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131.
太湖湖泊生态系统健康评价   总被引:29,自引:10,他引:19  
五里湖作为太湖富营养化最严重的区域,内源污染和生态退化成为困扰五里湖最主要的两个问题.生态清淤工程的特点是对所要疏浚污染底泥污泥厚度通过采样分析后精确测定,并且在施工过程中的控制精度也高于一般的工程疏浚.所以生态清淤既可以清除五里湖的内源污染,又能为其生态恢复创造条件.本文通过对五里湖生态疏浚对生态系统的影响,疏浚区底泥、水质质量的改善的效果以及对原位培养生物的抗氧化系统组分变化等多个方面进行分析评价,发现,五里湖生态疏浚区底泥中磷含量下降了30%,左右,重金属含量升高的地质积累指数小于1级.疏浚后半年内水体中总磷和溶解磷含量比疏浚前下降10%-25%左右,叶绿素a含量下降40%,左右,其它水质理化参数保持正常.作为生物标志物原位培养生物的抗氧化系统组分在疏浚前后变化较小所以认为,五里湖疏浚达到了一定的效果,并且控制了对生态的压力,为下一步生态修复创造了条件.  相似文献   
132.
为探究东南丘陵山区深水水库中生态浮床技术深度脱氮的效率及管理措施,以大型山谷型深水水库千岛湖为例,选取湿生植物空心菜(Ipomoea aquatica)和水生植物粉绿狐尾藻(Myriophyllum aquaticum),采用生态浮床技术,开展了原位模拟实验对比研究,探究不同营养盐浓度和光强下两种植物的生长状况与氮素去除效率。结果发现:(1)空心菜长势受营养盐和光照条件影响明显,添加氮磷后(TN=2.37 mg/L,TP=0.046 mg/L)的空心菜生物量是原位水体(TN=0.66 mg/L,TP=0.028 mg/L)的1.6倍,适当遮光有助于浮床植物生长,40%遮光条件下空心菜的生物量是不遮光条件下的1.5倍;而粉绿狐尾藻生长受营养盐和光照条件影响均较小。(2)空心菜对于水体氮素净化能力显著高于粉绿狐尾藻,在最佳条件下空心菜和粉绿狐尾藻对氮素的去除效率分别达到213.30和44.23 mg/(m2·d)。(3)空心菜去除氮主要以植物同化作用为主,占70%以上TN去除量,40%遮光环境通过明显提升空心菜同化吸收氮量和根系反硝化速率增强了氮的去除能力;粉绿狐尾藻同化吸收和反硝化脱氮作用各占50%左右,以遮光75%下脱氮效果最好。本研究表明,采用生态浮床技术能够强化深水水库的脱氮能力,空心菜更适合在氮浓度较高的水体生长,夏季为空心菜和粉绿狐尾藻浮床分别进行40%和75%的遮光处理将有更好的水质净化效果。因此,在滨岸湿地匮乏的深水水库实施多种植物搭配的生态浮床技术强化水体脱氮作用是一种行之有效的水质改善方法。  相似文献   
133.
以2014–2015年海洋调查数据为基础,Arc GIS软件为平台,通过选取致灾因子危险性、承灾体脆弱性相关影响因子,基于灾害理论和层次分析法构建了辽东湾近岸海域油污染生态风险评价指标体系、评价模型及评价标准,将致灾因子危险性等级和承灾体脆弱性等级进行叠加,从而实现对研究海域油污染生态风险进行综合评价,并对该海域溢油风险可能导致的环境影响进行了系统分析、诊断和综合评价。结果表明:辽东湾近岸海域风险处于较高风险,应加强对环境敏感区域的保护,并完善环境监测体系。本文同时为重要湿地生态敏感区合理配置溢油应急资源和实施风险决策提供技术支撑,也为目前事故后的危机管理到预防性风险管理的转变提供理论依据。  相似文献   
134.
海洋生态损失补偿指用海者履行海洋生态环境资源有偿使用责任,对因开发利用海洋造成的海洋生物资源价值和生态系统服务价值损失进行的资金补偿。文章介绍了海洋生态补偿制度的建立过程,梳理了山东省海洋生态补偿新旧标准的演变过程,对山东省海洋生态补偿标准的实施进行了探讨,并分析了山东省海洋生态补偿资金征收的经济效率。结果表明,按照旧标准,只考虑对海洋生物资源损失的补偿,每公顷用海所缴纳的生态补偿资金为8.143 3万元;按照新标准,考虑对经济生物资源和生态系统服务损失的补偿,每公顷用海应缴纳的生态补偿资金为12.043 9万元,比旧标准提高了48%。补偿标准提高,虽然增加了企业的用海成本,但还只是补偿了企业用海所造成生态损失的1/4左右,还有3/4的生态损失没有要求企业补偿,需要国家财政增加生态修复投入。山东用海生态损失补偿政策的实施,很好地发挥了环境经济政策的效果;企业主动缩减围填海等用海面积,采用环境友好的用海方式,既节约了企业用海成本,又减轻了对海洋生态环境的损耗。在全国推广山东的开发用海生态补偿制度和标准,可以有效地引导企业理性用海、集约高效用海,助力海洋产业绿色转型,体现生态文明入宪的重大意义。  相似文献   
135.
文章利用遥感技术获取了大连市2016年滨海湿地基本状况信息,通过实地调查和查阅资料基本摸清了研究区水鸟及栖息地概况,收集整理了研究区开展滨海湿地管理与保护工作情况,简要阐释了当前滨海湿地管护工作中存在的功能退化等问题,辨识性分析了引发问题的填海造地、建设力度与保护经费不足等驱动力因素,提出了应从健全滨海湿地管理与保护制度机制、加大新建保护区与已建保护区管护工作力度、开展生态修复工作、开展滨海湿地生态补偿工作、严格自然滨海湿地开发利用管理和加强滨海湿地调查监测6个方面加强滨海湿地管护工作的对策及建设性意见。  相似文献   
136.
The lake monitoring programme compliant with the Water Framework Directive has been implemented in Poland since 2007. Currently, the methods for three biological quality elements (BQEs): phytoplankton (the Phytoplankton Multimetric for Polish Lakes, PMPL), macrophytes (the Ecological State Macrophyte Index, ESMI) and phytobenthos (the Diatom Index for Lakes, IOJ) are officially applied and internationally intercalibrated. Based on the monitoring data from 256 lakes surveyed in 2010–2013 and assessed for all the three BQEs, we tested whether the assessment results obtained by the three biological methods were consistent and we searched for the causes of inconsistencies which we found. The lake classifications obtained from the PMPL and ESMI were highly consistent and the relationship between these metrics was relatively strong (R = 0.66, p < 0.001). Both metrics correlated equally strongly with water quality indicators. However, the PMPL and ESMI indicated systematic dissimilarities in the sensitivity to eutrophication between shallow and deep lakes. In shallow lakes, the alarming symptoms of macrophyte community deterioration (lower values of ESMI) occurred at lower nutrient and Chla concentrations and were accompanied by a better status of phytoplankton (higher values of PMPL) than in deep lakes that can be explained by a synergistic effect of inorganic suspended solids and algal growth on water transparency. As a consequence, the positions of phytoplankton and macrophytes as early warning indicators in the eutrophication gradient in shallow lakes were inverted compared to those in deep lakes. Compared to the PMPL and ESMI, the IOJ method gave the least stringent assessment results, with 22% of lakes failing to meet the environmental objectives. The relationships between IOJ and PMPL, and ESMI were relatively weak (R = 0.17, p = 0.008 and R = 0.17, p = 0.007, respectively). Moreover, the phytobenthos index IOJ correlated significantly more weakly with all the water quality indicators than either PMPL or ESMI did. The poor performance of the phytobenthos method in this study may suggest a limited indicator value of this BQE for lake assessment or inappropriate sampling design.  相似文献   
137.
The Guayas river basin is one of the major watersheds in Ecuador, where increasing human activities are affecting water quality and related ecosystem services. The aims of this study were (1) to assess the ecological water quality based on macroinvertebrate indices and (2) to determine the major environmental variables affecting these macroinvertebrate indices. To do so, we performed an integrated water quality assessment at 120 locations within the river basin. Biological and physical–chemical data were collected to analyze the water quality. Two biotic indices were calculated to assess the water quality with an ecological approach: the Biological Monitoring Working Party Colombia (BMWP-Col) and the Neotropical Low-land Stream Multimetric Index (NLSMI). Both the BMWP-Col and NLSMI indicated good water quality at the (upstream) forested locations, lower water quality for sites situated at arable land and bad water quality at residential areas. Both indices gave relevant assessment outcomes and can be considered valuable for supporting the local water management. A correspondence analysis (CA) applied on both indices suggested that flow velocity, chlorophyll concentration, conductivity, land use, sludge layer and sediment type were the major environmental variables determining the ecological water quality. We also suggested that nutrient and pesticide measurements are important to study water quality in the area where intensive agriculture activities take place. The nutrient levels detected in agricultural areas were relatively low and illustrated that the types of crops and the current cultivation methods were not leading to eutrophication. The applied methods and results of this study can be used to support the future water management of the Guayas river basin and similar basins situated in the tropics.  相似文献   
138.
陕西省子午岭生态功能区水源涵养能力研究   总被引:8,自引:0,他引:8  
李盈盈  刘康  胡胜  吴磊 《干旱区地理》2015,38(3):636-642
应用InVEST模型和SCS模型,计算得出研究区多年平均水源涵养量约为3×108 m3,涵养深度69.79 mm,表明研究区具有比较突出的水源涵养服务功能,特别是在森林和灌丛分布相对集中的子午岭自然保护区内,水源涵养能力处于较高水平。不同土地利用类型的水源涵养能力有较大差别。由于灌丛具有较好的降水截留能力和较小的蒸腾作用,水源涵养能力最强;而森林由于蒸腾旺盛,加之冠层截留的大部分降水用于蒸发而无法积累,使其水源涵养能力稍低于灌丛;草地和农田覆盖地区,降水极易流失,因而草地和农田的水源涵养能力较差,对区域总水源涵养量的贡献也最小。此外,研究区多年平均产水深度139.4 mm,整体趋势是从东南向西北方向减小,与区域降水量空间变化趋势一致,在土地利用类型的影响下,这一趋势更加明显;多年平均径流深度71.1 mm,空间上大致由南向北减少,同时,由于径流深度还受到降水时间分配、土地利用类型、土壤质地的影响,因此呈现出较为复杂的空间分布特征。  相似文献   
139.
The upper portion of the meadows of the protected Mediterranean seagrass Posidonia oceanica occurs in the region of the seafloor mostly affected by surf-related effects. Evaluation of its status is part of monitoring programs, but proper conclusions are difficult to draw due to the lack of definite reference conditions. Comparing the position of the meadow upper limit with the beach morphodynamics (i.e. the distinctive type of beach produced by topography and wave climate) provided evidence that the natural landwards extension of meadows can be predicted. An innovative model was therefore developed in order to locate the region of the seafloor where the meadow upper limit should lie in natural conditions (i.e. those governed only by hydrodynamics, in absence of significant anthropogenic impact). This predictive model was validated in additional sites, which showed perfect agreement between predictions and observations. This makes the model a valuable tool for coastal management.  相似文献   
140.
Tropical rivers display profound temporal and spatial heterogeneity in terms of environmental conditions. This aspect needs to be considered when designing a monitoring program for water quality in rivers. Therefore, the physico-chemical composition and the nutrient loading of the Upper Mara River and its two main tributaries, the Amala and Nyangores were monitored. Initial daily, and later a weekly monitoring schedule for 4 months spanning through the wet and dry seasons was adopted. Benthic macro-invertebrates were also collected during the initial sampling to be used as indicators of water quality. The aim of the current study was to investigate the physico-chemical status and biological integrity of the Upper Mara River basin. This was achieved by examining trends in nutrient concentrations and analyzing the structure, diversity and abundance of benthic macro-invertebrates in relation to varying land use patterns. Sampling sites were selected based on catchment land use and the level of human disturbance, and using historical records of previous water quality studies. River water pH, dissolved oxygen, electrical conductivity (EC), temperature, and turbidity were determined in situ. All investigated parameters except iron and manganese had concentration values within allowable limits according to Kenyan and international standards for drinking water. The Amala tributary is more mineralized and also shows higher levels of pH and EC than water from the Nyangores tributary. The latter, however, has a higher variability in both the total phosphorus (TP) and total nitrogen (TN) concentrations. The variability in TP and TN concentrations increases downstream for both tributaries and is more pronounced for TN than for TP. Macro-invertebrate assemblages responded to the changes in land use and water quality in terms of community composition and diversity. The study recommends detailed continuous monitoring of the water quality at shorter time intervals and to identify key macro-invertebrate taxa that can be used to monitor changes of the water quality in rivers of the Mara basin as a result of anthropogenic changes.  相似文献   
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