporation in the tributaries has led to significant water loss, especially in tributaries of the Yellow and Liao Rivers.  相似文献   

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