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1.
湖泊营养物基准是指用可信的科学数据表示水中营养物的允许浓度和生态指标的阈值,是制定富营养化标准、评价湖泊状态依据。文章分析了国外制定湖泊营养物基准的方法:参照状态法、输入-响应模型法和机理推断法,并概述了目前湖泊富营养化预测模型。通过分析对比,提出了适合我国湖泊营养物基准制定的技术方法及思路。  相似文献   

2.
Research on lake eutrophication in China began in the early 1970s, and many lakes in China are now known to be in meso-eutrophic status. Lake eutrophication has been showing a rapidly increasing trend since 2000. Investigations show that the main reasons for lake eutrophication include a fragile lake background environment, excessive nutrient loading into lakes, excessive human activities, ecological degeneration, weak environmental protection awareness, and lax lake management. Major mechanisms resulting from lake eutrophication include nutrient recycling imbalance, major changes in water chemistry (pH, oxygen, and carbon), lake ecosystem imbalance, and algal prevalence in lakes. Some concepts for controlling eutrophication should be persistently proposed, including lake catchment control, combination of pollutant source control with ecological restoration, protection of three important aspects (terrestrial ecology, lake coast zone, and submerged plant), and combination of lake management with regulation. Measures to control lake eutrophication should include pollution source control (i.e., optimize industrial structural adjustments in the lake catchment, reduce nitrogen and phosphorus emission amounts, and control endogenous pollution) and lake ecological restoration (i.e. establish a zone-lake buffer region and lakeside zone, protect regional vegetation, utilize hydrophytes in renovation technology); countermeasures for lake management should include implementing water quality management, identifying environmental and lake water goals, legislating and formulating laws and regulations to protect lakes, strengthening publicity and the education of people, increasing public awareness through participation in systems and mechanic innovations, establishing lake region management institutions, and ensuring implementation of governance and management measures.  相似文献   

3.
湖泊富营养化的程度日益严重,已经对人类的生产生活、水生动植物的生存造成了危害。西方一些发达国家尤其是美国已经制定了水体水质基准,形成了一系列的基准制定的方法体系,建立了水质的管理体制。文章描述了我国的湖泊富营养化的现状、美国营养物基准的研究进展;列举了几个能够辅助基准制定的数学模型,探讨了我国的湖泊富营养化基准的制定方法步骤;通过几种模型的比较,并结合我国各方面的特点,确定我国基准制定中参照状态向基准的转化方法以及基准模型的应用和成果。  相似文献   

4.
基于地理分区及神经网络的湖泊水库富营养化研究   总被引:3,自引:1,他引:2  
李伟峰  毛劲乔 《环境科学》2011,32(11):3200-3206
构建了一个基于地理分区及神经网络的湖泊水库富营养化综合评价体系.以美国环境保护署Nutrient Criteria Database数据库为参照对象,有针对性地研究我国湖泊水库的情况,首次提出了基于地理分区的简易评价标准,对不同地理特征的水体富营养化临界值进行了定量研究.同时本研究还建立了基于神经网络的富营养化评价模型...  相似文献   

5.
在总结水库的区域、流域特性,水动力学特征及功能用途等导致水库富营养化特征之差异性的基础上,讨论水库富营养化分区管理标准的制定方法。研究认为:我国水库富营养化分区管理标准的制定,一是选取合适的分区指标,将水库纳属相应的地理区域;二是选取相应的指标体系制定科学的标准。同时,分区选取的指标应以地理类的指标为主,而标准指标应以营养盐、水动力学及藻类为主。未来工作应主要集中于水库降雨、温度、土地利用、水质等数据的收集及积累。  相似文献   

6.
The introduction of nutrients to lakes causing eutrophic conditions is a major problem around the world. Proper monitoring and modeling are important to effectively manage eutrophication in lake waters. The goal is to develop remote sensing models for nutrients, total phosphorus and total nitrogen, in Lake Champlain. The remote sensing models were created using multivariate linear regression with the unique band combinations of Landsat Enhanced Thematic Mapper Plus (ETM+) imagery based on the empirical relationship with the field observations. The resulting models successfully showed nutrient distributions in the most eutrophic part of Lake Champlain, Missisquoi Bay, with reasonable adjusted coefficient of determination values (R2 = 0.81 and 0.75 for total phosphorus and total nitrogen, respectively). The results show the feasibility and the utility of satellite imagery to detect spatial distributions of lake water quality constituents, which can be used to better understand nutrient distributions in Lake Champlain. This approach can be applicable to other lakes experiencing eutrophication assisting decision making when implementing Best Management Practices and other mitigation techniques to lakes.  相似文献   

7.
通过对云南省九大高原湖泊水环境现状分析,指出人类活动中工业、农业及生活源不断向湖泊中排放,以及围湖造田、水产养殖等破坏自然生态环境是导致云南高原湖泊富营养化的主要原因。在内外源营养盐控制、生态调控、生态修复等防治对策措施分析的基础上,指出富营养化湖泊的治理必须营养盐控制与水生植被恢复并拳。  相似文献   

8.
九龙江流域上游浅水湖泊富营养化机制   总被引:3,自引:0,他引:3       下载免费PDF全文
基于对九龙江上游龙潭湖富营养化水体和沉积物现状的监测结果,通过与国内富营养化深水湖库和流域下游大型富营养化浅水湖泊进行对比,深入探讨了流域上游浅水湖泊富营养化发生的原因及主导机制.流域上游浅水湖泊具有外源污染物输入较少的特点,较下游大型浅水湖泊更易受温度等气候条件和沉积物氧化还原状态的影响,以及外源输入总磷控制具有较强的滞后效应,因此对流域上游浅水湖泊富营养化的控制必须重视内源营养盐释放,特别是结合态磷的内源释放问题.  相似文献   

9.
我国湖泊富营养化发展趋势探讨   总被引:12,自引:1,他引:11       下载免费PDF全文
本文根据“七五"国家科技攻关课题“全国主要湖泊水库富营养化调查研究"的调查资料,在对全国24个湖泊水库的调查数据进行分析处理,并在主成份分析法评价的基础上,对本世纪末的营养物入湖量、营养物及叶绿素a浓度做了宏观预测,预测结果表明:24个湖泊可分为三种类型,代表了湖泊演化过程中的三个不同阶段:大部分城市湖泊达到了重富营养化,有些正在由响应型湖泊向非响应型过渡;湖泊的功能将消失,逐渐到达消亡阶段,应引起注视。 湖泊富营养化的控制对策,应按照我国国情而倾向于经济实用、因地制宜。具体技术方法中的前置库生化削减法和水生生物法值得推广应用。   相似文献   

10.
湖泊富营养化的影响因子涉及水文、物化、生物等多方面,具有复合性和非线性特征,定量化其与影响因素间的相关关系有助于识别影响湖泊营养状态的关键因子,可以用较低的成本、较短的时间达到理想的控制效果.云南高原湖泊具有易发生富营养化的自然和气候特征,对其富营养化发生条件及影响因子的分析可为科学的控制决策提供参考.本文选取云南滇池、程海、抚仙湖和异龙湖4个高原湖泊,比较湖泊自然特征与流域社会经济条件的异同;构建包括绝对主成分多元线性回归分析(APCS-MLR)、结构方程模型(SEM)及人工神经网络模型(ANN)的综合分析方法,重点关注并确定浮游初级生产力的代表指标(叶绿素a,Chla)与相关影响因子间的定量相关关系.研究发现:14个湖泊中,对Chla浓度变化影响最大的均为理化因子,但在各湖中该影响的正、负性及不同理化因子的贡献权重有较大差异;2流域污染源构成的不同在一定程度上影响了入湖的氮、磷负荷,使4个湖泊表现出不同的营养盐限制性特征;3流域面积、湖泊形态及湖体水动力条件影响着营养盐在湖体中的迁移转换,造成4个湖泊富营养化的差异性特征;4对Chla与影响因子间因果关联的识别须结合深入的机理过程分析.  相似文献   

11.
随着中国城市化的快速推进,产生了一系列的环境问题,而解决因城市发展而带来的自然水体(如城市湖泊)污染及其治理问题是一项耗资巨大而又十分复杂的系统工程。就中国的经济实力而言,污水处理的技术经济指标往往是选择方案时必须首先考虑的问题。传统的活性污泥法基建投资大,运行费用高,且处理后的出水排入水体后仍将引起"富营养化"等环境问题。而人工湿地具有投资省,处理效果较好的优势,因而是一种非常值得探索和尝试的全新的处理方法。以该湖泊的人工湿地处理前后的水质效果进行对比分析,以期为今后相似的城市湖泊的生态治理提供一些借鉴。  相似文献   

12.
湖库富营养化敏感分级概念及指标体系研究   总被引:7,自引:2,他引:5  
依据水体富营养化的危害程度与地理位置、流动条件等因素有关的概念,在一个较小的尺度上提出了水体富营养化敏感分级的概念,将富营养化的控制级别从河流-湖泊2级扩展到多级,并提出了分级采用的指标体系的一般概念.同时与美国环境保护局的大尺度分区(分级)方法进行了比较分析,发现美国14个生态分区河流与湖库的富营养化基准存在不协调之处,认为以该统计方法分别进行河流与湖库富营养化基准制定,可能产生河流基准的控制指标严于湖泊基准的不合理情况.   相似文献   

13.
云贵高原典型湖泊富营养化演变过程及特征研究   总被引:11,自引:2,他引:11  
选取滇池、洱海和抚仙湖3个云贵高原不同营养水平的湖泊,通过对其不同发展阶段的植物群落结构、水质类别、营养水平及流域人口和经济活动等进行研究,总结了云贵高原湖泊发展演化过程中的特征及差异性.结果表明:滇池、洱海和抚仙湖的植物群落结构、水质类别和营养状态均耦合良好,流域人口和经济活动是湖泊富营养化的重要影响因素.流域人口和...  相似文献   

14.
湖泊富营养化防治对策研究   总被引:1,自引:0,他引:1  
据统计,目前全国有90%以上的湖泊处于富营养化状态.日趋严重的湖泊富营养化问题亟待解决.分析了湖泊富营养化的现状、成因与危害,从控制水体中的营养物质、除藻、生态修复等三个方面提出了湖泊富营养化的防治对策.生态修复是最根本有效的防治方法,符合可持续发展的要求.政府相关部门应加大监管和宣传力度,培养公民环境保护意识,严格控制外源污染排入湖泊水体.  相似文献   

15.
Shallow lake eutrophication is a global environmental issue. This study investigated the effects of water level variation and nutrient loadings on the growth and nutrient accumulation of Phragmites australis (reed) by field samplings in Baiyangdian Lake, the largest shallow lake of northern China. The field samplings were conducted in two sites of different nutrient loadings during the whole growth period of reeds, and three types of zones with different water depths were chosen for each site, including the terrestrial zone with water level below the ground, the ecotone zone with the water level varying from belowground to aboveground, and the submerged zone with water level above the ground. The result showed that reed growth was more limited by water level variation than nutrient loadings. The average stem lengths and diameters in terrestrial zones were about 26.3%-27.5% and 7.2%-12.0% higher than those in submerged zones, respectively. Similarly, the terrestrial status increased the aboveground biomass of reeds by 36.6%-51.8% compared with the submerged status. Both the nutrient concentrations and storages in the aboveground reeds were mainly influenced by the nutrient loadings in surface water and sediment rather than the water level variation of the reed growth environment, and the nutrient storages reached their maxima in late August or early September. It was observed that the maximum nitrogen storage occurred in the terrestrial zone with higher nutrient loadings, with the value of 74.5 g/m 2 . This study suggested that water level variation and nutrient loadings should be considered when using reeds to control and remediate eutrophication of shallow lakes.  相似文献   

16.
The global application of nitrogen is far greater than phosphorus, and it is widely involved in the eutrophication of lakes and reservoirs. We used a bibliometric method to quantitatively and qualitatively evaluate nitrogen research in eutrophic lakes and reservoirs to reveal research developments, current research hotspots, and emerging trends in this area. A total of 2695 articles in the past 25 years from the online database of the Scientific Citation Index Expended(SCI-Expanded) were analyzed. Articles in this area increased exponentially from 1991 to 2015.Although the USA was the most productive country over the past 25 years, China achieved the top position in terms of yearly publications after 2010. The most active keywords related to nitrogen in the past 25 years included phosphorus, nutrients, sediment, chlorophyll-a, carbon,phytoplankton, cyanobacteria, water quality, modeling, and stable isotopes, based on analysis within 5-year intervals from 1991 to 2015 as well as the entire past 25 years. In addition, researchers have drawn increasing attention to denitrification, climate change, and internal loading. Future trends in this area should focus on:(1) nutrient amounts, ratios, and major nitrogen sources leading to eutrophication;(2) nitrogen transformation and the bioavailability of different nitrogen forms;(3)nitrogen budget, mass balance model, control, and management;(4) ecosystem responses to nitrogen enrichment and reduction, as well as the relationships between these responses; and(5)interactions between nitrogen and other stressors(e.g., light intensity, carbon, phosphorus, toxic contaminants, climate change, and hydrological variations) in terms of eutrophication.  相似文献   

17.
湖泊富营养化是我国湖泊当前面临的最为突出的环境问题之一,入湖生源要素循环失衡,蓝藻水华暴发与成灾机理,湖泊水生态系统退化与修复机制,以及湖泊管理科学基础等均是我国湖泊富营养化防治研究中急待解决的科学问题与理论基础.  相似文献   

18.
基于云模型的水体富营养化程度评价方法   总被引:16,自引:2,他引:14  
丁昊  王栋 《环境科学学报》2013,33(1):251-257
水体富营养化程度评价对生态环境保护具有重要意义.针对水体富营养化程度评价不可避免的模糊性和随机性的特点,本文引入云模型的方法,对我国14个代表性湖库的富营养化程度进行评价.根据确定的评价标准,生成各评价因子隶属于各级别的综合云模型,并针对湖库实测资料,得到各评价物的确定度,由最大确定度决定湖库营养化级别.将该法所得结果与湖库实际水质状况、国内外应用较为广泛且简便的营养状态指数、评分公式法及模糊综合评价法所得结果进行对比,发现评价结果真实可靠,计算过程简洁明了,验证了该方法的可行性和有效性.  相似文献   

19.
富营养化水体的营养盐限制性研究综述   总被引:1,自引:0,他引:1       下载免费PDF全文
水体富营养化是全球目前以及今后相当一段时期内的重大水环境问题。氮、磷作为浮游植物生长所必需的营养盐,是水体富营养化的主要限制因子。通过对近年来水体富营养化受氮、磷营养盐限制的研究进行综述,研究了营养盐来源及其对浮游植物生长的影响,总结了营养盐限制性差异的影响因素,分析了缓解富营养化的营养盐主控因子。分析表明:营养盐的来源主要分为外源和内源,受外界环境及人类活动影响显著;浮游植物的生长受N/P比值及其绝对浓度的共同作用;在不同的水文、气候和人类活动强度下,水体富营养化主要营养盐限制因子存在差异,并且存在限制性转换和共同限制的情况;缓解水体富营养化措施的提出应在综合考虑多种因素的前提下进行。  相似文献   

20.
Excessive nitrogen (N) and phosphorus (P) loading of aquatic ecosystems is a leading cause of eutrophication and harmful algal blooms worldwide, and reducing nutrient levels in water has been a primary management objective. To provide a rational protection strategy and predict future trends of eutrophication in eutrophic lakes, we need to understand the relationships between nutrient ratios and nutrient limitations. We conducted a set of outdoor bioassays at the shore of Lake Taihu. It showed that N only additions induced phytoplankton growth but adding only P did not. Combined N plus P additions promoted higher phytoplankton biomass than N only additions, which suggested that both N and P were deficient for maximum phytoplankton growth in this lake (TN:TP = 18.9). When nutrients are present at less than 7.75-13.95 mg/L TN and 0.41-0.74 mg/L TP, the deficiency of either N or P or both limits the growth of phytoplankton. N limitation then takes place when the TN:TP ratio is less than 21.5-24.7 (TDN:TDP was 34.2-44.3), and P limitation occurs above this. Therefore, according to this ratio, controlling N when N limitation exists and controlling P when P deficiency is present will prevent algal blooms effectively in the short term. But for the long term, a persistent dual nutrient (N and P) management strategy is necessary.  相似文献   

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