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241.
It is usually inappropriate to define rectangular land areas or administrative units as the extent for quantifying landscapes
that possess hierarchical structure. As a functional unit established by geophysical relationships, the watershed is one of
many natural scales in the hierarchical landscape. We examined the dynamics of the Yashiro watershed of Japan at the landscape
level using pattern metrics based on Landsat thematic mapper (TM) imagery from 1985 to 1998. This watershed provides important
habitats for the hooded crane (Grus monachus), a vulnerable species. While its world population has remained stable, the number wintering at Yashiro has declined in recent
years. Changes in landscape metrics reveal that the spatial pattern within the watershed underwent homogenization due to depopulation
of local people and shifts in local energy requirements and forest management policy at Yashiro. Specific changes include:
a decrease in bare land area from 6.2% to 1.0% of the landscape, increased forest cover from 69.2% to 76.1%, reduction in
patch number from 1194 to 616 and enlarged mean patch size, and a decrease in total edge from 223,740 m to 158,040 m. The
rate of change in landscape metrics indicates a rapid change towards homogeneity in the landscape since 1990. The temporal
changes in hooded crane populations corresponded to the changes in landscape. An alternative explanation has been proposed
that decline of the species is influenced by landscape dynamics affecting both habitat selection and food resources. Conservation
at the watershed scale is suggested to be complementary to the current conservation measures of the species. 相似文献
242.
Researchers attempting to integrate socio-economic data in watershed planning often draw on nationally collected census data. However, there are critical limitations to the usefulness of this type of data for decision makers operating at the watershed scale. In this paper we demonstrate the relevance of spatially referenced socio-economic data collected using mail surveys to random selections of rural landholders. The issue explored was dryland salinity management in two large watersheds in the Murray-Darling Basin of south-eastern Australia. Contrary to the assumptions underlying public policy in Australia, but consistent with the literature on farmer knowledge, comparisons of expert maps and landholder identified salinity sites suggested that landholders in these watersheds had excellent knowledge of the current extent of salinity on their property. Our research also suggested that salinity education was a sound investment by governments. At the same time, the expert maps failed to predict half of the saline affected sites identified by landholders. Accurately mapping the extent of salinity would seem a first step in addressing this nationally significant land degradation issue. 相似文献
243.
Grassroots watershed associations have formed as an avenue to facilitate public involvement in protecting watersheds. Growth in the number of watershed associations has created a need to evaluate whether their existence enhances environmental protection by local communities. In this research, environmental protection was measured by the number of watershed protection activities conducted and amount of funding directed towards protecting surface waters by non-profit, volunteer organizations. Regression models were utilized to examine the influence of population demographic and watershed characteristics variables to explain the formation of watershed associations along with watershed protection activities and funding. Regression results showed that the presence of watershed associations had positive impacts on both the number of activities and financial resources acquired. The results confirm that watershed associations enhance the ability of communities to obtain funding and to implement watershed protection actions. Thus, watershed associations serve as an effective institution for promoting environmental protection. 相似文献
244.
Toward quantifying water pollution abatement in response to installing buffers on crop land 总被引:7,自引:0,他引:7
Dosskey MG 《Environmental management》2001,28(5):577-598
The scientific research literature is reviewed (i) for evidence of how much reduction in nonpoint source pollution can be
achieved by installing buffers on crop land, (ii) to summarize important factors that can affect this response, and (iii)
to identify remaining major information gaps that limit our ability to make probable estimates. This review is intended to
clarify the current scientific foundation of the USDA and similar buffer programs designed in part for water pollution abatement
and to highlight important research needs.
At this time, research reports are lacking that quantify a change in pollutant amounts (concentration and/or load) in streams
or lakes in response to converting portions of cropped land to buffers. Most evidence that such a change should occur is indirect,
coming from site-scale studies of individual functions of buffers that act to retain pollutants from runoff: (1) reduce surface
runoff from fields, (2) filter surface runoff from fields, (3) filter groundwater runoff from fields, (4) reduce bank erosion,
and (5) filter stream water. The term filter is used here to encompass the range of specific processes that act to reduce pollutant amounts in runoff flow.
A consensus of experimental research on functions of buffers clearly shows that they can substantially limit sediment runoff
from fields, retain sediment and sediment-bound pollutants from surface runoff, and remove nitrate N from groundwater runoff.
Less certain is the magnitude of these functions compared to the cultivated crop condition that buffers would replace within
the context of buffer installation programs. Other evidence suggests that buffer installation can substantially reduce bank
erosion sources of sediment under certain circumstances. Studies have yet to address the degree to which buffer installation
can enhance channel processes that remove pollutants from stream flow.
Mathematical models offer an alternative way to develop estimates for water quality changes in response to buffer installation.
Numerous site conditions and buffer design factors have been identified that can determine the magnitude of each buffer function.
Accurate models must be able to account for and integrate these functions and factors over whole watersheds. At this time,
only pollutant runoff and surface filtration functions have been modeled to this extent. Capability is increasing as research
data is produced, models become more comprehensive, and new techniques provide means to describe variable conditions across
watersheds.
A great deal of professional judgment is still required to extrapolate current knowledge of buffer functions into broadly
accurate estimates of water pollution abatement in response to buffer installation on crop land. Much important research remains
to be done to improve this capability. The greatest need is to produce direct quantitative evidence of this response. Such
data would confirm the hypothesis and enable direct testing of watershed-scale prediction models as they become available.
Further study of individual pollution control functions is also needed, particularly to generate comparative evidence for
how much they can be manipulated through buffer installation and management. 相似文献
245.
The Politics of Participation in Watershed Modeling 总被引:2,自引:0,他引:2
Korfmacher KS 《Environmental management》2001,27(2):161-176
While researchers and decision-makers increasingly recognize the importance of public participation in environmental decision-making,
there is less agreement about how to involve the public. One of the most controversial issues is how to involve citizens in
producing scientific information. Although this question is relevant to many areas of environmental policy, it has come to
the fore in watershed management. Increasingly, the public is becoming involved in the sophisticated computer modeling efforts
that have been developed to inform watershed management decisions. These models typically have been treated as technical inputs
to the policy process. However, model-building itself involves numerous assumptions, judgments, and decisions that are relevant
to the public. This paper examines the politics of public involvement in watershed modeling efforts and proposes five guidelines
for good practice for such efforts. Using these guidelines, I analyze four cases in which different approaches to public involvement
in the modeling process have been attempted and make recommendations for future efforts to involve communities in watershed
modeling. 相似文献
246.
247.
Index models to evaluate the risk of phosphorus and nitrogen loss at catchment scales 总被引:1,自引:0,他引:1
This paper investigates index models as a tool to estimate the risk of N and P source strengths and loss at the catchment scale. The index models assist managers in improving the focus of remediation actions that reduce nutrient delivery to waterbodies. N and P source risk factors (e.g. soil nutrient concentrations) and transport risk factors (e.g. distance-to-streams) are used to determine the overall risk of nutrient loss for a case study in the Tuross River catchment of coastal southeast Australia. In the development of the N index model for Tuross, particulate N was considered important based on the observed event water quality data. In contrast to previous N index models, erosion and contributing distance were therefore included in the Tuross River catchment N index. Event-based water quality monitoring, and soil information, or in data-poor catchments conceptual understanding, are essential to represent catchment-scale processes. The techniques have high applicability in other catchments, and are complementary to other modelling techniques such as process-based semi-distributed modelling. Index models generally provide much more detailed spatial resolution than fully- or semi-distributed conceptual modelling approaches. Semi-distributed models can be used to quantify nutrient loads and provide overall direction to set the broad focus of management. Index models can then be used to refine on-the-ground investigations and investment priorities. In this way semi-distributed models can be combined with index models to provide a set of powerful tools to influence management decisions and outcomes. 相似文献
248.
旅游作为一种日渐兴旺的人类活动,在带来旅游城市经济增长的同时也不可避免地引起水体的氮污染问题.研究旅游城市水体氮负荷的特征,对提高水环境质量具有重要意义.以丽江市漾弓江流域为例,基于物质流分析方法(MFA)探讨旅游城市的水环境氮负荷变化特征及其主要来源,并用回归分析方法探究流域水体氨氮浓度与旅游人次的关系.结果表明,2015—2019年漾弓江流域水体氮负荷呈波动式递减状态,总量为1200~1400 t.人类生活和农作物种植系统是漾弓江流域水体氮负荷的主要贡献者,其中,游客生活子系统的水体氮负荷增速尤为 显著,本地居民生活系统增速缓慢,其他子系统排放量呈下降趋势.旅游旺季及雨季、施肥等的叠加影响使得6月和7月水环境质量最差,表现为水体氨氮浓度值和超标率最高.针对近年来漾弓江流域水环境氮负荷的排放特征及水质超标特点,因时制宜制定减排对策将有助于减少 氮污染,提高旅游城市水环境质量. 相似文献
249.
Hearne RR 《Environmental management》2007,40(6):842-852
Institutions are the rules and norms that guide societal behavior. As societies evolve—with more diverse economies, increased
populations and incomes, and more water scarcity—new and more complex water management institutions need to be developed.
This evolution of water management institutions may also be observed across different constituencies, with different societal
needs, in the same time period. The Red River of the North basin is particularly well suited for research on water management
issues. A key feature of water management in the Red River Basin is the presence of three completely different sets of water
law. Minnesota’s water law is based upon riparian rights. North Dakota’s water law is based upon prior appropriation. Manitoba
has a system of water allocation that features provincial control. Because the basin is fairly homogeneous in terms of land
use and geographic features, its institutional diversity makes this an excellent case study for the analysis of local water
institutions. This article reviews the local water management institutions in the Red River Basin and assesses the ongoing
institutional evolution of local water management. 相似文献
250.
A multimedia environmental fate model was developed to study the temporal dynamics and spatial distribution of a chemical pollutant at watershed scale. The theoretical considerations and implementation of the model were described in the accompanying paper (Part I). This paper presents the result of a test simulation on the transport of trichloroethylene (TCE) in the Connecticut River Basin. The simulation results were reported as time series of concentrations and inter-media transport fluxes in the compartments of atmosphere, plant, soil, surface water, and sediment. Predicted concentrations from the test simulation were compared with published field data or predictions by validated models. The temporal trends in TCE predictions were evaluated by comparing the simulation results with monthly TCE concentrations in various environmental compartments and monthly fluxes of inter-media transport processes. Results indicated that the simulation results were in reasonable agreement with reported data in the literature. The results also revealed that the mass transport of TCE from the atmosphere compartment to soil and surface water was a major route of TCE dispersion in the environment. 相似文献