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51.
52.
基于化学与生物复合指标的流域水生态系统健康评价——以滇池为例 总被引:3,自引:1,他引:2
水生态系统在人类社会的发展过程中发挥着至关重要的作用,由于人类活动的干扰,水生态系统的健康状况受到严重威胁.因此,本研究在对滇池流域水生态系统状况深入调查研究的基础上,根据水质状态和生态特性,利用层次分析法构建以化学完整性和生物完整性为标准的滇池流域水生态系统健康评估指标体系,计算各样点健康评价指标,综合评价滇池流域水生态系统健康状态.结果表明:滇池全流域水生态系统整体健康状态处于中下水平,流域上游区域健康等级多为良好,流域中游区域健康等级多为一般,流域下游区域健康等级多为一般和极差;滇池湖体健康等级则多为一般和差,尤以滇池北部(草海)健康状况较差;滇池流域河流和水库的健康状态整体比滇池湖泊的健康状态好,河流和水库的健康状态差异性不显著;生物状况是滇池流域水生态系统健康状态较差的主要限制性因素. 相似文献
53.
高效聚磷菌Alcaligenes sp. ED-12菌株的分离鉴定及其除磷特性 总被引:1,自引:0,他引:1
利用经典的微生物筛选方法,从福州市闽侯县上街镇高岐村某排污口淤泥中分离出1株高效聚磷菌,并结合16S rRNA基因序列分析进行了菌株鉴定.结果表明,该菌株为产碱杆菌,将其命名为Alcaligenes sp.ZGED-12.理化因素实验显示,在以乙酸钠为碳源、NH4Cl为氮源,当C/N为3∶1,pH为8.0,温度和摇床转速分别为35℃和100 r·min-1时,该菌株的生长状态最好,对磷的去除能力也最强,最高除磷率可达80%.此外,该菌株能够耐受较高浓度的磷,当磷浓度超过45 mg·L-1时会产生抑制效应.同时,以聚乙烯醇(PVA)和海藻酸盐(SA)制备了聚磷微生物固定化小球,并考察了菌球对氮磷废水的净化效果.结果表明,氮磷的去除包括固定化材料的吸附作用及微生物的生长利用和/或贮存,显示出了良好的应用前景. 相似文献
54.
采用超高效液相色谱串联质谱系统(UHPLC-MS2)检测崇明岛9种典型水生生物体中5种典型雌激素的含量,包括雌酮(E1)、雌二醇(E2)、雌三醇(E3)、炔雌醇(EE2)和双酚A(BPA).并探讨其分布特征,进行初步健康风险评价.结果表明,9种典型水生生物中雌激素总量(以dw计)为1.1~7.38 ng·g-1,平均为4.25 ng·g-1.雌激素脂肪含量(以lw计)在5.01~83.41 ng·g-1之间,平均值为40.75 ng·g-1,雌激素脂肪含量水平表现为鱼类>虾类>蟹类.鱼类和蟹类,虾类之间雌激素脂肪含量差异性显著,蟹类和虾类之间不存在显著差异性.从检出率和检出含量看,甾醇类雌激素(E1、E2、E3和EE2)的残留明显低于酚类雌激素(BPA).E1、E2、E3和EE2的检出率小于66.67%,平均干重含量为0.17~0.69ng·g-1,而BPA的检出率高达100%,检出的平均干重含量为2.60 ng·g-1.健康风险评估结果表明,崇明岛水产品中雌激素对健康影响不大. 相似文献
55.
56.
我国流域水生态完整性评价方法构建 总被引:16,自引:11,他引:5
流域水生态完整性评价是指通过对水生态系统中不同水生态指标(生物和非生物)的监测以及由数学方法综合形成的综合评价指数,来反映水生态系统完整性状况。近年来,世界各国水环境管理政策发生了变化,开始强调生态保护,重视水体的生态质量。中国现行的常规理化监测指标(如COD、氨氮、BOD5)很难满足水环境管理的需求,难以全面准确地反映水环境质量变化的趋势。因此,在借鉴欧美发达国家流域水生态完整性评价方法的基础上,结合中国目前监测现状以及流域水环境管理需求,构建了包括物理生境指标、理化指标、水生生物指标在内的流域水生态完整性监测与评价方法,以期为中国流域水质目标管理技术体系的业务化运行提供可资借鉴的技术支撑,实现从单一的化学指标监测转向综合的水生态系统监测,实现流域水生态完整性的监测与评价。 相似文献
57.
河流筑坝拦截的水环境响应——来自地球化学的视角 总被引:11,自引:0,他引:11
大规模筑坝拦截是当前世界河流普遍面临的共同趋势,"蓄水河流"在物理、化学及生物等多层次上区别于天然河流和湖泊,改变了河流水文、河流物质转化和输送通量以及河流生态环境.因此,认识和了解水库建成后河流一水库体系水环境演化的关键过程是评价水坝的水环境影响的基础.广泛综述国内外最近的一些涉及水库效应的研究成果,并结合作者对乌江流域梯级水库的初步研究,从蓄水河流水文情势改变、生源要素(磷和硅为例)形态和通量变化、温室气体释放、水生生态系统演替几个方面进行分析.认为,水能开发的巨大经济效益和面临的潜在生态风险之间的平衡关系需要进一步详尽的分析研究. 相似文献
58.
Svetoslav Slavov Giuseppina Gini Emilio Benfenati 《Journal of environmental science and health. Part. B》2013,48(8):633-637
The pesticides originally designed to kill target organisms are dangerous for many other wild species. Since they are applied directly to the environment, they can easily reach the water basins and the topsoil. A dataset of 125 aromatic pesticides with well-expressed aquatic toxicity towards trout was subjected to quantitative structure activity relationships (QSAR) analysis aimed to establish the relationship between their molecular structure and biological activity. A literature data for LC50 concentration killing 50% of fish was used. In addition to the standard 2D-QSAR analysis, a comparative molecular field analysis (CoMFA) analysis considering the electrostatic and steric properties of the molecules was also performed. The CoMFA analysis helped the recognition of the steric interactions as playing an important role for aquatic toxicity. In addition, the transport properties and the stability of the compounds studied were also identified as important for their biological activity. 相似文献
59.
Jeffrey J. Opperman Ryan Luster Bruce A. McKenney Michael Roberts Amanda Wrona Meadows 《Journal of the American Water Resources Association》2010,46(2):211-226
Opperman, Jeffrey J., Ryan Luster, Bruce A. McKenney, Michael Roberts, and Amanda Wrona Meadows, 2010. Ecologically Functional Floodplains: Connectivity, Flow Regime, and Scale. Journal of the American Water Resources Association (JAWRA) 46(2):211-226. DOI: 10.1111/j.1752-1688.2010.00426.x Abstract: This paper proposes a conceptual model that captures key attributes of ecologically functional floodplains, encompassing three basic elements: (1) hydrologic connectivity between the river and the floodplain, (2) a variable hydrograph that reflects seasonal precipitation patterns and retains a range of both high and low flow events, and (3) sufficient spatial scale to encompass dynamic processes and for floodplain benefits to accrue to a meaningful level. Although floodplains support high levels of biodiversity and some of the most productive ecosystems on Earth, they are also among the most converted and threatened ecosystems and therefore have recently become the focus of conservation and restoration programs across the United States and globally. These efforts seek to conserve or restore complex, highly variable ecosystems and often must simultaneously address both land and water management. Thus, such efforts must overcome considerable scientific, technical, and socioeconomic challenges. In addition to proposing a scientific conceptual model, this paper also includes three case studies that illustrate methods for addressing these technical and socioeconomic challenges within projects that seek to promote ecologically functional floodplains through river-floodplain reconnection and/or restoration of key components of hydrological variability. 相似文献
60.
Michael J. Paul David W. Bressler Alison H. Purcell Michael T. Barbour Ed T. Rankin Vincent H. Resh 《Journal of the American Water Resources Association》2009,45(2):320-330
Abstract: Urbanization represents a strong and increasingly more prevalent impact on stream quality worldwide. One of the characteristic effects of increased urbanization is a consistent decline in biological stream condition. The characterization of this biological degradation with increasing urbanization presents a number of advantages for the study and management of urban streams and catchments. In this paper, the limitation of biological condition with urbanization, called observed biological potential, is characterized. Using an urban intensity index and a biological index developed specifically for urban systems in the Baltimore, Maryland; Cleveland, Ohio; and San Jose, California regions, two principal techniques were compared (quantile regression and bin regression) to define observed biological potential along urban gradients. Quantile regression was selected as the preferable tool for describing observed biological potential given the consistency with which it can be applied and its statistical efficiency, however, bin quantile regression performed similarly. Having identified a numeric approximation of observed biological potential, two methods for identifying factors related to distance from potential as a way of identifying critical environmental factors affecting biological condition in urban areas were explored. The results of this work can be used for identifying benchmarks for urban stream biological condition, identifying limiting catchment characteristics, and prioritizing urban stream management efforts. 相似文献