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1.
浅水湖泊沉积物磷释放的波浪水槽试验研究   总被引:15,自引:1,他引:15  
为探索浅水湖泊水动力扰动作用对沉积物内源营养盐释放的规律,采用波浪水槽试验研究了波浪扰动对太湖和巢湖沉积物悬浮和磷释放的作用.试验结果显示在强波浪扰动下,底泥大规模悬浮,使得水体中悬浮固体(SS)、总磷(TP)和溶解性总磷(DTP)含量显著升高,太湖和巢湖底泥水槽试验中上覆水体TP含量分别升高了6倍和3倍,DTP分别升高了1倍和70%,太湖底泥试验中溶解性活性磷(SRP)含量亦升高了25%.掀沙过程中,不但表层底泥间隙水中的溶解性磷释放到上覆水体当中,沉积物颗粒所吸附的磷也大量转化为SRP而解吸释放.然而,强波浪掀沙一段时间后,溶解态磷的释放逐渐受到限制.随着波浪扰动作用的持续,悬浮物的中值粒径减小,细颗粒组分的百分含量明显增加,使得悬浮物对溶解态磷的吸附能力增强;波浪扰动显著提高了水体的溶解氧浓度,也会促进水体铁锰物质的氧化,增大其对磷酸根离子的吸附能力.这些变化可能是波浪掀沙后期限制水体SRP浓度进一步升高的主要原因.太湖底泥波浪水槽试验的结果与太湖梅梁湾中心区域常见风浪扰动下底泥的悬浮起动情况相吻合,底泥起动的临界切应力也基本相同,强波浪掀沙的切应力条件及水体SS,TP及SRP浓度变化的特点也一致,表明本实验的结果接近太湖的实际状况.本研究说明太湖的水动力扰动能显著提高水体TP及SRP浓度,大波掀沙初期对底泥磷释放的影响最大,后期的影响强度则有所下降.  相似文献   

2.
波浪作用下太湖底泥试验及航道回淤分析   总被引:4,自引:1,他引:4  
波浪作用下泥沙的起动和输移研究对航道回淤分析具有重要意义.以往这类研究主要针对海岸地区的非粘性沙,而对于单纯波浪或以波浪为主要动力的粘性泥沙运动,特别是湖区底泥的研究相对较少.本文通过波浪水槽试验对太湖底泥的起动和输移进行了研究,并提出波浪动力下含沙量经验公式,由此对太湖地区某具体工程的航道回淤进行分析计算.该成果对研究波浪作用下淤泥的输移及太湖地区类似的航道回淤问题具有借鉴意义.  相似文献   

3.
易雨君  唐彩红  张尚弘 《湖泊科学》2020,32(6):1827-1836
浅水湖泊沉积物再悬浮过程促进了沉积物内源性物质的释放,造成湖泊水体内源污染,加剧湖泊水质污染与生态恶化.开展刚性植被不同分布格局下的沉积物再悬浮水槽试验,能为浅水草型湖泊、滨海湿地等水环境治理与生态修复提供理论参考.本研究通过开展实验室波浪水槽试验,检验了3种直径12种密度的刚性模型植被对波浪扰动白洋淀沉积物再悬浮的影响,通过测定不同植被情景不同波浪条件下的瞬时速度和沉积物再悬浮浓度,详细阐述了植被产生的紊动能对沉积物再悬浮临界状态的影响,构建并验证了沉积物再悬浮植被紊流模型,预测了沉积物再悬浮的临界速度,为湿地生态恢复与保护提供参考.结果表明:1)植被的存在能有效增加近床面的紊动能;2)紊动能是控制沉积物再悬浮的关键性因素;3)沉积物再悬浮的临界波速与植被的固相体积分数相关.  相似文献   

4.
浅水湖泊湖沼学与太湖富营养化控制研究   总被引:2,自引:1,他引:1  
秦伯强 《湖泊科学》2020,32(5):1229-1243
自2007年无锡暴发饮用水危机事件以来,太湖经历了前所未有的高强度、大规模治理,各种治理措施累计投资已经超过千亿元.监测显示,在治理初期太湖的氮、磷浓度下降明显,水质有所好转,但最近几年关键水质指标总磷与浮游植物叶绿素α浓度出现了波动,蓝藻水华有所反弹.研究表明,太湖的外源负荷并没有减少,这与城镇用水量增加、污水排放标准偏低、面源污染削减不足有很大的关系;同时,内源负荷也因为蓝藻水华的持续而加重,浅水湖泊水深浅、扰动强的特点强化了磷的循环利用效率,加剧了内源负荷对湖泊富营养化和蓝藻水华的影响.气候变暖叠加营养盐富集的复合效应、流域风速下降以及暴雨事件频次和强度增加等气象水文条件变化,都促进了太湖蓝藻水华的暴发;蓝藻水华的时空分布特征则受湖泊水动力的决定性影响.太湖治理的曲折过程,凸显了大型浅水湖泊湖沼学研究的不断深入与发展,未来需要继续加强多学科交叉研究,特别是基于湖泊-流域系统的气象水文、生物地球化学和生物生态学的学科交叉.对于太湖生态环境的综合治理和管理,既要注重湖泊与流域相结合,更需要重视自然科学和人文科学的有机融合,才能真正达到控制太湖富营养化、维护流域水环境安全与社会经济可持续发展的目标.  相似文献   

5.
程月  李一平  施媛媛  唐春燕 《湖泊科学》2020,32(6):1646-1656
随着太湖流域控源截污和面源整治的推行,底泥释放成为太湖不可忽视的污染源.本文基于EFDC模型构建太湖沉积成岩模型以动态模拟底泥释放过程,以氨氮和硝态氮为水质目标,采用拉丁超立方抽样抽取沉积成岩模型的18个参数进行不确定性分析,采用标准秩逐步回归法进行敏感性分析.结果表明:对于大型浅水湖泊,沉积物-水界面的硝化作用、反硝化作用和扩散过程对底泥氮的释放影响很大,太湖氮浓度的不确定性有明显的时空差异,并且受藻类生长影响;随藻类生长生化反应参数的敏感性逐渐减弱,动力参数的敏感性逐渐增强,氨氮的主要敏感参数为孔隙水扩散系数和最优硝化反应速率,贡献率分别是41.68%和37.82%,硝态氮的主要敏感参数为孔隙水扩散系数和表层反硝化作用反应速率,贡献率分别是29.15%和42.34%,这些参数的取值需予以着重考虑.本研究识别出太湖底泥氮释放的关键物化过程,为模型调参提供优先级并给出优化区间,对减小模型的不确定性、提高模型精度有参考意义,为定性指导大型浅水湖泊底泥释放的室内实验模拟提供依据.  相似文献   

6.
利用富集因子和Hakanson潜在生态风险指数法,结合年代学结果,对长江中下游湖泊太白湖、龙感湖、巢湖和西氿沉积物中重金属元素Co、Cr、Cu、Ni、Pb、Zn的富集程度进行了评价,并比较分析了上述重金属的潜在生态风险.结果表明,太白湖和龙感湖沉积物中各重金属富集程度均较低;巢湖沉积物中Co、Cr、Ni的富集程度接近中等水平,而Cu、Pb、Zn的富集已经达到中等水平;西氿沉积物中Co的富集非常低,Cr、Ni富集水平较低,Pb达到中等富集,Cu、Zn达到较高的富集水平.对4个湖泊沉积物中重金属的综合污染程度进行比较:巢湖西氿龙感湖太白湖.各湖泊沉积物中单一元素的潜在生态风险都较低,但是,根据多元素潜在生态评价指数,各湖泊沉积物中重金属存在明显不同的潜在生态风险:巢湖西氿龙感湖太白湖.总体上看,太白湖和巢湖沉积物重金属污染以及潜在生态风险自1965年以来一直在加重,而龙感湖和西氿沉积物在表层有下降的趋势.这种差异与各个湖泊流域内人类活动的方式和强度密切相关.巢湖和西氿流域内城市化、工业化发展迅速,人类活动导致大量重金属元素进入湖泊,给湖泊带来明显的污染;而龙感湖和太白湖流域人类活动主要以农业活动为主,人类活动对重金属的贡献相对较小.  相似文献   

7.
太湖水环境是国内外关注的焦点,其生态环境质量影响到流域经济社会发展.2007年太湖水危机事件,催生了对太湖的综合整治.本文基于2007-2016十年对太湖水质与蓝藻水华面积等的监测,分析了太湖水环境的演变趋势.太湖十年水质变化阶段性明显,2008-2012年各项水质指标下降明显,而后趋于平缓,近3年个别指标如总磷、叶绿素a浓度等呈现快速上升的反弹趋势;另外,水质指标在空间上的差异性逐步缩小,原来污染严重的西北部水域水质改善效果较为显著,其正从"污水湖"向"自然湖"状态过渡,而原来水质相对较好的东南部水域水质却逐步下降.本文也综述分析了太湖鱼类群落结构变化与水质环境变化的相关性,基于太湖局部水域的鱼类调控实践,提出了太湖现阶段"以渔改水"的鲢鳙控藻非经典生物操纵与鱼类结构调控的经典生物操纵结合的渔业途径.湖泊富营养化治理需要充分关注到鱼类对湖泊浮游生物和水质变化的重要驱动效应,需要充分考虑到鱼类群落结构优化和食物网调控对环境的改善作用.  相似文献   

8.
太湖湖体综合治理对策的探讨   总被引:20,自引:4,他引:20  
李文朝 《湖泊科学》1996,8(4):289-296
太湖的污染治理已迫在眉睫,集水域内的污染源控制当然是根治太湖污染的首选措施。但要在短期内实现湖泊水质和生态环境的好转,单依靠外污染源控制是远远不够的,必须在湖内实施一系列行之有效的治理措施。本文从湖泊生态学方面分析了影响太湖生态系统恢复的内部障碍,主要针对蓝藻灾害、城市水源污染、局部性水质污染及生态环境恶化等关键问题,本着标本兼治、效果为先、综合治理的原则,提出了恢复沿岸带水生植被、收获控制蓝藻、  相似文献   

9.
张民  史小丽  阳振  陈开宁 《湖泊科学》2021,33(4):1051-1061
随着我国湖泊治理力度的加大,太湖和巢湖的营养盐水平,特别是氮水平近年来明显下降,如2007年以后太湖总氮和近年来巢湖的氨氮水平都呈现下降趋势,但是2个湖泊水华蓝藻的优势种却向相反的方向演化,太湖的长孢藻(Dolichospermum)比例在增加,而巢湖的长孢藻比例却在降低,为阐明这种变化过程和驱动因素,本研究利用太湖(19932015年)和巢湖(2012 2018年)的历史数据分析了2个湖泊中的水华蓝藻——微囊藻(Microcystis)和长孢藻生物量的历史变化过程,并结合营养盐数据分析了影响2种水华蓝藻变动的驱动因素.结果显示:太湖和巢湖的微囊藻生物量多年来始终保持高位波动,近年来均有升高的趋势,这与2个湖泊磷的高位波动具有明显的相关性,磷是决定微囊藻生物量长尺度变化的主要驱动因素;太湖的长孢藻生物量呈现较大波动变化,2007年以后明显升高,巢湖的长孢藻生物量则明显下降,氮与长孢藻生物量呈现负相关关系,而且这种负相关仅在低磷浓度时具有显著性.微囊藻生物量对磷浓度变化敏感的正反馈响应是其水华形成的重要机制之一,在高温高磷条件下,微囊藻可以快速繁殖,并竞争性排除长孢藻,从而形成优势;而长孢藻可以通过温度生态位和固氮两种方式占据优势,在氮浓度相对较低,且温度低于微囊藻形成水华的温度范围时,长孢藻可以依靠温度生态位的优势形成水华,而在氮限制的条件下,即使在夏季高温时,长孢藻依然可以利用固氮作用形成水华,但是关键的温度阈值和开始固氮的氮浓度阈值仍不清楚.基于2种水华蓝藻对营养盐变化响应的差异,建议在进行蓝藻水华治理、污染削减过程中,应针对不同水华蓝藻的特性进行分时段分类别的营养盐控制策略.  相似文献   

10.
水动力条件下太湖透明度模拟研究   总被引:6,自引:0,他引:6  
根据太湖实测资料分析得到了太湖悬浮物浓度和透明度之间呈现明显的反比关系, 归纳总结了以往研究成果中建立的太湖透明度与悬浮物浓度之间的关系, 说明可以通过模拟太湖悬浮物来反映太湖透明度的变化规律. 实测资料表明, 不同水深处的悬浮物浓度与风速的变化趋势大致相近, 风速越大, 悬浮物浓度越大. 太湖波浪、湖流与悬浮物浓度均呈现正相关关系, 悬浮物浓度随着波浪和湖流的增大而增大, 但波浪是影响底泥再悬浮的主要因素, 流速次之. 建立了太湖湖流、波浪和悬浮物耦合的数学模型, 在悬浮物模型中考虑了波浪和湖流的综合影响. 并将床面层附近底泥的起悬量和沉降量分开处理, 考虑了近底水流中湍流脉动的随机特性, 引入了底泥起悬条件. 模型清楚地反映出了悬浮物中的底泥颗粒与床面层内运动底泥及床面活动底泥发生相互交换过程中的两个方面. 模拟结果表明太湖悬浮物沿岸区域受湖流的影响较大, 湖心区域受波浪影响较大. 利用该模型, 模拟了太湖悬浮物和透明度的变化规律, 模拟结果被实测值较好验证, 说明所建立的模型是基本合理的, 可用来进行太湖透明度的模拟和预测.  相似文献   

11.
Defining reference conditions for lakes situated in areas of human settlement and agriculture is rarely straightforward, and is especially difficult within easily eroding and nutrient rich watersheds. We used diatoms, cyanobaterial akinetes, remains of green algae and chironomid head capsules from sediment samples of Lake Kirmanjärvi, Finland, to assess its deviation from the initial ecological status. These site-specific records of change were compared to current type-specific ecological status assessment. All paleolimnological data indicated deviation from natural conditions and mirrored the current, monitoring-based assessment of “moderate” ecological lake status. However, the sediment data showed that the lake should be re-typified as a naturally eutrophic lake. Sediment records as well as current monitoring data indicated temporary improvement in water quality in response to extensive fish manipulation. Our results suggest that paleolimnological records can be used to derive site-specific reference conditions and that extensive restoration efforts can result in gradual, observable improvements of water quality and ecological status.  相似文献   

12.
The nonparametric Mann-Kendall test and the Pettitt test were employed to examine the change trends and shifts of runoff and sediment input to Poyang Lake between 1961 and 2013. Water balance and linear regression models were used to evaluate the impacts of climate variability and human activities on the runoff and sediment discharge changes. The results showed that runoff inputs to the lake had insignificant temporal trends and change points, while sediment inputs had significant decreasing trends, with an abrupt change in 1989. Quantitative assessment demonstrated that human activities led to a small decrease (5.5%) in runoff inputs to the lake, and a dramatic (121.4%) decrease in sediment inputs to the lake between the reference period (before the change point) and the human-influenced period (after the change point). This work provides a useful reference for future policy makers in water resource utilization and environmental safety of the Poyang Lake basin.  相似文献   

13.
太湖东部不同类型湖区底泥疏浚的生态效应   总被引:9,自引:1,他引:8  
为研究底泥生态疏浚对太湖东部不同类型湖区水生生态系统的影响,2012年8月于东太湖养殖湖区和胥口湾草型湖区采集沉积物和生物样品,分析疏浚对底泥污染控制、水质改善以及各生物群落结构的影响.结果表明,底泥疏浚能有效去除表层沉积物中的营养物质,降低底泥重金属含量及其潜在生态风险,但底泥疏浚对不同类型湖区水质和生物群落结构的影响存在明显差别.在富营养化较严重的东太湖养殖湖区,底泥疏浚达到了一定的改善水质的效果,浮游植物密度、生物量均不同程度降低,且群落中蓝藻所占比例下降;水生植物和底栖动物群落也在较短时间内得到恢复;胥口湾草型湖区的底泥疏浚则破坏了原先良好的水生植物群落,造成湖区整体水质下降,各主要生物类群的恢复相对缓慢.  相似文献   

14.
Abstract

Poyang Lake is the largest freshwater lake in China, and plays a major role in flood mitigation, restoration and conservation of the ecological environment in the middle Yangtze River basin. Sediment load and streamflow variations in Poyang Lake basin are important for the scouring and deposition changes of this lake. However, these hydrological processes are heavily influenced by human activities, such as construction of water reservoirs, and land-use/land cover changes. By thorough analysis of long series of sediment and streamflow obtained from five major hydrological stations, we systematically investigated the spatial and temporal patterns of these hydrological processes and the hydrological responses to human activities using the Mann-Kendall trend test, the double cumulative mass curve and the linear regression method. The results show: (1) no significant change in streamflow followed by an increasing tendency after the 1990s that turns to be decreasing about 2000; and (2) a sharp increase of sediment load during the late 1960s and 1970s triggered by extensive deforestation (during the “Cultural Revolution” in China) followed by a tendency to decrease after the early 1980s. Construction of water reservoirs has greatly reduced the sediment load of the Poyang Lake basin, and this is particularly the case in the Ganjiang River, where the sediment load changes may be attributed to the trapping effects of the Wan'an Reservoir, the largest water reservoir within the Poyang Lake basin. There is no evidence to corroborate the influence of water reservoirs on the streamflow variations. It seems that the streamflow variations are subject mainly to precipitation changes, but this requires further analysis. The current study may be of scientific and practical benefit in the conservation and restoration of Poyang Lake, as a kind of wetland, and also in flood mitigation in the middle Yangtze River basin that is under the influence of human activities.

Citation Zhang, Q., Sun, P., Jiang, T. & Chen, X.-H. (2011) Spatio-temporal patterns of hydrological processes and their hydrological responses to human activities in the Poyang Lake basin, China. Hydrol. Sci. J. 56(2), 305–318.  相似文献   

15.
福建闽江水口库区飘浮植物覆盖对水体环境的影响   总被引:18,自引:0,他引:18  
蔡雷鸣 《湖泊科学》2006,18(3):250-254
为了探索城市富营养化湖泊生态修复技术,2000年9月在南京市莫愁湖物理生态工程试验区内,开展了隔离外源污染、覆盖底泥和种植水生植物对湖泊水质平均水平和水体脉动强度影响的比较研究.试验结果表明,通过围隔隔离外源污染可在较短时间内迅速改善湖泊TN的平均水平,但难以提高湖泊生态系统的稳定性;通过覆盖底泥控制内源污染难以改善湖泊水质的平均水平,并且难以提高湖泊生态系统的稳定程度;种植水生植物不仅能够全面改善湖泊水质的平均水平,而且可以提高湖泊生态系统的稳定性.此外,富营养化湖泊中,藻类生长与湖水营养盐浓度并不存在正相关的关系.因此,对城市湖泊富营养化的防治,在控制外源污染降低营养盐浓度的同时,应恢复湖泊原有的以水生高等植物为主的生态系统.  相似文献   

16.
Sediment yields estimated from contemporary stream monitoring of suspended sediment in the Merevale forested catchment, North Warwickshire, were compared with the sediment yield record obtained from analysis of lake sediment in the downstream reservoir. Total sediment volume and mass for nine periods since 1861 were calculated by extrapolation of synchronous levels in 54 cores, identified from magnetic susceptibility and other magnetic measurements, and by using 210Pb and 137Cs analysis to provide an absolute sediment chronology. Sediment yield estimated from the two methods show comparable but low (50-200 kg ha?1 yr?1) levels of sediment loss. While suggesting that lake sediments can be a useful means for extending the period over which contemporary monitoring exists, the study stresses the need for detailed historical records of land use and climate against which long term sediment yield records can be evaluated.  相似文献   

17.
Rapid water level rise due to climate change has the potential to remobilize loose sediments along shorelines and increase the turbidity of nearshore waters, thereby impacting water quality and aquatic ecosystem health. Siling Lake is one of the largest and most rapidly expanding lakes on the Tibetan Plateau. Between 2000 and 2017, this lake experienced an increase in water level of about 8 m and a doubling in water turbidity. Here, using this lake as a study site, we used a wave model and high-resolution remote sensing of turbidity (Landsat-8) to assess the potential connection between water-level rise, enhanced wind-driven sediment resuspension and water turbidity. Our analysis revealed that strong bottom shear stresses triggered by wind-generated waves over newly flooded areas were related to an increase in water turbidity. The spatial variability of Siling Lake turbidity showed a strong dependence on local wind characteristics and fetch. Two factors combined to drive the increase in turbidity: (1) high wave energy leading to high bottom shear stresses, and (2) flooding of unvegetated shallow areas. Using a new relationship between wave energy and turbidity developed here, we expect the increase in turbidity of Siling Lake to taper off in the near future due to the steep landscape surrounding the lake that will prevent further flooding. Our results imply that rising water levels along the coast are not only expected to influence terrestrial ecosystems but could also change water quality. The methodology presented herein could be applied to other shorelines affected by a rapid increase in water level. © 2020 John Wiley & Sons, Ltd.  相似文献   

18.
《国际泥沙研究》2022,37(6):809-822
Lakes are sensitive ecosystems and respond quickly to any natural or anthropogenic contamination, particularly in urban areas due to poor planning and mismanagement in urban settlement, encroachment, and anthropogenic pollution. In the current study, water and sediment geochemistry are used along with available time series of geospatial data sets to assess: a) provenance and sources of pollution in the lake sediment and water, b) health risk using various sediment and water quality indices, and c) the key drivers of lake shrinkage. Chemical index of alteration (CIA) of lake sediment is higher (>85) with an atypical cluster of samples (CIA = 50–75) towards the south and west of the lake. Further, samples in this cluster show granodioritic provenance which is contrary to the overall mafic provenance of lake sediment. The unusual decrease in CIA in the southern and western side of the lake is attributed to anthropogenically induced fresh sediment in the lake. The results indicate that the sediment is highly polluted by cadmium (Cd) and moderately polluted by copper (Cu), molybdenum (Mo), lead (Pb), and boron (B). Higher Metal Index (MI) values for most of the water samples (>70%) and Hazard Index (HI) for chromium (Cr), nickel (Ni), and cadmium (Cd) towards west and south of the lake reflect the deterioration of water quality in the lake. Moreover, land use change detection attained from available time series of geospatial data sets indicate a drastic transformation of the open water area into other land use classes particularly human settlement, shrinking the lake open water area by 13 km2 since 1859. The current study will help policy makers and managers to restore and conserve the lake.  相似文献   

19.
湖泊沉积物储存着长时期的流域环境信息,是百年尺度湖泊环境演变研究的高分辨率记录器。本文通过210Pbex137Cs组合定年法,分析放射性核素剖面特征,研究沉积速率时空变化规律,并解析沉积物粒度指示的环境信息,揭示百年尺度湖泊沉积环境演变。结果表明:洞庭湖210 Pbex剖面分布呈现多段衰变型、混合—衰变—平衡型、衰变—本底型和无沉积型4种类型。3大湖体200 cm的沉积深度对应的年代跨度为127~162年,构建了洞庭湖沉积物深度—年代关系。洞庭湖平均质量沉积速率为1.47~3.11 g/(cm2·a),整体上呈现南洞庭湖>西洞庭湖>东洞庭湖的空间特征;自1900年后,质量沉积速率增加了3~7倍,呈时序增加趋势。沉积年代上,沉积物粒度特征表明洞庭湖沉积环境呈3个阶段2个过渡期的演变特征,与同时期区域内毁林开荒、水利建设、植树造林等人为活动有较好的对应关系,说明近百年来人为活动是洞庭湖泥沙沉积的重要因素。本研究结果可为强化湖泊及其流域生态环境保护...  相似文献   

20.
东太湖表层沉积物的磷饱和度初步研究   总被引:8,自引:0,他引:8  
对东太湖一个横断面上8个样点、1个网围养鱼区样点,1个鱼塘样点的表层10cm沉积物含磷量进行了分层采样分析,并以表层沉积物和湖水组成系统,通过磷添加研究了沉积物的磷饱和度。  相似文献   

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