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1.
Monitoring, assessment and modelling using water quality data in the Saale River Basin, Germany 总被引:1,自引:0,他引:1
Bongartz K Steele TD Baborowski M Lindenschmidt KE 《Environmental monitoring and assessment》2007,135(1-3):227-240
The European Water Framework Directive (WFD) is the overall driver for this environmental study and currently requires the
identification of patterns and sources of pollution (monitoring) to support objective ecological sound decision making and
specific measures to enhance river water quality (modelling). The purpose of this paper is to demonstrate in a case study
the interrelationship between (1) hydrologic and water quality monitoring data for river basin characterization and (2) modelling
applications to assess resources management alternatives. The study deals with monitoring assessment and modelling of river
water quality data of the main stem Saale River and its principal tributaries. For a period of 6 years the data, which was
sampled by Environmental Agencies of the German states of Thuringia, Saxony and Saxony-Anhalt, was investigated to assess
sources and indicators of pollution. In addition to the assessment a modelling exercise of the routing of different pollutants
was carried out in the lower part of the test basin. The modelling is a tool to facilitate the evaluation of alternative measures
to reduce contaminant loadings and improve ecological status of a water body as required by WFD. The transport of suspended
solids, salts and heavy metals was modelled along a selected Saale reach under strong anthropogenic influence in terms of
contaminants and river morphology between the city of Halle and the confluence with the Elbe River. The simulations were carried
out with the model WASP5 which is a dynamic flood-routing and water quality model package developed by the US Environmental
Protection Agency. 相似文献
2.
The Great Basin Desert lies between the Sierra Nevada Mountains to the west and the Rocky Mountains to the east. Nearly 60%
of the area’s deserts and mountains (roughly 30 million ha) are managed by the U. S. Department of Interior’s Bureau of Land
Management. This area is characterized by low annual precipitation, diverse desert plant communities, and local economies
that depend on the products (livestock grazing, recreation, mining, etc.) produced by these lands. The ecological and economic
stability of the Great Basin is increasingly at risk due to the expansion of fire-prone invasive species and increase in wildfires.
To stem this loss of productivity and diversity in the Great Basin, the BLM initiated the “Great Basin Restoration Initiative”
in 1999 after nearly 0.7 million ha of the Great Basin burned in wildfires. The objective of the Great Basin Restoration Initiative
is to restore plant community diversity and structure by improving resiliency to disturbance and resistance to invasive species
over the long-term. To accomplish this objective, a strategic plan has been developed that emphasizes local participation
and reliance on appropriate science to ensure that restoration is accomplished in an economical and ecologically appropriate
manner. If restoration in the Great Basin is not successful, desertification and the associated loss of economic stability
and ecological integrity will continue to threaten the sustainability of natural resources and people in the Great Basin. 相似文献
3.
Water environmental degradation is a major issue in the Heihe River Basin belonging to the inland river basin of temperate arid zone in northwestern China. Mankind’s activities, such as dense population and heavy dependence on irrigated agriculture, place immense pressure on available and limited water resources during the last century, especially the recent five decades. An investigation on the water environmental degradation in the Heihe River Basin and analysis of its causation were conducted. The results indicated that water environmental changes in the whole basin were tremendous mostly in the middle reaches, which reflected in surface water runoff change, decline of groundwater table and degeneration of surface water and groundwater quality. Some new forms of management based on traditional and scientific knowledge must be introduced to solve problems of water environmental degradation in the Heihe River Basin. 相似文献
4.
Land use change is an important topic in the field of global environmental change and sustainable development. Land use change
modeling has attracted substantial attention because it helps researchers understand the mechanisms of land use change and
assists regulatory bodies in formulating relevant policies. Maotiao River Basin is located in the province of Guizhou, China,
which has a developed agricultural industry in the karst mountain areas. This paper selected biophysical and social–economic
factors as independent variables, and constructed a multiple logistic regression of farmland spatial distribution probability
by random sampling. Then, by using GIS technology and integrating the 2000 data, this study predicted the farmland spatial
pattern. When the predicted map was compared with the actual farmland map for 2000, we noted that 71% of the simulation is
in accordance with the 2000 farmland pattern. The result satisfactorily proves the reasonability and applicability of our
model. 相似文献
5.
Enrichment and fractionation of heavy metals in bed sediments of River Narmada, India 总被引:2,自引:0,他引:2
A metal fractionation study on bed sediments of River Narmada in Central India has been carried out to examine the enrichment
and partitioning of different metal species between five geochemical phases (exchangeable fraction, carbonate fraction, Fe/Mn
oxide fraction, organic fraction and residual fraction). The river receives toxic substances through a large number of tributaries
and drains flowing in the catchment of the river. The toxic substances of particular interest are heavy metals derived from
urban runoff as well as municipal sewage and industrial effluents. Heavy metals entering the river get adsorbed onto the suspended
sediments, which in due course of time settle down in the bottom of the river. In this study fractionation of metal ions has
been carried out with the objective to determine the eco-toxic potential of metal ions. Although, in most cases (except iron)
the average trace/heavy metal concentrations in sediments were higher than the standard shale values, the risk assessment
code as applied to the present study reveals that only about 1–3% of manganese, <1% of copper, 16–19% of nickel, 4–20% of
chromium, 1–4% of lead, 8–13% of cadmium and 1–3% of zinc exist in exchangeable fraction and therefore falls under low to
medium risk category. According to the Geo-accumulation Index (GAI), cadmium shows high accumulation in the river sediments,
rest of other metals are under unpolluted to moderately polluted class. 相似文献
6.
当前,新疆正处于水电资源开发大发展时期,做好生态环境保护工作对于水电可持续发展至关重要。伊犁河流域是新疆第一大河,水电资源丰富,同时也是新疆生态环境极其重要的地区,本文针对目前伊犁河流域水电开发的现状,分析了存在的问题,并提出意见建议,可为新疆水电资源的可持续绿色发展提供参考。 相似文献
7.
May TW Fairchild JF Petty JD Walther MJ Lucero J Delvaux M Manring J Armbruster M 《Environmental monitoring and assessment》2008,137(1-3):213-232
The Solomon River Basin is located in north-central Kansas in an area underlain by marine geologic shales. Selenium is an
indigenous constituent of these shales and is readily leached into the surrounding groundwater. Portions of the Basin are
irrigated primarily through the pumping of selenium-contaminated groundwater from wells onto fields in agricultural production.
Water, sediment, macroinvertebrates, and fish were collected from various sites in the Basin in 1998 and analyzed for selenium.
Selenium concentrations were analyzed spatially and temporally and compared to reported selenium toxic effect thresholds for
specific ecosystem components: water, sediments, food-chain organisms, and wholebody fish. A selenium aquatic hazard assessment
for the Basin was determined based on protocol established by Lemly. Throughout the Basin, water, macroinvertebrate, and whole
fish samples exceeded levels suspected of causing reproductive impairment in fish. Population structures of several fish species
implied that successful reproduction was occurring; however, the influence of immigration of fish from low-selenium habitats
could not be discounted. Site-specific fish reproduction studies are needed to determine the true impact of selenium on fishery
resources in the Basin.
The U.S. Government’s right to retain a non-exclusive, royalty free license in and to any copyright is acknowledged. 相似文献
8.
9.
Metal Fractionation Studies in Surfacial and Core Sediments in the Achankovil River Basin in India 总被引:1,自引:0,他引:1
Bala Krishna Prasad M Ramanathan AL Shrivastav SK Anshumali Saxena R 《Environmental monitoring and assessment》2006,121(1-3):77-102
The Fractionation of Fe, Zn, Cu, Pb, Mn and Cd in the sediments of the Achankovil River, Western Ghats, India using a sequential extraction method was carried out to understand the metal availability in the basin for biotic and abiotic activities. Spatial distribution of heavy metals has been studied. Sediment grain size has significant control over the heavy metal distribution. The fluctuations in their concentration partly depend upon the lithology of the river basin and partly the anthropogenic activities. The sediments are dominated by sand and are moderately to strongly positively skewed and are very leptokurtotic in nature. The quartzite and feldspars are abundant minerals along with significant amount of mica with low clay content. The core sediments show increasing trend of heavy metal concentration with depth due to the recent addition of anthropogenic sources and post-diagenic activities. Significant amount of Cd (18%) was found in carbonate fraction, which may pose environmental problems due to its toxic nature. Small concentrations of metals, except Cd and Cu, are in exchangeable fraction, which indicate low bio-availability. Enrichment Factor (EF) for individual metals shows the contribution from terrregious and in part from anthropogenic sources. Selective Sequential Extraction (SSE) study shows the variation in specific metal distribution pattern, their distribution in different phases and their bio-availability. Maximum amount of the metals were bound to the non-residual fractions (mainly Fe-oxides). Overall, bio-availability of these micronutrients from sediments seems to be very less. Non-residual phase is the most important phase for majority of heavy metals studied. Among the non-residual fraction, maximum amount of the heavy metals bound to Fe-oxides. The study high lights the need for in-depth study of heavy metals distribution and fractionation in the smaller river basins to get precise information on the behavior and transport of heavy metals in the fluvial environment and their contribution to the world ocean. 相似文献
10.
The metal pollution in water and sediment of the River Hindon in western Uttar Pradesh (India) was assessed for Cd, Cr, Cu, Fe, Mn, Ni, Pb and Zn. The metal concentrations in water showed wide temporal variation compared with bed sediment because of variability in water discharge and variations in suspended solid loadings. Metal concentrations in bed sediments provided a better evaluation of the degree and the extent of contamination in the aquatic environment, Santagarh and Atali being the most polluted sites of the river. The ratio of heavy metals to conservative elements (Fe, Al, etc.) may reveal the geochemical imbalances due to the elevated metal concentrations normally attributed to anthropogenic sources. Metal/Al ratios for the bed sediments of the river Hindon were used to determine the relative mobility and general trend of relative mobility occurred Fe > Mn > Zn > Cr > Ni > Pb > Cu > Cd. 相似文献