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351.
简要介绍了玉环县五大河流环境质量现状,分析了造成了五大河流受污染的原因,并从环保的角度提出了建议项目指导性意见,以及分流域提出了五大河流的污染防治对策。  相似文献   
352.
ABSTRACT: Bed sediments of the San Joaquin River and its tributaries were sampled during October 7–11, 1985, and analyzed for organochiorine pesticide residues in order to determine their areal distribution and to evaluate and prioritize needs for further study. Residues of DDD, DDE, DDT, and dieldrin are widespread in the fine-grained bed sediments of the San Joaquin River and its tributaries despite little or no use of these pesticides for more than 15 years. The San Joaquin River has among the highest bed-sediment concentrations of DDD, DDE, DDT, and dieldrin residues of major rivers in the United States. Concentrations of all four pesticides were correlated with each other and with the amount of organic carbon and fine-grained particles in the bed sediments. The highest concentrations occurred in bed sediments of westside tributary streams. Potential tributary loads of DDD, DDE, DDT, and dieldrin to the San Joaquin River were computed from bed-sediment concentrations and data on streamfiow and suspended-sediment concentration in order to identify the general magnitude of differences between streams and to determine study priorities. The estimated loads indicate that the most important sources of residues during the study period were Salt Slough because of a high load of fine sediment, and Newman Wasteway, Orestimba Creek, and Hospital Creek because of high bed-sediment concentrations. Generally, the highest estimated loads of DDD, DDE, DDT, and dieldrin were in Orestimba and Hospital Creeks.  相似文献   
353.
ABSTRACT: River solute loads have seldom been measured in very large, complex drainage basins, nor have the methods of calculating loads been critically examined. For sites in the Saskatchewan River Basin, Canada, rating curves were poor predictors of solute loads because correlations between discharge and total solutes concentration were weak (R2 < 0.05 in most cases) and suffered from hysteresis. In contrast, the interval method produced reliable estimates in all seasons and sites tested, and was little affected by sampling schedule. The limit of precision (SE) for estimates of mean annual or seasonal solute load was 10–15 percent of the mean (5 percent in very small basins), reached with 10 years or more of data. Two-thirds or more of total annual solute load was transported during the open-water season, but the proportion carried during winter increased from 8 percent to 34 percent from the upstream to the downstream end of the basin, due to reservoirs retaining and mixing water. Annual loads of total solutes varied from 6.2 × 104 tonnes in foothills tributaries to almost 4.0 × 106 tonnes in the Saskatchewan River near the mouth. But, on an areal basis, the mountain and foothills region was the dominant solute source, producing 43–97 tonnes/km2/yr, compared with only 3–22 tonnes/km2/yr for prairie rivers. This difference is a consequence of greater rainfall and, hence, more rapid erosion in the mountains.  相似文献   
354.
城市污染河道沉积物有机质的氧化稳定性   总被引:1,自引:0,他引:1  
为了研究城市河道沉积物有机质的氧化稳定性,以氧化稳定系数(Kos)和腐殖化程度(HA/FA)作为评价指标,在用H2O2处理沉积物的基础上,探讨城市污染河道有机质含量、有机质组成等对氧化稳定性的影响.结果显示,污染河道沉积物有机质含量明显高于自然水生态系统沉积物有机质含量;富里酸(FA)、胡敏酸(HA)、胡敏素(HM)是污染河道沉积物有机质主要赋存形式,其中胡敏素是主体,占全部有机质的65%以上;易氧化有机质(OMr)和难氧化有机质(OMd)与总有机质含量均显著正相关(P0.05);OMd的含量可以更直观地反映河道污染程度;重污染河道沉积物有机质去除量较高;随着有机质的去除,沉积物Kos在总体上有上升的趋势;不同形态有机组分其Kos差异性明显(P0.05),以HM为主的紧结态腐殖质的Kos值最高;用HA/FA和OMr可从大体上表征沉积物的氧化稳定性;HA、FA是影响城市河道沉积物氧化稳定性的主要因素.  相似文献   
355.
The nutrient discharges from point and diffuse sources in more than 200 German river basins were estimated for the periods 1983–1987 and 1993–1997 employing the MONERIS model. This model distinguishes between six diffuse pathways and point source emissions from waste water treatment plants and direct industrial discharges. It was estimated that the total nitrogen input into the German river systems amounts to about 819,000 t N year–1 in the period 1993 to 1997. These emissions have decreased since the mid-eighties by about 266,000 t N year–1, mainly caused by the reduction of point discharges. For phosphorus the emissions have been reduced by 56,290 t P year–1 and amount to 37,250 t P year–1 in the period 1993–1997. Based on emission data a retention module estimates riverine nutrient loads. The comparison of the model output with the observed loads shows a deviation as low as 30% and 50% for nitrogen and phosphorus, respectively. The regional resolution of the model indicates the relative importance of different pathways for phosphorus and nitrogen input into river systems. Electronic Publication  相似文献   
356.
Small streams in forested landscapes are tightly coupled to the vegetation of the surrounding forest, and one of the key drivers of the stream ecosystem is the nature of organic matter supplied to it. This paper is focussed on three questions related to organic matter dynamics in small, forested streams of the conifer dominated Pacific Northwest: (1) How do small streams differ from large streams? (2) How do small streams of the Pacific Northwest differ from those of other regions? and (3) How do forest practices alter organic matter dynamics of small streams in the Pacific Northwest? The organic matter dynamics of small streams in this region differ from temperate deciduous forests in the nature of the organic matter deposited (protective chemicals, hard epidermis, slower loss rates), the timing of inputs (distributed throughout the year), and the transport rates (smaller, hard needles are more easily transported). The large amount and persistence of wood in these streams provides an additional source of organic matter that can be consumed by particular species and contributes to biofilm and fine particulate organic matter (FPOM) production. Logging is commonly practiced in many forests of the region. This practice has been shown to alter the type, amount, and timing of organic matter delivery to small streams and reduce the amount and size of large wood. Changes in channel complexity and water temperature after logging also can contribute to reduced organic matter storage. Many of the processes controlling organic matter dynamics in small streams are well described in other regions. However, the climate, vegetation, and topography of the Pacific Northwest suggest that the rates and nature of some processes affecting stream organic matter may differ considerably from other regions. Further research on small streams of this area will be required to better understand these differences.  相似文献   
357.
太湖流域农村黑臭河流沉积物中磷形态的垂向分布特征   总被引:11,自引:0,他引:11  
为揭示太湖地区农村黑臭河流表层沉积物中磷形态的分布特征及各形态磷之间的相关性,本文以宜兴市周铁镇掌下浜(北段)为例,沿河流从上游到下游河口共采集了13个表层沉积物样,应用SMT法(The Standards,Measurements and Testing Programme)对柱状沉积物中磷形态进行了分析,并对有机质与各磷形态及其之间进行相关性分析.结果表明:在垂向分布上,沉积物中各形态磷含量随深度加深总体均呈现下降趋势;总磷(Total Phosphorus,TP)的平均含量为659.33~4379.31 mg·kg-1,无机磷(Inorganic Phosphorus,IP)构成沉积物中磷的主要部分,占TP的66.59%~88.25%;盐酸提取态磷(Hydrochloric acid extractable phosphorus,Ca-P)占TP的44.17%~71.47%,占IP的62.17%~83.70%,是构成IP的主要部分.有机质含量与各形态磷之间皆表现出显著的正相关性,反映出垂向沉积剖面上有机质是磷形态含量的重要影响因素.IP、Ca-P、OP(Organic Phosphorus,有机磷)与TP均具有显著的相关关系,表明沉积物中TP含量的增加,主要来自Ca-P,其次是OP;沉积物中OP与Fe/Al-P(NaOH extractable phosphorus,铁铝磷)、Ca-P含量也具有显著的正相关关系,表明OP含量对Fe/Al-P、Ca-P的含量均有影响;Ca-P与Fe/Al-P含量之间存在显著的相关性,说明沉积物中Fe/Al-P的还原释放对Ca-P的形成具有一定的影响.  相似文献   
358.
洱海入湖河流白鹤溪主要排污口及其污染负荷解析   总被引:1,自引:1,他引:0  
对洱海西部入湖河流白鹤溪主要排污口进行调查,采用等标污染负荷法对各个排污口排污情况进行分析。结果表明:白鹤溪在丰水期与枯水期等标污染负荷相当,南支的等标污染负荷大于北支,最主要的污染因子为总氮和总磷。白鹤溪最主要的排污口为南3排污口,其次为北2排污口,总氮总磷是其主要污染因子,高锰酸盐指数在北2排污口也占有较大比例。各个排污口的污染因子在丰水期与枯水期差异较大。以排污口形式进入白鹤溪的污染负荷是白鹤溪污染负荷的主要来源。  相似文献   
359.
深圳市利用小(2)型水库进行河流生态补水研究   总被引:1,自引:0,他引:1  
深圳市水环境质量改善迫在眉睫,亟需探寻新的解决思路和途径。借鉴香港、新加坡等城市经验,提出"抓大放小"思路,通过挖潜现有供水水库库容,科学调度水资源,逐步调整小(2)型水库供水功能,充分利用水库库容在旱季为下游河流实施生态补水。补水后可一定程度改善下游河流水质状况,为深圳市河流治理提供新的思路和解决方案。同时通过完善村镇供水网络,实现集中供水,保障了区域供水水量和水质的稳定。  相似文献   
360.
Freshwater ecosystems are linked at various spatial and temporal scales by movements of biota adapted to life in water. We review the literature on movements of aquatic organisms that connect different types of freshwater habitats, focusing on linkages from streams and wetlands to downstream waters. Here, streams, wetlands, rivers, lakes, ponds, and other freshwater habitats are viewed as dynamic freshwater ecosystem mosaics (FEMs) that collectively provide the resources needed to sustain aquatic life. Based on existing evidence, it is clear that biotic linkages throughout FEMs have important consequences for biological integrity and biodiversity. All aquatic organisms move within and among FEM components, but differ in the mode, frequency, distance, and timing of their movements. These movements allow biota to recolonize habitats, avoid inbreeding, escape stressors, locate mates, and acquire resources. Cumulatively, these individual movements connect populations within and among FEMs and contribute to local and regional diversity, resilience to disturbance, and persistence of aquatic species in the face of environmental change. Thus, the biological connections established by movement of biota among streams, wetlands, and downstream waters are critical to the ecological integrity of these systems. Future research will help advance our understanding of the movements that link FEMs and their cumulative effects on downstream waters.  相似文献   
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