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91.
Harry X.ZHANG Shaw L.YU 《Frontiers of Environmental Science & Engineering in China》2008,2(3):267-273
One of the key challenges in the total maximum daily load (TMDL) development process is how to define the critical condition
for a receiving waterbody. The main concern in using a continuous simulation approach is the absence of any guarantee that
the most critical condition will be captured during the selected representative hydrologic period, given the scarcity of long-term
continuous data. The objectives of this paper are to clearly address the critical condition in the TMDL development process
and to compare continuous and event-based approaches in defining critical condition during TMDL development for a waterbody
impacted by both point and nonpoint source pollution. A practical, event-based critical flow-storm (CFS) approach was developed
to explicitly addresses the critical condition as a combination of a low stream flow and a storm event of a selected magnitude,
both having certain frequencies of occurrence. This paper illustrated the CFS concept and provided its theoretical basis using
a derived analytical conceptual model. The CFS approach clearly defined a critical condition, obtained reasonable results
and could be considered as an alternative method in TMDL development. 相似文献
92.
Craig?L.?StrongEmail author John?F.?Leys Mike?R.?Raupach Joanna?E.?Bullard Hélène?A.?Aubault Harry?J.?Butler Grant?H.?McTainsh 《Environmental Fluid Mechanics》2016,16(5):1065-1083
Wind erosion processes affect soil surfaces across all land uses worldwide. Understanding the spatial and temporal scales of wind erosion is a challenging undertaking because these processes are diverse and highly variable. Wind tunnels provide a useful tool as they can be used to simulate erosion at small spatial scales. Portable wind tunnels are particularly valued because erosion can be simulated on undisturbed soil surfaces in the field. There has been a long history of use of large portable wind tunnels, with consensus that these wind erosion simulation tools can meet real world aerodynamic criteria. However, one consequence of striving to meet aerodynamic reality is that the size of the tunnels has increased, making them logistically difficult to work with in the field and resulting in a tendency to homogenise naturally complex soil surfaces. This homogenisation is at odds with an increasing awareness of the importance that small scale processes have in wind erosion. To address these logistical and surface homogenisation issues we present here the development and testing of a micro wind tunnel (MWT) designed to simulate wind erosion processes at high spatial resolution. The MWT is a duct-type design—0.05 m tall 0.1 m wide and with a 1.0 m working section. The tunnel uses a centrifugal motor to suck air through a flow‐conditioning section, over the working section and then through a sediment collection trap. Simulated wind velocities range from 5 to 18 m s?1, with high reproducibility. Wind speeds are laterally uniform and values of u * at the tunnel bed (calculated by measuring the pressure gradients within the MWT) are comparable with those of larger tunnels in which logarithmic profiles can be developed. Saltation sediment can be added. The tunnel can be deployed by a single person and operated on slopes ranging from 0 to 10°. Evidence is presented here that the MWT provides new and useful understanding of the erodibility of rangelands, claypans and ore stockpiles. 相似文献
93.
Four populations of the native annual grassTriplasis purpurea were surveyed on coastal beaches along the south shore of Staten Island, NY, to determine the potential of this species to
colonize shoreline habitats mostly devoid of other vegetation. If the species can establish and maintain dense populations,
it may have conservation value for urban beaches disturbed by human activities. For two populations, survivorship, growth,
and reproduction were monitored at different distances from shore to determine the ability of this species to maintain viable
populations. At three sites,T. purpurea occurred in >75% of all quadrats and the highest density was 1195 plants/m2 at 74 m from shore in one recently disturbed site. Density generally increased with increasing distances from shore at low
tide (from ca. 40–90 m). Plants showed the greatest growth and reproduction at close distances to shore (30–40 m); part of
this effect was due to density in one population, but when density effects were removed statistically, there still remained
a decline in growth and reproduction with increasing distance from shore. Improved vigor nearest to shore may be due to continual
sand deposition. Survivorship showed a Type I pattern, with low mortality throughout the growing season. By colonizing newly-deposited
and continually shifting sands,T. purpurea can contribute to the earliest stages of ecological succession along disturbed beaches in eastern North America and may be
valuable to the development and management of urban coastal plant communities. 相似文献
94.
Four populations of the native annual grassTriplasis purpurea were surveyed on coastal beaches along the south shore of Staten Island, NY, to determine the potential of this species to
colonize shoreline habitats mostly devoid of other vegetation. If the species can establish and maintain dense populations,
it may have conservation value for urban beaches disturbed by human activities. For two populations, survivorship, growth,
and reproduction were monitored at different distances from shore to determine the ability of this species to maintain viable
populations. At three sites,T. purpurea occurred in >75% of all quadrats and the highest density was 1195 plants/m2 at 74 m from shore in one recently disturbed site. Density generally increased with increasing distances from shore at low
tide (from ca. 40 – 90 m). Plants showed the greatest growth and reproduction at close distances to shore (30 – 40 m); part
of this effect was due to density in one population, but when density effects were removed statistically, there still remained
a decline in growth and reproduction with increasing distance from shore. Improved vigor nearest to shore may be due to continual
sand deposition. Survivorship showed a Type I pattern, with low mortality throughout the growing season. By colonizing newly-deposited
and continually shifting sands,T. purpurea can contribute to the earliest stages of ecological succession along disturbed beaches in eastern North America and may be
valuable to the development and management of urban coastal plant communities. 相似文献
95.
Arctic marine mammal population status,sea ice habitat loss,and conservation recommendations for the 21st century
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Kristin L. Laidre Harry Stern Kit M. Kovacs Lloyd Lowry Sue E. Moore Eric V. Regehr Steven H. Ferguson Øystein Wiig Peter Boveng Robyn P. Angliss Erik W. Born Dennis Litovka Lori Quakenbush Christian Lydersen Dag Vongraven Fernando Ugarte 《Conservation biology》2015,29(3):724-737
Arctic marine mammals (AMMs) are icons of climate change, largely because of their close association with sea ice. However, neither a circumpolar assessment of AMM status nor a standardized metric of sea ice habitat change is available. We summarized available data on abundance and trend for each AMM species and recognized subpopulation. We also examined species diversity, the extent of human use, and temporal trends in sea ice habitat for 12 regions of the Arctic by calculating the dates of spring sea ice retreat and fall sea ice advance from satellite data (1979–2013). Estimates of AMM abundance varied greatly in quality, and few studies were long enough for trend analysis. Of the AMM subpopulations, 78% (61 of 78) are legally harvested for subsistence purposes. Changes in sea ice phenology have been profound. In all regions except the Bering Sea, the duration of the summer (i.e., reduced ice) period increased by 5–10 weeks and by >20 weeks in the Barents Sea between 1979 and 2013. In light of generally poor data, the importance of human use, and forecasted environmental changes in the 21st century, we recommend the following for effective AMM conservation: maintain and improve comanagement by local, federal, and international partners; recognize spatial and temporal variability in AMM subpopulation response to climate change; implement monitoring programs with clear goals; mitigate cumulative impacts of increased human activity; and recognize the limits of current protected species legislation. 相似文献
96.
97.
John A. Veil Markus G. Puder Debra J. Littleton David O. Moses 《Environmental Science & Policy》1999,2(6):515
Cooling water is used by many industrial facilities. The largest user of cooling water is the electric power industry, although other significant users include the pulp and paper, chemical, iron and steel, aluminum, and petroleum refining industries. The US Environmental Protection Agency (EPA) is currently developing regulations to implement section 316(b) of the Clean Water Act, which deals with cooling water intake structures. The EPA will examine cooling water use patterns at various industries. Data pertaining to cooling water use patterns at utility plants are readily available; however, no information has been assembled for cooling water use at electric power generating facilities owned or operated by entities other than utilities (nonutilities). This paper presents data concerning cooling water use from two subsets of the nonutility sector and focuses on plants using once-through cooling systems. The first subset includes 123 nonutility plants that each generate at least 150 MW of power. Collectively, they represent 41,494 MW of generating capacity, or about 56% of the total nonutility generating capacity. Approximately 17% of the installations within that subset utilize once-through cooling water. The second subset includes 58 waste-to-energy facilities, which individually produce less than 80 MW but collectively generate about 2200 MW. Only 11% of this subset of plants uses once-through cooling water. The total 15,372 MW generated by once-through nonutilities is equivalent to only 6% of the 258,906 MW generated by utilities utilizing once-through cooling. From a national perspective this share may appear relatively insignificant. However, in some states, the nonutility once-through total is equivalent to a more significant percentage of the utility once-through total. 相似文献
98.
Skarpe C Aarrestad PA Andreassen HP Dhillion SS Dimakatso T du Toit JT Duncan Halley J Hytteborn H Makhabu S Mari M Marokane W Masunga G Ditshoswane M Moe SR Mojaphoko R Mosugelo D Motsumi S Neo-Mahupeleng G Ramotadima M Rutina L Sechele L Sejoe TB Stokke S Swenson JE Taolo C Vandewalle M Wegge P 《Ambio》2004,33(6):276-282
Northern Botswana and adjacent areas, have the world's largest population of African elephant (Loxodonta africana). However, a 100 years ago elephants were rare following excessive hunting. Simultaneously, ungulate populations were severely reduced by decease. The ecological effects of the reduction in large herbivores must have been substantial, but are little known. Today, however, ecosystem changes following the increase in elephant numbers cause considerable concern in Botswana. This was the background for the "BONIC" project, investigating the interactions between the increasing elephant population and other ecosystem components and processes. Results confirm that the ecosystem is changing following the increase in elephant and ungulate populations, and, presumably, developing towards a situation resembling that before the reduction of large herbivores. We see no ecological reasons to artificially change elephant numbers. There are, however, economic and social reasons to control elephants, and their range in northern Botswana may have to be artificially restricted. 相似文献
99.
Effects of engine speed and accessory load on idling emissions from heavy-duty diesel truck engines 总被引:1,自引:0,他引:1
Brodrick CJ Dwyer HA Farshchi M Harris DB King FG 《Journal of the Air & Waste Management Association (1995)》2002,52(9):1026-1031
A nontrivial portion of heavy-duty vehicle emissions of NOx and particulate matter (PM) occurs during idling. Regulators and the environmental community are interested in curtailing truck idling emissions, but current emissions models do not characterize them accurately, and little quantitative data exist to evaluate the relative effectiveness of various policies. The objectives of this study were to quantify the effect of accessory loading and engine speed on idling emissions from a properly functioning, modern, heavy-duty diesel truck and to compare these results with data from earlier model year vehicles. It was found that emissions during idling varied greatly as a function of engine model year, engine speed, and accessory load conditions. For the 1999 model year Class 8 truck tested, raising the engine speed from 600 to 1050 rpm and turning on the air conditioning resulted in a 2.5-fold increase in NOx emissions in grams per hour, a 2-fold increase in CO2 emissions, and a 5-fold increase in CO emissions while idling. On a grams per gallon fuel basis, NOx emissions while idling were approximately twice as high as those at 55 mph. The CO2 emissions at the two conditions were closer. The NOx emissions from the 1999 truck while idling with air conditioning running were slightly more than those of two 1990 model year trucks under equivalent conditions, and the hydrocarbon (HC) and CO emissions were significantly lower. It was found that the NOx emissions used in the California Air Resources Board's (CARB) EMFAC2000 and the U.S. Environmental Protection Agency's (EPA) MOBILE5b emissions inventory models were lower than those measured in all of the idling conditions tested on the 1999 truck. 相似文献
100.
Several methods were examined to minimize crops injury caused by herbicides. Thus increase their selectivity. A selective herbicide is one that controls weeds at rates that do not injure the crop. Herbicides are selective in a particular crop within certain limits imposed by the herbicide, the plant, the application rate, the method and time of application, and environment conditions. Herbicide safeners are compounds of diverse chemical families. They are applied with herbicides to protect crops against their injury. Using chemical safeners offer practical, efficient and simple method of improving herbicide selectivity. This method has been applied successfully in cereal crops such as maize, rice and sorghum, against pre-emergence thiocarbamate and chloroacetanilide herbicides. Some reports indicate promising results for the development of safeners for post-emergence herbicides in broadleaved crops. Various hypotheses were proposed explaining mechanisms of action of herbicide safeners: interference with uptake and translocation of the herbicide, alteration in herbicide metabolism, and competition at site of action of the herbicide. Even though progress was made in the development of herbicide safeners and in understanding their mechanisms of action, more research is needed to elucidate clearly how these chemicals act and why their activity is restricted to particular crops and herbicides. 相似文献