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1.
湖泊营养物参照状态建立方法研究   总被引:11,自引:0,他引:11  
建立生态分区内各类型湖泊营养物的参照状态是营养物基准制定过程中最为核心的内容之一。在系统分析和评价国外确定湖泊营养物参照状态的若干种方法,包括参照湖泊法、湖泊群体分布法、三分法、回归分析等几种统计学方法以及模型推断和古湖沼学重建方法后,文章根据总磷(total phosphorus,TP)、总氮(total nitrogen,TN)、叶绿素a(chlorophyll a,Chl-a)和塞氏透明度(Secci depth)等四项指标的历史监测数据,应用若干统计学方法建立了巢湖的营养物基准参照状态。通过互相之间的比较分析以及长江中下游湖区古湖沼学重建数据的验证,推荐采用湖泊群体分布法5%点位对应的值作为巢湖营养物基准的参照状态。因此,巢湖营养物参照状态阈值范围为总磷0.023~0.27mg·L^-1,总氮O.62~0.63mg·L^-1,叶绿素aO.65~0.67mg·m^-1,塞氏透明度0.65-0.72m。  相似文献   

2.
湖泊营养物基准的制定方法研究进展   总被引:11,自引:1,他引:10  
系统论述了国外湖泊营养物基准制定程序和技术方法,重点分析了国外营养物基准指标的选取和确定湖泊营养参照状态的方法,并分析了其适用性和可行性.湖泊营养物基准指标的选取要综合考虑富营养化控制关键因子和不同分区湖泊区域差异性,所选指标要具有相对稳定、因地制宜、早期预警等特点.湖泊参照状态的确定主要包括调查数据和历史数据的统计分析、模型预测和推断、古湖沼学重建等方法.统计学方法充分利用历史及现状的实测水质和生物数据,保证制定的基准适用于大多数湖泊,对于历史监测资料缺乏或污染严重的湖泊,该方法确定参照状态较困难;模型预测和推断方法用于受人类影响较严重的湖泊参照状态确定,但也需要大量数据进行校准和验证;古湖沼学重建法利用湖泊沉积重建湖泊自然营养本底和定量恢复历史时期湖泊营养状态演化序列,进而推导湖泊参照状态,需要复杂的数据分析和专家判断,同时也难以适用于沉积物受扰动较大的浅水湖泊.我国的大部分湖泊普遍受人类影响较大,历史数据稀缺,不同分区湖泊的差异性显著,针对国外营养物基准制定方法优缺点,需要加以优化改进,建立我国完善的湖泊营养物基准制定方法体系,指导我国湖泊营养物基准的制定.  相似文献   

3.
河流健康综合评价指数法的改进及其在昌江的应用   总被引:3,自引:0,他引:3  
目前普遍采用的河流健康综合评价指数法中水生生物指标相对简单,不能准确度量复杂河流生态系统的健康状态.通过增加蜉蝣目、襀翅目和鞘翅目相对丰富度以及科级生物指数2项指标,改进水生生物指标中的二级指标,并采用改进前后的河流健康综合评价指数法对鄱阳湖人湖支流——昌江进行评价对比.结果表明,昌江总体健康状况较好,各样点均处于健康或亚健康状态;从河流上游至下游,昌江干流及主要支流东河健康状况明显下降,得分最低的3个样点都位于昌江于流,而健康样点大都接近源头;改进后的河流健康综合评价指数法可更好地区分昌江不同样点的水体健康状态.  相似文献   

4.
基于CA-Markov模型土地利用对景观格局影响辨识   总被引:1,自引:0,他引:1  
采用CA-Markov模型方法,研究挠力河流域不同时段土地利用对湿地景观格局干扰强度的差异性.结果表明:(1)流域湿地景观格局变化显著.1967-2000年,挠力河流域湿地类型景观最大斑块指数逐渐减小,耕地和水域斑块的面积周长分维数逐渐减小,而沼泽和居民地的散布与并列指数变大,草甸和耕地聚集度指数增大;湿地景观破碎化程度增加;湿地景观空间分布逐渐由流域周围高地势区向中心河流廊道退缩.(2)流域土地利用变化明显.耕地和居民用地数量迅速增加,耕地趋于集中连片分布,土地利用呈由自然湿地逐渐转化为耕地的变化过程,耕地成为主导的土地利用类型.(3)流域土地利用强度存在阶段差异.1967-2000年,流域内人类活动对湿地景观的干扰强度逐渐加剧,人为景观面积比例由1967年的26.5%上升至2000年的67.8%.土地利用影响强度指数由1967年的1.690上升至2000年的2.394.2000年模拟的流域土地利用影响强度比2000年实际土地利用影响强度小,由此可以识别1983-2000年人类对湿地景观的干扰强度比1967-1983年有所增大;利用居民地和沼泽面积的变化可以识别流域人口增长和排水活动对土地利用影响的时段差异性.  相似文献   

5.
应用鱼类生物完整性指数评价荔浦河河流健康   总被引:2,自引:0,他引:2  
生物完整性指数是河流生态系统健康评价主要方法之一。为评价荔浦河河流健康状况,选择鱼类作为指示生物,构建了基于鱼类生物完整性指标体系。2017年1月、4月、7月和10月对荔浦河4次采样共采集到鱼类21 192尾,经鉴定共计94种,隶属于6目17科62属。以S1(修仁镇)、S10(马岭镇)、S11(双江镇)作为参考点,经过分布范围分析、箱体图判别能力分析及相关性分析等指标筛选过程从25个候选指标筛选出5个指标,即鱼类总物种数、Shannon-Wiener多样性指数、肉食性鱼类数量百分比、敏感性鱼类数量百分比、产漂浮型卵鱼类数量百分比。将荔浦河河流健康等级分为"健康"、"一般"、"较差"、"极差"和"无鱼"5个等级。结果表明,荔浦河青山镇、荔浦县及蒲芦乡河段健康状态为"一般"水平,东昌镇、龙怀乡、杜莫镇及新坪镇河段健康状态为"较差"水平,茶城乡河段健康状态为"极差"水平。筑坝工程、架桥工程和修路工程等人类活动导致荔浦河支流上的健康状况比干流更差。上述研究结果可为荔浦河的河流管理和保护提供理论依据和技术支持。  相似文献   

6.
河流有机质生物地球化学研究进展   总被引:3,自引:0,他引:3  
魏秀国 《生态环境》2007,16(3):1063-1067
探讨了近年来河流中有机质的生物地球化学研究状况。大多数河流有机质的来源主要是外源即流域侵蚀而来的,经过河流的新陈代谢过程,把河流中的悬浮物分解为不同类型的有机质。在有机质分解过程中由于外部条件的差异,形成粒径大小不同的颗粒物和溶解有机质、无机质等。河流水体中的溶解有机碳(DOC)在全球不同纬度、不同区域,其含量差异较大,但目前对其生物地球化学控制的量级缺乏足够的理解和认识。另外碳氮同位素及其比值在当前的河流有机质生物地球化学研究中仍起着非常重要的示踪作用。  相似文献   

7.
基于1:25万河流水系和数字高程(DEM)数据制备了选取湖泊的流域边界,据其集成了流域社会经济数据,并据中国科学院资源环境数据中心提供的1990、1995、2000、2005年4个时段土地利用数据形成了流域反映人类活动强度的表征指标,选取了全国湖泊富营养化区域差异性调查课题获取的案例湖泊的水质数据,集成了中国湖泊富营养化影响因素计量分析的面板数据集,研究了1990-2005年间中国湖泊营养状态的发展趋势与差异特征,探讨了湖泊富营养化的自然气候与社会经济影响机制,构建了中国湖泊富营养化影响因素分析的计量模型,厘定了1990-2005年间影响湖泊营养状态变化的重要因素,测度了其对湖泊富营养化的影响方向和作用强度。基于面板数据的计量分析结果表明,近15年人类活动强度对湖泊营养状态呈显著的正影响,其表征指标人均GDP与建设用地所占流域面积比均具有较强的显著性,而在人类扰动较小的情况下,湖泊的营养状态与湖泊补给系数成正比,与湖泊蓄容量成反比,补给系数较小且其他因素也相同时,水体营养状态应与流域土壤本底值相关;以林、草地的面积比重所测度的流域自然生态系统发育程度与湖泊营养状态呈显著负相关关系,表明林地与草地生态系统对流域的氮、磷营养物的人湖量具有一定的削减作用,论文研究结果将为流域管理措施方案制订提供科技支撑。  相似文献   

8.
位于西江上游的河池地区被誉为中国的"有色金属之乡",重金属产业经过多年选矿开矿的工业化发展使得当地生态环境受到严重的重金属污染。为评价广西西江流域中上游主要地区矿业活动对土壤和糙米质量安全的影响,采集研究区域内水稻及其对应土壤样本进行分析评价。调查发现,参照《食用农产品产地环境质量评价标准》(HJ332—2006),当p H6.5、6.50≤p H≤7.50、p H7.5时,土壤Cd含量超标率分别达到90.63%、96.97%、98.36%;参照《食品中污染物限量标准》(GB2762—2012),糙米Cd含量的超标率为19.34%。单因子污染评价表明,超过50%的调查样点土壤Cd处于重度污染,仅有10%左右调查样点的土壤Cd属于清洁等级,且上游地区土壤-水稻系统Cd污染较为严重。分别建立了水稻糙米Cd含量、糙米Cd生物富集系数与土壤有效态Cd含量、土壤p H值以及土壤有机质含量的定量关系,模型拟合度均高于50%。预测糙米Cd含量拟合度较好的模型为多元非线性回归模型,预测糙米Cd生物富集系数拟合度较好的为多元线性回归模型。多元回归模型的回代检验和残差分析表明,计算值与实测值的相关性较好,残差值较小且均匀分布,在一定程度上可以用来预测水稻糙米Cd的积累情况。  相似文献   

9.
综合水质标识指数法在浑河水质评价中的应用   总被引:12,自引:0,他引:12  
胡成  苏丹 《生态环境》2011,20(1):186-192
综合评价水环境质量,全面把握流域水环境污染特征是水环境污染防治中的重要基础性工作。水质标识指数可以完整标识水质评价指标的类别、水质数据、功能区目标值等重要信息,在单因子水质标识指数法基础上建立的综合水质标识指数法能完整表达河流总体的综合水质信息,既不会因个别水质指标较差就否定综合水质,又能对综合水质做出合理的评价;既可以在Ⅰ到Ⅴ类中比较水质的优劣,亦可以对劣Ⅴ类进行评价。为系统全面地研究浑河流域各不同河段水环境特征,将浑河流域划分为3个控制单元,根据2001—2010年间水质监测数据,采用综合水质标识指数法,识别出各控制单元主要污染因子,并阐明了浑河流域水环境质量时空变化规律,本研究即体现了全流域统筹考虑的系统思想,又体现了分区研究的针对性特点,并首次将综合水质标识指数法应用于浑河流域水质综合评价,其研究结论对水质监测数据的评价有一定的借鉴作用,亦对流域水污染防治对策的提出有一定的指导意义。  相似文献   

10.
采用物种敏感度排序法(SSR)对我国铅的淡水水生生物安全基准进行推导,并以太湖为例进行了流域水生生物安全基准推导。对于难以获得的本土生物毒性数据,开展了相应的毒性试验。获得了我国国家与太湖流域铅的水生生物安全基准值,基准最大浓度(CMC)分别为63.92、104.26μg·L-1,基准连续浓度(CCC)分别为1.21、4.06μg·L-1。同时,对我国主要河流以及太湖流域进行了铅的生态风险评价,联合概率曲线法显示影响5%水生生物种类的概率分别为66.22%和43.19%,熵值法则显示中国主要河流存在较大的铅暴露风险,因此,我国铅的潜在生态风险较大,主要河流与太湖流域存在铅污染问题。  相似文献   

11.
水文因素影响稻田氮磷流失的研究进展   总被引:1,自引:1,他引:1  
水文因素为农田氮磷元素的迁移提供了动力和载体,对稻田氮磷元素的流失具有重要影响。利用新型的稻田水分管理模式以代替传统的水分管理模式,对于有效控制面源污染具有重要意义。在综合调研国内外已有研究成果和最新进展的基础上,阐述了稻田氮磷流失特征、传统水分管理模式的弊端,并从新型稻田水分管理模式的种类、削减氮磷流失的效果与机理、与水平衡模型、营养负荷模型等结合应用等几个方面综述了国内外水文因素影响稻田氮磷流失的研究现状。进行稻田土壤吸附氮磷容量及人工调节机制的研究,在部分地区开展流域化水分管理系统研究,以及适用于我国稻田的水平衡模型和营养负荷模型的建立和深入研究应为今后我国关于水文因素影响稻田氮磷流失方面研究的一些方向。  相似文献   

12.
The water quality pollution and ecological deterioration in peri-urban rivers are usually serious under rapid urbanization and economic growth. In the study, a typical peri-urban river, Nansha River, was selected as a case study to discuss the scheme of peri-urban river rehabilitation. Located in the north part of the Beijing central region, the Nansha River watershed has been designated as an ecologically friendly garden-style area with high-tech industry parks and upscale residential zones. However, the Nansha River is currently seriously contaminated by urban and rural pollutants from both nonpoint sources (NPS) and point sources (PS). In this study, the pollutant loads from point sources and nonpoint sources in the Nansha River watershed were first assessed. A coupled model, derived from the Environmental Fluid Dynamics Code and Water Quality Analysis Simulation Program, was developed to simulate the hydrodynamics and water quality in the Nansha River. According to the characteristics of the typical peri-urban river, three different PS and NPS control scenarios were designed and examined by modeling analyses. Based on the results of the scenario analysis, a river rehabilitation scheme was recommended for implementation.  相似文献   

13.
Water quality modelling in the meso-scale Rhin catchment in the German federal state Brandenburg was done (1) to answer some specific questions concerning identification of point and diffuse sources of nutrient pollution in the catchment, (2) to assess the influences of possible climate and land use changes on water quantity and quality and (3) to evaluate potential measures to be done in order to achieve a “good ecological status” of the river and its lakes as required by the Water Framework Directive (WFD).The Rhin catchment is a typical highly regulated lowland river basin in Northern Germany. The regulations complicate water quantity and quality modelling in the catchment. The research was done by using the eco-hydrological model SWIM (Soil and Water Integrated Model), which simulates water and nutrient fluxes in soil and vegetation, as well as transport of water and nutrients to and within the river network. The modelling period was from 1981 until 2005. After calibrating the hydrological processes at different gauges within the basin with satisfactory results, water quality (nitrogen and phosphorus) modelling was done taking into account the emissions of different point sources (sewage treatment plants, etc.) and identifying the amount of diffuse pollution caused mainly by agriculture.For suggesting some feasible measures to improve water quality and to reduce diffuse pollution considering possible climate and land use changes, different reasonable scenarios were applied in consultation with the Environmental Agency of Brandenburg (LUA). The study revealed that the amount of water discharge has significant influence on the concentration of nutrients in the river network, and that nitrogen pollution, caused mainly by diffuse sources, could be notably reduced by application of agricultural measures, whereas the pollution by phosphorus could be diminished most effectively by the reduction of point source emissions.  相似文献   

14.
春秋季长江口及其邻近海域营养盐污染研究   总被引:2,自引:0,他引:2  
依据东海环境监测中心两个航次的资料和美国国家海洋大气管理局(NOAA)相关资料,开发Matlab计算机数值分析和图形显示技术,对长江口及其邻近海域的营养盐污染状况进行分析和探讨。结果表明:海域总体营养盐超标严重;氮、磷污染物的来源主要为径流携带入海,磷还受外海流系高质量浓度磷输入的影响;营养盐污染特征显示,表、底层营养盐均自入海口向外围、由近岸向远岸迅速递减,秋季冲淡水将污染物向外海携带,污染区也相应向外海推移;营养盐结构显示,该区w(N)/w(P)比值最高达到了405,无机氮异常丰富,海域浮游植物生长的限制因子存在时空变化。分析得到营养盐污染特征与长江河口锋位置及冲淡水流向的关系密切,可以考虑由长江河口锋位置及冲淡水流向来确定污染物的聚集位置和扩展方向。  相似文献   

15.
The present water pollution situation at watershed level in China has been systematically analyzed. The causes of water pollution are attributed to the extensive economic developmental pattern, poor wastewater treatment, and a lack of nonpoint pollution control. The problems of water pollution control at watershed level include a lack of thought and approach, developmental delay in the environmental standard system, an inadequate monitoring ability, and an inefficient implementation of laws and regulations. From 2006 to 2020, water pollution control and governance will be a national key specific project of science and technology in China. The strategies of this project include establishing a water pollution control system at watershed level, orienting a healthy aquatic ecosystem, conducting risk management, and using comprehensive methods. The goal is to establish and complete a technological system of pollution control and management in three five-year phases. The main tasks are to develop common technologies, management systems, and mechanisms for lake eutrophication control, river pollution control, urban water environmental pollution control, potable water safety, and water environmental management. The bottlenecks of water pollution control and management in China could be systematically removed, and the demonstration of the system engineering approach will be conducted at selected key watersheds.  相似文献   

16.
Eutrophication caused by the enrichment of nutrients from diffusing sources is degrading surface water quality throughout the world. Assessing the potential contributions of different land areas in diffuse nutrient export has become an important task in non-point source (NPS) pollution control. Existing methods were often limited by the availability of local data and the complexity of model formulation. This study developed a spatial multicriteria method to evaluate the nitrogen loss potential at the basin level. Four criteria were formulated to characterize the source capacity of nitrogen export, the flow path to water body, the efficiency of runoff generation and the climatic driving force. The proposed method is a low-effort approach since the required data is either already available in a global context or easily produced with limited inputs. Being implemented in GIS environment, this method generates maps that can be easily interpreted to provide decision support. The method was applied to the Huai River Basin, China. The results were validated based on the correlation between the nitrogen loss potential of sub-basin and the water quality class of river. The maps of nitrogen loss potential were helpful for examining the regional pattern of diffuse nitrogen loss, and could facilitate the decisions of NPS pollution management at the provincial or basin level.  相似文献   

17.
特定小流域水质模型的选择   总被引:2,自引:0,他引:2  
王蕾  尹澄清 《环境化学》1993,12(5):387-393
根据特定小流域的水文特点和实际要求,建立一个流域综合水质模型,它由三个子模型支持,即:河流水质模型、水库富养营化模型和非点源污染模型。本工作对河流水质模型(QUAL2EU)加以改进,使之适应W河的具体情况,并在QUAL2EU增加了模拟COD、网箱养鱼和底泥泛起的功能。完成了作了水源地的水库地的水库富营养化模型,解决了流域内农业耕作、污水灌溉等造成的非点源污染随降雨径流进入水体过程的模拟和计算,使之  相似文献   

18.
River managers in Australia are managing in the face of extremes to provide security of water supply for people, production and the environment. Balancing the water requirements of people, environments and economies requires that water security is viewed holistically, not just in terms of the water available for human consumption. Common definitions of water security focus on the needs of both humans and ecosystems for purposes such as drinking, agriculture and industrial use, and to maintain ecological values. Information about achieving water security for the environment or ecological purposes can be a challenge to interpret because the watering requirements of key ecological processes or assets are not well understood, and the links between ecological and human values are often not obvious to water users. Yet the concepts surrounding river health are inherently linked to holistic concepts of water security. The measurement of aquatic biota provides a valuable tool for managers to understand progress toward achieving ecological water security objectives. This paper provides a comprehensive review of the reference condition approach to river health assessment, using the development of the Australian River Assessment System (AUSRIVAS) as a case study. We make the link between the biological assessment of river health and assessment of ecological water security, and suggest that such an approach provides a way of reporting that is relevant to the contribution made by ecosystems to water security. The reference condition approach, which is the condition representative of minimally disturbed sites organized by selected physical, chemical, and biological characteristics, is most important for assessing ecological water security objectives.  相似文献   

19.
《Ecological modelling》2005,184(1):55-68
One of the most important sources of pollution in coastal zones (CZ) is certainly that one produced by human activities in the associated river basin. Understanding the linkage between water quality in CZ and river catchments is important in order to better assess CZ processes and to evaluate different management options aimed at improving the coastal ecosystem state. CZ water quality targets as identified by the Water Framework Directive (EC 2000/60) require an accurate study of the effects of pollutant loads coming from river discharge.In order to evaluate the impacts of human activities in river catchments on the associated coastal zone, a sound definition for this geographic area is needed. Many definitions for this area have been proposed in different contexts. The definition is generally built upon a particular goal, and is henceforth highly variable according to the different purposes. In this paper a general methodology allowing to discern those areas of the sea that are directly influenced by fluvial discharge is presented. The methodology is based on the variation pattern of sea water characteristics, and provides a numerical evaluation of this influence. In particular an analysis based on salinity as tracer, results in a sound definition of this area. The methodology has been applied on the case study of the Po river. Due to the significant nutrient loads discharged by the river, the CZ associated with Po is affected by severe eutrophication phenomena that have important consequences on the ecosystem and on the socio-economy of the area.In order to study the impacts of nutrients loads carried by the river, a water quality model (WASP6) has been implemented. The model simulates the seasonal variability of nutrient concentrations, phytoplankton biomass and dissolved oxygen. Using the CZ model is possible to compare the effects of variations of nutrient loads on the biochemical (short term) and ecological (long term) quality of the coastal environment. This is accomplished by feeding nutrients loads forecasted for different scenarios by the catchment model (MONERIS) as forcing functions to the CZ model. This way the effect of the different catchment management scenarios are propagated to the CZ model, and the trophic conditions of the coastal ecosystem evaluated using TRIX.This study has been developed in the context of the European project EUROCAT.  相似文献   

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