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51.
P. J. Murray D. J. Hatch E. R. Dixon S. Granger C. O’Prey R. J. Stevens R. J. Laughlin S. C. Jarvis 《Water, Air, & Soil Pollution: Focus》2005,4(6):45-52
Much work has been done on gaseous emissions and leaching of nitrogenous compounds from whole soil profiles and also from soil surface measurements which are assumed to be mainly due to topsoil activity. In soils with an impervious clay subsoil, the boundary between the topsoil and subsoil may provide an interface for microbial activity, including N transformations. In this study, we investigated movement and transformations of two reactive N species (nitrate and urea) at the subsoil interface using a series of replicate, intact soil blocks, under two contrasting watering regimes. We measured fluxes in both liquid and gaseous phases and demonstrated that nitrate reaching the subsoil interface does not necessarily leach into water systems, but may denitrify immediately and could, therefore, add to atmospheric pollution through N2O production. On the other hand, ammonium reaching the subsoil interface either directly, or after mineralization, appears to be more mobile than expected and has the potential to pollute watercourses. 相似文献
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54.
Asere Tsegaye Girma Verbeken Kim Tessema Dejene A. Fufa Fekadu Stevens Christian V. Du Laing Gijs 《Environmental science and pollution research international》2017,24(25):20446-20458
Environmental Science and Pollution Research - Contamination of drinking water with arsenic causes severe health problems in various world regions. Arsenic exists predominantly as As(III) and As(V)... 相似文献
55.
This investigation presents a simple spatially explicit analysis of the ideal-free distribution. The traditional ideal-free
distribution assumes discrete sites with definite boundaries, and predicts how many individuals should occupy each site. In
contrast, the present analysis assumes that a forager’s gains gradually decline with distance from a site, and asks where
in space individuals ought to be. Although many interesting situations may arise, the analysis asks how individuals should
position themselves as the distance between two identical sources increases. Nash equilibrium positions should follow a pitchfork
pattern as the distance between sites is increased; that is, an individual should maintain a position between two sources
when they are close together but should move nearer one of the sources when they are far apart. In addition, the text describes
an experimental study that parallels the theoretical analysis. The experiment supports the predicted pitchfork pattern, and
provides somewhat weaker support for the predicted differences in ”individual” and ”paired” pitchforks.
Received: 14 June 2000 / Revised: 20 September 2000 / Accepted: 7 October 2000 相似文献
56.
/ Adaptive ecosystem management seeks to sustain ecosystems while extracting or using natural resources. The goal of endangered species management under the Endangered Species Act is limited to the protection and recovery of designated species, and the act takes precedence over other policies and regulations guiding ecosystem management. We present an example of conflict between endangered species and ecosystem management during the first planned flood on the Colorado River in Grand Canyon in 1996. We discuss the resolution of the conflict and the circumstances that allowed a solution to be reached. We recommend that adaptive management be implemented extensively and early in ecosystem management so that information and working relationships will be available to address conflicts as they arise. Though adaptive management is not a panacea, it offers the best opportunity for balanced solutions to competing management goals. 相似文献
57.
Leon Liegel David Cassell Donald Stevens Paul Shaffer Robbins Church 《Environmental management》1991,15(2):269-279
The Direct/Delayed Response Project (DDRP) is one of several studies being conducted by the United States Environmental Protection
Agency to assess risk to surface waters from acidic deposition in the eastern United States. In one phase of DDRP, land use,
wetland, and forest cover data were collected for statistical samples of 145 Northeast lake and 35 Southern Blue Ridge Province
stream watersheds in the United States. Land-use and other data then were extrapolated from individual to target watershed
populations. Project statistical design allows summarization of results for various subsets of the target population. This
article discusses results and implications of the land-use and land-cover characterization for both regions.
Forest cover was the primary land use in both regions. In the Northeast, developed (agriculture and urban) land was positively
associated with surface-water chemistry values for acid neutralizing capacity, Ca plus Mg, pH, and sulfate in the Pocono/Catskill
subregion. Extensive wetlands and beaver activity occur in parts of the Northeast region, whereas topography limits wetland
and riparian development in the Southern Blue Ridge Province. Northeast soils have low sulfate adsorption capacity, most watersheds
are near sulfur steady state, and lake sulfate concentrations are controlled principally by levels of sulfur deposition. Net
annual sulfur retention in Northeast watersheds is positively correlated with occurrence of wetlands and beaver impoundments.
In contrast, most Southern Blue Ridge Province soils have high sulfate adsorption capacities, resulting in high net watershed
sulfur retention. At the present time, stream sulfate concentrations and percent sulfur retention are controlled principally
by soil chemical properties related to adsorption rather than atmospheric deposition and land use.
The information in this document has been funded wholly by the United States Environmental Protection Agency. It has been
subjected to the agency's peer and administrative review, and it has been approved for publication as an EPA document. Mention
of trade names or commercial products does not constitute endorsement or recommendation for use. 相似文献
58.
Environmental Dependency of Inbreeding Depression: Implications for Conservation Biology 总被引:7,自引:1,他引:6
Leslie A. Pray James M. Schwartz Charles J. Goodnight Lori Stevens 《Conservation biology》1994,8(2):562-568
Inbreeding depression is environmentally dependent, such that a population may suffer from inbreeding depression in one environment but not another. We examined the phenotypic responses of 35 inbred ( F = 0.672) lineages of the red flour beetle Tribolium castaneum in two different climatic environments. We found a significant environmental effect on males but not females. More important, we found that the rank fitness order of lineages differs between environments; lineages of high fitness in one environment may have low fitness in another environment. This change in rank is evident in a significant genotype-by-environment interaction for inbreeding depression for both females and males. These results suggest that even if we know the average environmental effect of inbreeding depression in a population, for any particular lineage measurements of inbreeding depression in one environment may not predict the level of inbreeding depression in another environment. Conservation biologists need to be aware of the environmental dependency of inbreeding depression when planning wildlife refuges or captive propagation programs for small populations. Ideally, captive propagation programs should maintain separate lineages for release efforts. Refuge design programs should consider maintaining a range of habitat types. 相似文献
59.
The Journal of Safety Research has partnered with the National Center for Injury Prevention and Control at the Centers for Disease Control and Prevention (CDC) in Atlanta, Georgia, USA, to briefly report on some of the latest findings in the research community. This report is the seventh in a series of CDC articles. 相似文献
60.
Ahmed?SaidEmail author David?K.?Stevens Gerald?Sehlke 《Environment, Development and Sustainability》2005,7(4):453-464
A new approach for evaluating water sustainability is introduced by comparing physical and economic sustainability. To achieve
physical sustainability, water should be available in sufficient quantity and of good quality and used efficiently. The economic
sustainability can be achieved by balancing between costs and values of water. The objectives of this study were to estimate
the physical and economic sustainability of surface water in the Big Lost River, south–central Idaho. The study used a Bayesian
network by building a graphical diagram of nodes representing all significant variables related with the sustainability, such
as water demand, water quality, and the different costs and values of water. The study showed that the likelihood of the physical
sustainability is less than that of the economic sustainability, which is attributed to the scarcity of water in the Big Lost
River.
Readers should send their comments on this paper to: BhaskarNath@aol.com within 3 months of publication of this issue. 相似文献