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241.
Miller AL Drake PL Murphy NC Noll JD Volkwein JC 《Journal of environmental monitoring : JEM》2012,14(1):48-55
Miners face a variety of respiratory hazards while on the job, including exposure to silica dust which can lead to silicosis, a potentially fatal lung disease. Currently, field-collected filter samples of silica are sent for laboratory analysis and the results take weeks to be reported. Since the mining workplace is constantly moving into new and often different geological strata with changing silica levels, more timely data on silica levels in mining workplaces could help reduce exposures. Improvements in infrared (IR) spectroscopy open the prospect for end-of-shift silica measurements at mine sites. Two field-portable IR spectrometers were evaluated for their ability to quantify the mass of silica on filter samples loaded with known amounts of either silica or silica-bearing coal dust (silica content ranging from 10-200 μg/filter). Analyses included a scheme to correct for the presence of kaolin, which is a confounder for IR analysis of silica. IR measurements of the samples were compared to parallel measurements derived using the laboratory-based U.S. Mine Safety and Health Administration P7 analytical method. Linear correlations between Fourier transform infrared (FTIR) and P7 data yielded slopes in the range of 0.90-0.97 with minimal bias. Data from a variable filter array spectrometer did not correlate as well, mainly due to poor wavelength resolution compared to the FTIR instrument. This work has shown that FTIR spectrometry has the potential to reasonably estimate the silica exposure of miners if employed in an end-of-shift method. 相似文献
242.
Núria Roura-Pascual David M. Richardson R. Arthur Chapman Tanja Hichert Rainer M. Krug 《Regional Environmental Change》2011,11(2):311-320
Invasive species alter the functioning of natural ecosystems, creating “novel ecosystems” comprising species occurring in
combinations with no analogs within a given biome. This poses major challenges for managers who cannot rely exclusively on
previous experiences. Multiple factors that drive invasion and which interact in complex ways demand innovative management
approaches. We show the utility of scenario planning in considering options for management in a region with substantial problems
with invasive alien plants: South Africa’s Cape Floristic Region. The approach allows us to identify the driving forces that
shape the status and trajectories of major woody invasive plants and to identify sensible strategies by considering a set
of scenarios based on the main uncertainties that encapsulate the linkages between the various components of the management
of biological invasions. Attitudes of landowners and management capacity are shown to be the crucial uncertainties influencing
the spread of major invasive species; axes based on these factors define our scenarios. Mapping current management projects
onto scenario axes highlighted key differences among areas. These insights can assist in directing particular management units
toward more desirable futures. Our study highlights the need to link social, political and legal constraints with ecological
processes to assure the effectiveness of management operations in controlling biological invasions. 相似文献
243.
Tröbs L Henkelmann B Lenoir D Reischl A Schramm KW 《Environmental science and pollution research international》2011,18(4):547-555
Background, aim, and scope
3-Chlorocarbazole and 3,6-dichlorocarbazole were isolated from Bavarian soils. The stereospecific formation of the isomers of these chlorinated carbazols can be explained by quantum mechanical calculations using the DFT method. It was shown that chlorination of carbazole and 3-chlorocarbazole respectively is preferred via the sigma-complexes 3-chlorocarbazole and 3,6-dichlorocarbazole as the most stable products. The dioxin-like toxicological potential of 3,6-dichlorocarbazole, determined by the Micro-EROD Test, is in the range of some picogram TCDD equivalents per milligram carbazole. The degradative fate of 3-chlorocarbazole and 3,6-dichlorocarbazole was analysed within a long-term study (57 days) in soil. 相似文献244.
Alison H. Purcell David W. Bressler Michael J. Paul Michael T. Barbour Ed T. Rankin James L. Carter Vincent H. Resh 《Journal of the American Water Resources Association》2009,45(2):306-319
Abstract: Biological indicators, particularly benthic macroinvertebrates, are widely used and effective measures of the impact of urbanization on stream ecosystems. A multimetric biological index of urbanization was developed using a large benthic macroinvertebrate dataset (n = 1,835) from the Baltimore, Maryland, metropolitan area and then validated with datasets from Cleveland, Ohio (n = 79); San Jose, California (n = 85); and a different subset of the Baltimore data (n = 85). The biological metrics used to develop the multimetric index were selected using several criteria and were required to represent ecological attributes of macroinvertebrate assemblages including taxonomic composition and richness (number of taxa in the insect orders of Ephemeroptera, Plecoptera, and Trichoptera), functional feeding group (number of taxa designated as filterers), and habit (percent of individuals which cling to the substrate). Quantile regression was used to select metrics and characterize the relationship between the final biological index and an urban gradient (composed of population density, road density, and urban land use). Although more complex biological indices exist, this simplified multimetric index showed a consistent relationship between biological indicators and urban conditions (as measured by quantile regression) in three climatic regions of the United States and can serve as an assessment tool for environmental managers to prioritize urban stream sites for restoration and protection. 相似文献
245.
Jessica Y.W. Cheng Chak K. Chan C.-T. Lee Arthur P.S. Lau 《Atmospheric environment (Oxford, England : 1994)》2009,43(17):2781-2787
Interest in the role and contribution of fungi to atmospheric aerosols and processes grows in the past decade. Substantial data or information such as fungal mass or carbon loading to ambient aerosols is however still lacking. This study aimed to quantify the specific organic carbon content (OC per spore) of eleven fungal species commonly found airborne in the subtropics, and estimated their contribution to organic carbon in aerosols. The specific OC contents showed a size-dependent relationship (r = 0.64, p < 0.05) and ranged from 3.6 to 201.0 pg carbon per spore or yeast cell, giving an average of 6.0 pg carbon per spore (RSD 51%) for spore or cell size less than 10 μm. In accounting for natural variations in the composition and abundance of fungal population, weighted-average carbon content for field samples was adopted using the laboratory determined specific OC values. An average of 5.97 pg carbon per spore (RSD 3.8%) was enumerated from 28 field samples collected at the university campus. The mean fungal OC concentration was 3.7, 6.0 and 9.7 ng m?3 in PM2.5, PM2.5–10 and PM10, respectively. These corresponded to 0.1%, 1.2% and 0.2% of the total OC in PM2.5, PM2.5–10 and PM10, respectively. In the study period, rain provided periods with low total OC but high fungal prevalence and fungi contributed 7–32% OC in PM2.5–10 or 2.4–7.1% OC in PM10. More extensive studies are deserved to better understand the spatial-, temporal- and episodic dependency on the fungal OC contribution to the atmospheric aerosols. 相似文献
246.
Kathleen H. Kozawa Scott A. Fruin Arthur M. Winer 《Atmospheric environment (Oxford, England : 1994)》2009,43(18):2960-2970
A mobile platform was outfitted with real-time instruments to spatially characterize pollution concentrations in communities adjacent to the Ports of Los Angeles and Long Beach, communities heavily impacted by emissions related to dieselized goods movement, with the highest localized air pollution impacts due to heavy-duty diesel trucks (HDDT). Measurements were conducted in the winter and summer of 2007 on fixed routes driven both morning and afternoon. Diesel-related pollutant concentrations such as black carbon, nitric oxide, ultrafine particles, and particle-bound polycyclic aromatic hydrocarbons were frequently elevated two to five times within 150 m downwind of freeways (compared to more than 150 m) and up to two times within 150 m downwind of arterial roads with significant amounts of diesel traffic. While wind direction was the dominant factor associated with downwind impacts, steady and consistent wind direction was not required to produce; high impacts were observed when a given area was downwind of a major roadway for any significant fraction of time. This suggests elevated pollution impacts downwind of freeways and of busy arterials are continuously occurring on one side of the road or the other, depending on wind direction. The diesel truck traffic in the area studied was high, with more than 2000 trucks per peak hour on the freeway and two- to six-hundred trucks per hour on the arterial roads studied. These results suggest that similarly-frequent impacts occur throughout urban areas in rough proportion to diesel truck traffic fractions. Thus, persons living or working near and downwind of busy roadways can have several-fold higher exposures to diesel vehicle-related pollution than would be predicted by ambient measurements in non-impacted locations. 相似文献
247.
248.
249.
Peter Loquercio P.E. Arthur R. Dammkoehler P.E. Robert Goldberg 《Journal of the Air & Waste Management Association (1995)》2013,63(3):168-171
Two applications of the newly devised process evaluation criterion are described: (7) the transformation of process data concerning the air pollution sources into machine language so that it may be correlated with Chicago’s Emission Inventory; and, (2) the application of its principles to the administration of the permit system. This criterion for the evaluation of process activity is completely different from any other method used throughout the country. Examples of its application are given. 相似文献
250.