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951.
952.
Allocating Remedial Costs at Superfund Sites with Commingled Groundwater Contaminant Plumes 总被引:1,自引:0,他引:1
Robert A. Marryott Gabriel P. Sabadell David P. Ahlfeld Robert H. Harris George F. Pinder 《Environmental Forensics》2013,14(1):47-54
Remedial efforts at Superfund sites across the country focus on groundwater contaminant plumes that have been produced by contributions from multiple parties. Allocating cleanup costs between the parties in a fair and equitable manner can be a problem of substantial complexity. Considerable time and money may be spent determining the amount of contamination attributable to each party in order to apportion liability. Contaminant plumes that have evolved over long periods of time may affect large volumes of groundwater and require extensive remediation. Pump and treat remedial costs are driven by both the volume of water extracted and the mass of contaminants removed. Allocation methods based solely on the mass of contaminants contributed by each party are inadequate in this setting since they do not account for both components of the remedial costs. This paper presents an approach for equitably allocating remedial costs when addressing overlapping or commingled groundwater plumes. The method accounts for the major elements driving the costs of remediating dispersed contaminant plumes. 相似文献
953.
954.
George Kriek Nelson Lazear Verne Rhodes Joe Barnes John Bollmeier Jane Chen Chuang 《Journal of the Air & Waste Management Association (1995)》2013,63(7):1001-1008
ABSTRACT Emission factors for selected volatile organic compounds (VOCs) and particulate material were developed during processing of commercial grades of polyamide 6, polyamide 66, and polyamide 66/6 resins. A small commercial-type extruder was used, and melt temperatures ranged from 475 to 550 °F. An emission factor was calculated for each substance measured and is reported as pounds released to the atmosphere per million pounds of polymer resin processed. Scaled to production volumes, these emission factors can be used by processors to estimate emission quantities from similar polyamide extrusion operations. 相似文献
955.
George M. Hidy Bruce R. Appel Robert J. Charlson William E. Clark Sheldon K. Friedlander Dale H. Hutchison 《Journal of the Air & Waste Management Association (1995)》2013,63(11):1106-1114
This report gives a brief summary of the experimental plan and the early results of field observations from the California Aerosol Characterization Experiment (ACHEX). The objectives of the program center on questions of the sources and evolution of aerosols in urban air, as they are superimposed on a natural background, particularly as they relate to visibilitydegradation. The project initially nvolved the use of an elaborately instrumented mobile laboratory combined with a fixed station in San Jose, in Pasadena, and in Riverside, and later incorporated several satellite monitoring stations in the Los Angeles Basin. Intensive field observationswere taken from July 1972 to November 1972 in several urban and nonurban locations between the San Francisco Bay area and the South Coast Basin, covering the Los Angeles area. In a second phase of the ACHEX, aerosols accompanying photochemical smog were studied intensively in the Los Angeles Basin during the period between July and October of 1973. The observations cover a wide variety of parameters including physical and chemical properties of aerosols, pollutant gas concentrations, and meteorological variables. The initial results show the great importance of sulfate, nitrate, noncarbonate carbon, and liquid water to the mass concentration of airborne particles and their relation to reduction in visibility. The anthropogenic contribution to atmospheric aerosols is consistently found to be allocated primarily to the submicron or fine particle size range. 相似文献
956.
In many temperate estuarine areas, ongoing climatic changes are expected to lead to higher seawater temperatures, to increased inflow of freshwater and nutrients (due to increased rainfall) and to altered light conditions. During the last two decades, several winters have been unusually mild in southern Finland, and the subsequent springs have been early. This may have consequences for the seasonality of many species, including the bladder-wrack, Fucus vesiculosus, whose reproductive cycle may be especially sensitive. In the present study, F. vesiculosus receptacles from the field were weighed regularly during three warm (early) springs and compared with receptacles from three cold (late) springs. On average, the first sign of receptacle growth in the field occurred 5–6?weeks earlier and receptacles probably matured 2–3?weeks earlier during the warm springs than during the cold springs. This may be due to differences in seawater temperatures among years, but significantly heavier receptacles at 0.8?m compared to at 3.1?m further suggests the importance of light for receptacle growth as a measure of maturation, since there were no depth-related differences in seawater temperatures. Also, when plotting receptacle wet weights against seawater temperatures, the importance of light can be seen as different regression relationships (slopes and intercepts). In an outdoor aquarium experiment, the effects of temperature and light on receptacle growth were also tested, and there were significant differences between shallow and deep specimens, but temperature and light had no effects, except on initial receptacle growth. Since oogonian development, and thereby the time for zygote release, followed the receptacle growth curve, this could mean a mismatch between the timing of F. vesiculosus zygote settlement and the cover of competing filamentous algae, but such species interactions require further investigations in order to better understand their possible consequences. 相似文献
957.
Robert M. Zink § George F. Barrowclough † Jonathan L. Atwood ‡ and Rachelle C. Blackwell-Rago 《Conservation biology》2000,14(5):1394-1405
Abstract: The California Gnatcatcher ( Polioptila californica ) has become a flagship species in the dispute over development of southern California's unique coastal sage scrub habitat, a fragile, geographically restricted ecosystem with high endemism. One aspect of the controversy concerns the status of the subspecies of this bird in southern California coastal sage scrub that is currently listed as threatened under the U.S. Endangered Species Act. To investigate the recent population history of this species and the genetic distinctiveness of subspecies and to inform conservation planning, we used direct sequencing of mitochondrial DNA (mtDNA) for 64 individuals from 13 samples taken throughout the species' range. We found that coastal sage scrub populations of California Gnatcatchers are not genetically distinct from populations in Baja California, which are dense and continuously distributed throughout the peninsula. Rather, mtDNA sequences from this species contain the signatures of population growth and support a hypothesis of recent expansion of populations from a southern Baja California refugium northward into the southern coastal regions of California. During this expansion, stochastic events led to a reduction in genetic variation in the newly occupied range. Thus, preservation of coastal sage scrub cannot be linked to maintaining the genetic diversity of northern gnatcatcher populations, despite previous recognition of subspecies. Our study suggests that not all currently recognized subspecies are equivalent to evolutionarily significant units and illustrates the danger of focusing conservation efforts for threatened habitats on a single species. 相似文献
958.
Guangxing Wang George Gertner Alan Anderson Heidi Howard 《Environmental management》2009,44(4):810-823
The land management of US Army installations requires information on land conditions and their history for planning future
military training activities and allocation of land repair. There is thus a strong need for methodology development to estimate
the land conditions and cumulative military training impacts for the purpose of repair and restoration. In this study, we
simulated at Fort Riley, USA, spatial patterns and temporal dynamics of military training impacts on land conditions quantified
as percent ground cover using an image-aided spatial conditional co-simulation algorithm. Moreover, we estimated the historical
percent ground cover as a measure of the cumulative impacts, and then calculated the allocation of land repair and restoration
based on both current and historical land conditions. In addition, we developed a loss function method for allocation of land
repair and restoration. The results showed: (1) this co-simulation algorithm reproduced spatial and temporal variability of
percent ground cover and provided estimates of uncertainties with the correlation coefficients and root mean square errors
between the simulated and observed values varying from 0.63 to 0.88 and from 23% to 78%, respectively; (2) with and without
the cumulative impacts, the obtained spatial patterns of the land repair categories were similar, but their land areas differed
by 5% to 40% in some years; (3) the combination of the loss function with the co-simulation made it possible to estimate and
computationally propagate the uncertainties of land conditions into the uncertainties of expected cost loss for misallocation
of land repair and restoration; and (4) the loss function, physical threshold, and probability threshold methods led to similar
spatial patterns and temporal dynamics of the land repair categories, however, the loss function increased the land area by
5% to 30% for intense and moderate repairs and decreased the area by 5% to 30% for no repairs and light repairs for most of
the years. This approach provided the potential to improve and automate the existing land rehabilitation and maintenance (LRAM)
system used for the land management of the U.S. Army installations, and it can be applied to the management of other civil
lands and environments. In conclusion, this study overcame the important gaps that exist in the methodological development
and application for simulating land conditions and cumulative impacts due to human activities, and also in the methods for
the allocation of land for repair and restoration. 相似文献
959.
960.
Metal oxide nanomaterials have exhibited toxicity to a variety of aquatic organisms, especially microbes and invertebrates. To date, few studies have evaluated the toxicity of metal oxide nanomaterials on aquatic vertebrates. Therefore, this study examined effects of ZnO, TiO2, Fe2O3, and CuO nanomaterials (20-100 nm) on amphibians utilizing the Frog Embryo Teratogenesis Assay Xenopus (FETAX) protocol, a 96 h exposure with daily solution exchanges. Nanomaterials were dispersed in reconstituted moderately hard test medium. These exposures did not increase mortality in static renewal exposures containing up to 1000 mg L−1 for TiO2, Fe2O3, CuO, and ZnO, but did induce developmental abnormalities. Gastrointestinal, spinal, and other abnormalities were observed in CuO and ZnO nanomaterial exposures at concentrations as low as 3.16 mg L−1 (ZnO). An EC50 of 10.3 mg L−1 ZnO was observed for total malformations. The minimum concentration to inhibit growth of tadpoles exposed to CuO or ZnO nanomaterials was 10 mg L−1. The results indicate that select nanomaterials can negatively affect amphibians during development. Evaluation of nanomaterial exposure on vertebrate organisms are imperative to responsible production and introduction of nanomaterials in everyday products to ensure human and environmental safety. 相似文献