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1.
为了了解扎龙湿地克钦湖沉积物中营养物质的分布状况,在扎龙湿地克钦湖设置了21个采样点,于2016年7月9日,采集了0~5 cm深度的沉积物样品,测定了表层沉积物样品中有机质、全氮和全磷含量;利用克里金插值法,绘制表层沉积物有机质、全氮和全磷含量的空间分布图,并分析了其空间分布特征及影响因素。研究结果表明,克钦湖0~5 cm深度沉积物中有机质和全磷含量整体上由东北向西南逐渐减小,北湖区表层沉积物中的有机质和全磷含量都大于南湖区;克钦湖中西部表层沉积物中的全氮含量较大,东南部的较小,南、北湖区表层沉积物中全氮含量平均值较接近;克钦湖表层沉积物整体呈弱碱性,北湖区表层沉积物组成以粉砂土为主,南湖区表层沉积物组成以砂土为主;表层沉积物中有机质、全氮和全磷含量与研究区的地势、植物群落分布和周边人类活动有关,粉砂土含量和pH是影响表层沉积物中有机质、全氮和全磷含量分布的主要指标。  相似文献   

2.
2010年、20111年和2012年7月对北京翠湖湿地水环境进行跟踪调查与监测,评估湿地恢复之后翠湖湿地水环境的改善效果。恢复区水体pH值、总氮(TN)、总磷(TP)、电导率(EC)和溶解氧(DO)等指标在3年间都表现为下降趋势。其中,pH值从2010年的8.36降到2012年的7.44;TN从2010年的1.94 mg/L降到2012年的1.76 mg/L;TP从2010年的0.129 mg/L降到2012年的0.117 mg/L。说明翠湖湿地经过湿地恢复后,总氮(TN)、总磷(TP)去除效果明显,湿地水环境良好改善,水体自净能力得到加强。本研究可为湿地水环境恢复评估及管理提供一定的科学依据。  相似文献   

3.
达里湖是达里诺尔湿地的重要组成部分。2019年,对达里湖开展了野外调查并采集了水样,测定了水样的氮、磷含量和非离子氨含量与水体pH的关系,并将研究结果与以往的达里湖相对应的调查资料进行比较,探讨了达里湖水体中氮、磷含量特征的形成及其对达里湖鱼类物种多样性的影响。研究结果表明,2019年7月,达里湖水体中的CODCr和CODMn质量浓度分别为125.10 mg/L和19.18 mg/L,1975~2019年明水期CODMn含量平均每年增加0.67%;水体中的总氮和总磷质量浓度分别为1.964 mg/L和1.870 mg/L,1994~2019年明水期其平均每年分别减少4.51%和增加1.90%;水体中的氨氮和总有效氮质量浓度分别为0.168 mg/L和0.490 mg/L,1975~2019年明水期其平均每年分别增加2.25%和4.59%;水体中的硝酸盐氮质量浓度为0.166 mg/L,2004~2019年明水期其平均每年增加24.78%;水体中的活性磷酸盐质量浓度和总有效氮含量与活性磷酸盐含量的比值分别为5.729 mg/L和0.086,1975~2019年明水期其平均每年分别增加1.23%和减少0.82%;水体中的非离子氨含量占总氨含量的比例为19.23%;水体中的非离子氨质量浓度为0.031 mg/L,1975~2019年明水期其平均每年减少0.28%。1975年以来,达里湖水体中的活性磷酸盐含量持续高于总有效氮含量,水体中的氮、磷组成极不平衡;水体中的化学需氧量、总磷、总氮和非离子氨含量持续超标,达里湖水体处于中度或重度富营养化状态,其对湖中原有鱼类的多样性尚无负面影响,但是对未来鱼类多样性健康发展构成了潜在威胁。  相似文献   

4.
温州三垟湿地底泥氮、磷含量及其对水质的影响   总被引:12,自引:2,他引:10  
为探讨温州三垟湿地底泥中氮、磷营养盐含量及其对水质的影响,测定了三垟湿地水体、底泥中的氮、磷含量。结果表明,三垟湿地底泥中富含氮、磷等营养盐,当氧化还原环境发生变化时,底泥可成为水体的主要污染源;底泥中的全氮、全磷若有1%释放,则会使水体中的总氮增加0.63—3.10mg/L,总磷增加0.94—4.70mg/L;若一次释放,则会使水体中的总氮增加62.50~310.00mg/L,总磷增加94.13~470.00mg/L;因此在当前情况下,即便切断外源污染,三垟湿地水体仍将长期处于富营养化状态。  相似文献   

5.
1INTRODUCTIONWater is an essential component of an eco-sys-tem.It sustains life on the earth.A community de-pends on water for its domestic,agricultural and in-dustrials needs.According to Ackefors,et al.(1994),the term water quality'in the context ofaqua…  相似文献   

6.
本文介绍南极拉斯曼丘陵湖泊水化学特征。对13个湖泊的调查和统计分析表明,湖水以Na+和Cl-为主要优势离子,不含有CO32-离子,营养物质(N、P、SiO2)在湖水中普遍偏低,而且湖水和雪样无机氮组分均以NH4+为主,水化学类型比较单一,都属氯化物Na+型贫营养水体。Na+、Cl-、SO42-的高浓度,特别是Big湖、莫愁湖和Heart湖水中离子含量明显的高,指示拉斯曼丘陵地区的降水来源以海洋气团为主,并受海洋环境影响强烈。微量元素分布在0.01~2.0μg/l之间,接近于水圈这些元素的浓度值。  相似文献   

7.
扎龙保护区湿地扰动因子及其影响研究   总被引:18,自引:1,他引:17  
许林书  姜明 《地理科学》2003,23(6):692-698
扎龙湿地的扰动因子有气候、洪水、火、水利工程、农业活动等因子。这些扰动因子给湿地带来了正反两方面的作用,而扎龙湿地在扰动因子的作用下,导致湿地面积减小、生物多样性降低、水质污染、景观破碎等,进而导致湿地功能下降,生态环境严重恶化。对湿地扰动因子进行分析,掌握它们的作用过程和发生机理,对湿地的利用、保护以及恢复重建具有重要的意义。  相似文献   

8.
叶绿素浓度垂向变化影响遥感反演精度和富营养化评价。湖泊水体叶绿素浓度影响因子众多,其垂向变化规律仍是当前的研究难点。以广东省3个典型湖泊的叶绿素浓度、营养盐浓度、藻种及粒径结构等数据,分析了叶绿素浓度垂向变化规律与影响机制,并用不同函数来拟合建模。结果表明:各水体不同时期拟合函数各异,需要分时间、分区域讨论;浅水区域(或浅水湖泊)叶绿素浓度自上而下先减后增,用傅立叶变换拟合效果佳;深水区域的规律是自上而下递减明显,用高斯函数拟合效果较好。浅水区域,光照和水温对垂向浓度的影响在本研究中体现不明显,但营养盐及底泥对其影响较明显;深水区域的垂向浓度变化是藻种、水温、营养盐等因子共同作用的结果。  相似文献   

9.
扎龙湿地的形成背景及其生态环境意义   总被引:12,自引:0,他引:12  
扎龙湿地位于黑龙江省西部, 为乌裕尔河下游尾闾湖形成的苇草湖沼。作者通过野外调 查、表土样品粒度对比和遥感影像分析, 探讨了湿地形成演化的地质环境背景, 分析了扎龙湿地 与嫩江、沙地的成因联系。研究认为齐齐哈尔- 大庆沙地由北西走向的纵向沙垄和低洼盐碱带组 成, 与科尔沁沙地一起构成了一个NE 向展布的沙带, 可能主要形成于末次冰期时期。其后嫩江 进入沙地, 对沙地进行改造, 在扎龙地区留下众多牛轭湖。后期由于构造抬升嫩江河道西迁, 乌裕 尔河成为内流河, 其尾闾湖最后演化成为现在的扎龙湿地。因此扎龙地区的环境演化过程为: 风 成沙地形成→嫩江改造、破坏沙地→嫩江西迁、乌裕尔河分流→扎龙尾闾湖形成→扎龙尾闾湖退 化、湿地形成。因此扎龙湿地与连环湖是在风成沙丘上形成的沼泽地, 是整个嫩江流域生态环境 最脆弱的一个关键区。一旦湿地消失, 将导致这个地区的盐碱化和沙漠化, 对附近的齐齐哈尔和 大庆两市的生态环境造成严重影响。  相似文献   

10.
We retrieved four sediment cores from shallow, eutrophic, macrophyte-dominated Orange Lake (A = 51.4 km2, zmax <5 m, zmean < 2 m), north-central Florida, USA. The 210Pb-dated profiles were used to evaluate spatial and temporal patterns of bulk sediment and nutrient accumulation in the limnetic zone and to infer historical changes in lake trophic state. Bulk density, organic matter, total carbon, total nitrogen, total phosphorus and non-apatite inorganic phosphorus (NAIP) concentrations displayed stratigraphic similarities among three of four cores, as did accumulation rates of bulk sediment, organic matter and nutrients. Accumulation rates were slower at the fourth site. Nutrients showed generally increasing rates of accumulation since the turn of the century. Percentages of periphytic diatom taxa increased progressively in the cores after ~ 1930. Diatom-inferred limnetic total P trends were similar among profiles. Eutrophic conditions were inferred for the period prior to the turn of the century. The lake was hypereutrophic in the early decades of the 1900s, but inferred limnetic total P values declined after ~ 1930. Declining inferred limnetic total P trends for the last 60--70 years were accompanied by concomitant increases in accumulation rates of total P and NAIP on the lake bottom. Several lines of evidence suggest that after ~ 1930, phosphorus entering Orange Lake was increasingly utilized by submersed macrophytes. Paleolimnological records from Orange Lake highlight the importance of using multiple sediment variables to infer past trophic state and suggest that aquatic macrophytes can play a role in regulating water-column nutrient concentrations in shallow, warm-temperate lakes.  相似文献   

11.
扎龙湿地水质净化机理分析   总被引:2,自引:0,他引:2  
降解污染和净化水质是湿地的重要功能。利用现场调查和水质监测资料,分析扎龙湿地水化学场特征,研究水质现状、净化机理及其与湿地水化学形成条件之间的关系。结果表明,扎龙湿地对TP、NH4-N、CODcr和悬浮物的净化率达到90%以上,对TN和NO3-N净化率可达到75%以上。水质净化功能对生态环境的自然修复作用明显,主要的水质净化机理为吸附沉淀作用、植物吸收作用、生物降解作用、反硝化作用,净化能力大小与溶液化学条件的整体特征、湿地的地质背景、水文化学循环和生物作用过程有关。  相似文献   

12.
基于SCS和USLE的程海总磷总氮参照状态推断   总被引:2,自引:0,他引:2  
将流域入湖的氮磷负荷分为点源和非点源两部分,基于SCS模型和USLE模型,分别计算流域入湖的溶解态和颗粒态非点源负荷,根据工业、城镇生活及规模养殖废水排放,计算了流域入湖的点源负荷。通过计算的入湖负荷和现有的湖泊氮磷浓度数据,建立了湖泊氮磷质量守恒模型。根据计算的逐年入湖氮磷负荷和建立的湖泊氮磷质量守恒模型,逆推逐年的湖泊氮磷浓度,确定湖泊氮磷参照状态。应用建立的模型推断程海的TP、TN参照状态分别为0.014 mg/L和0.247 mg/L。构建的湖泊氮磷参照状态推断模型,所需资料少,概念清晰,在资料缺乏的其他湖泊流域具有推广应用价值。  相似文献   

13.
Long-term water quality monitoring data from two riverine lakes in the Upper Mississippi River basin, Lakes St. Croix and Pepin, were analyzed to compare the long-term average water quality conditions and land use distributions, water quality trends and loads at lake inlets and outlets, trends from long-term versus short-term monitoring records, and the ability of paleolimnological cores to accurately infer lake water quality conditions. During the 1976–2004 period, the long-term average concentrations of nutrients, suspended solids, and chlorophyll-a were consistently lower at the Lake St. Croix inlet versus the Lake Pepin inlet, which drains a greater proportion of urban and agricultural runoff. Despite these differences, nutrient trends were similar at the inlets to both lakes; reductions in total phosphorus and ammonium concentrations were attributed to improvements in point source technologies, whereas increasing nitrate concentrations were attributed to both point source changes and nonpoint source increases. Despite improvements in several water quality variables, nitrate concentrations are increasing in both lakes, sediment trends indicate persistent nonpoint source inputs to Lake Pepin, and current total phosphorus concentrations remain well above pre-1950s levels in both lakes. Since urban development and agriculture are increasing in the Lake St. Croix and Lake Pepin Watersheds, continued point source regulation and additional nonpoint source control efforts will be needed to further improve water quality in these lakes. The 1976–2004 trends for most water quality variables were similar at inlet versus outlet sites on Lake St. Croix. Trends at Lake Pepin inlet versus outlet sites were less similar, but data availability limited the comparison to the 1993–2003 period. While the truncated data record highlighted short-term trends in both lakes, the full data record was most useful for exploring general patterns in water quality. Length of monitoring record affected our ability to detect trends at the inlets to both lakes, and altered the magnitude of detected trends. During the two decades of the 1980s and 1990s, paleolimnological estimates of retained phosphorus loads were similar to those estimated from recent water quality monitoring. These similarities support the use of paleolimnological approaches to infer past water quality conditions in Lakes St. Croix and Pepin. This is one of eight papers dedicated to the “Recent Environmental History of the Upper Mississippi River” published in this special issue of the Journal of Paleolimnology. D. R. Engstrom served as guest editor of the special issue.  相似文献   

14.
1 INTRODUCTIONConstructedwetlandsplayanimportantroleinthereductionofnutrients,particularlyphosphorous,fromenteringintothewaterways .Excessivelevelsofphosphoroushavebeenidentifiedasamajorcon tributortoblue greenalgalbloomsinwaterways.Anumberofresearchprog…  相似文献   

15.
乌裕尔河流域水环境的变化导致下游湿地迅速退化。探讨了近65 a(1951—2015)扎龙湿地系统对乌裕尔河流域径流量变化的响应。结果表明:乌裕尔河中下游的径流量急剧减少给下游湿地的演替带来明显的影响,上游来水供给不足导致湿地长期处于干旱缺水的状态,湿地水面面积与蓄水量显著减少,并导致扎龙湿地地下水位显著降低(P<0.05)。湿地持续干旱缺水引发此区域大面积的沼泽退化并发生次生盐渍化。近年来,扎龙湿地发育的盐渍土面积达到250 km2以上,并且向核心区蔓延。湿地持续退化对在湿地栖息和繁殖的珍稀水禽带来巨大的冲击。  相似文献   

16.
滇池不同流域类型降雨径流对河流氮磷入湖总量的影响   总被引:25,自引:5,他引:20  
通过对滇池三种不同流域类型的雨季初始期三场降雨径流的汇水河道的入湖口水质和流量监测 ,重点分析了典型城市纳污河流、城乡结合型河道和农业重污染区河道的营养盐携带状况与特征。研究结果表明 :不同流域类型河流的氮磷营养盐入湖总量受降雨过程及特征、流域类型特征、降雨径流流量、径流水营养盐浓度综合控制。城乡结合型河道 (大清河 )有最高的TP、KN (凯氏N)、NH3 N、NO3 N和NO2 N入湖总量 ,三场降雨累积量分别为11374 3、 12 7971 7、 85 36 5 4、 92 3 4和 84 1 2kg ;城市纳污河流 (乌龙河 )有最高的单位面积入湖总量负荷 ,TP、KN、NH3 N和NO2 N分别为 5 35 7、 5 86 0 5、 382 1 9和 2 4 6kg/km2 。  相似文献   

17.
Field observations showed that the characteristics of chemical composition of waters and the development of plankton algae in the lakes within the delta of the Selenga river are determined by their flowage. The most open Lake Nekipelovskoe communicates with the Selenga outlets throughout a year, and Lake Zavernyaikha only at the period of an open channel. Lake Semenovskoe and Lake Khlystov Zaton are located in the islands and are isolated from the outlets. According to composition of main ions, the lakes under investigation refer to the hydrocarbonate class, the calcium group. The sum of ions in the water of Lake Nekipelovskoe approaches the one in the Selenga (86?221 mg/dm3), and the highest sums of ions were recorded in the wintertime in the lakes isolated from the outlets (446?743 mg/dm3). The lakes of the delta are characterized by a high trophicity. The maximum concentrations of total phosphorus in Lake Nekipelovskoe and Lake Zavernyaikha were 68 and 122 μg mg/dm3, and in Lake Semenovskoe and Lake Khlystov Zaton ?0.8 and ?0.63 μg mg/dm3, respectively. The most intense development of algae is observed in Lake Zavernyaikha, which is due to the high population of Baikal endemics. Lake Zavernyaikha showed a close negative correlation between the concentration of NO 3 ? , mineral phosphorus and phytoplankton biomass; the correlation coefficient was ?0.8 and ?0.63, respectively. The lakes exhibited increased contents readily hydrolysable organic matter, and a decrease in dissolved oxygen concentration in winter; hydrogen sulfide was repeatedly recorded in Lake Khlystov Zaton. The water quality in the lakes during the springtime varies from “quite clean” to “weakly polluted”; at low-water periods, especially in winters, it can drop to the category of “exceedingly dirty”. The water quality of the Selenga can be influenced by the lakes during spring floods when material accumulated during the wintertime is transported to the river outlets and further to Lake Baikal.  相似文献   

18.
Since the construction of the Three Gorges Dam, the Poyang Lake hydrological characteristics obviously changed. During the impoundment period of the Three Gorges Reservoir, the hydrodynamic factors of Poyang Lake varied. Water level dropped, the velocity decreased and water exchange time lengthened, which changed the release of phosphorous from sediments. In order to investigate how the hydrodynamic factors influence the release of phosphorous from sediments, we used a two-way annular flume device to simulate the release characteristics of phosphorous from sediments under variable water levels and velocities. We found that both water level rising and velocity increasing could enhance the disturbance intensity to sediments, which caused the increase of suspended solids (SS) concentration, total phosphorus (TP) concentration in the overlying water, and the ability that phosphorus released to overlying water from sediments enhanced as well: when overlying water velocity maintained 0.3 m/s, SS concentration increased to 4035.85 mg/L at the water level 25 cm which was about 25 times compared to the minimum value and TP concentration in the overlying water also reached the maximum value at the water level 25 cm which was 1.2 times that of the value at 10 cm; when water level maintained 15 cm, SS concentration increased to 4363.35 mg/L at the velocity of 0.5 m/s which was about 28 times compared to the value of 0 m/s, and TP concentration in the overlying water increased from 0.11 mg/L to 0.44 mg/L. When the water level maintained 15 cm, the phosphorous release rate reached the maximum value of 4.86 mg/(md) at 0.4 m/s. The concentration of total dissolved phosphorous (TDP) and soluble reactive phosphate (SRP) both in overlying water and sediment-water interface were negatively correlated with pH. Using the parabolic equation, the optimum water level at a velocity of 0.3 m/s was calculated to be 0.57 cm, and the optimum velocity at water level of 15 cm was found to be 0.2 m/s.  相似文献   

19.
根据太白湖沉积柱中硅藻、孢粉、粒度、磁化率、元素含量等指标记录,冗余分析结果表明松孢粉的百分含量、沉积物磷浓度、频率磁化率及有机碳含量是能显著解释水环境变化的最小变量组合,解释的硅藻变率百分比达51.5%,仅比所有沉积指标共同解释的信息量少6.4%。主要根据该4指标的古环境意义,对该湖近200年来的营养演化驱动机制进行了探讨。太白湖近代富营养化过程表明:在温暖湿润的气候背景下,较高营养背景的湖泊极易在人类活动的驱动下发生富营养化,因此对湖泊资源必须进行合理的人为开发与利用。  相似文献   

20.
鄱阳湖湿地生态保护与可持续利用研究   总被引:16,自引:0,他引:16  
鄱阳湖湿地是国际重要湿地之一 ,对调蓄长江洪水、候鸟与湿地多样性保护等具有重要意义 ,同时也是全国著名的商品粮基地。湿地保护、恢复与湖区社会经济发展的矛盾随着退田还湖的实施而突现。文中在对鄱阳湖湿地主要生态功能、生态环境问题进行分析评价的基础上 ,提出了湖区湿地保护与可持续利用的对策  相似文献   

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