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851.
Elevated mercury concentrations in water were reported in the prairie wetlands at Lostwood National Wildlife Refuge, ND. In order to determine whether wildlife associated with these wetlands was exposed to and then accumulated higher mercury concentrations than wildlife living near more permanent wetlands (e.g. lakes), tree swallow (Tachycineta bicolor) eggs and nestlings were collected from nests near seasonal wetlands, semi-permanent wetlands, and lakes. Mercury concentrations in eggs collected near seasonal wetlands were higher than those collected near semi-permanent wetlands or lakes. In contrast, mercury concentrations in nestling livers did not differ among wetland types. Mercury and other element concentrations in tree swallow eggs and nestlings collected from all wetlands were low. As suspected from these low concentrations, mercury concentrations in sample eggs were not a significant factor explaining the hatching success of the remaining eggs in each clutch.  相似文献   
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The relationship between fluoride-induced lesions, measured using an incremental scoring system, and fluoride concentration was investigated in the teeth of the field vole (Microtus agrestis). Both the magnitude of lesion score and the severity of observed lesions in both incisor and molar teeth was correlated with the respective tissue fluoride concentration. This relationship was observed not only in animals trapped from sites contaminated by industrial fluorides, but also those bred and maintained under laboratory conditions and consuming fluoride in either diet or drinking water. Although some variation occurred between field and laboratory animals as to the mean fluoride concentrations in the incisor or molar for each specific lesion score, this may result in part from differences in the nature of the assimilable fluoride in laboratory diets compared to those consumed by wild animals. The practical application of the relationship between dental lesion score and tissue fluoride concentration to monitoring environmental fluoride contamination is discussed. Because the incisor and molar teeth of the field voles are open-rooted and grow throughout life, they are sensitive to even minor temporal changes in fluoride concentration in tissue fluids and blood and, by inference, in the diet and the environment. Therefore, assessment of visual lesions in the dentition of wild-caught field voles may provide the basis of a scheme to monitor the magnitude and effects of environmental fluoride contamination on populations of wild and domestic mammals. The development of non-destructive methods to allow the repeated examination of the teeth of captured field voles, and hence the dynamic monitoring of environmental fluoride contamination, is also considered.  相似文献   
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Because of recent concerns about the health effects of ultrafine particles and the indication that particle toxicity is related to surface area, we have been examining techniques for measuring parameters related to the surface area of fine particles, especially in the 0.003- to 0.5-microm size range. In an earlier study, we suggested that the charge attached to particles, as measured by a prototype of the Electrical Aerosol Detector (EAD, TSI Inc., Model 3070), was related to the 1.16 power of the mobility diameter. An inspection of the pattern of particle deposition in the lung as a function of particle size suggested that the EAD measurement might be a useful indicator of the surface area of particles deposited in the lung. In this study, we calculate the particle surface area (micrometer squared) deposited in the lung per cubic centimeter of air inhaled as a function of particle size using atmospheric particle size distributions measured in Minneapolis, MN, and East St. Louis, IL. The correlations of powers of the mobility diameter, Dx, were highest for X = 1.1-1.6 for the deposited surface area and for X = 1.25 with the EAD signal. This overlap suggested a correspondence between the EAD signal and the deposited surface area. The correlation coefficients of the EAD signal and particle surface area deposited in the alveolar and tracheobronchial regions of the lung for three breathing patterns are in the range of Pearson's r = 0.91-0.95 (coefficient of determination, R2 = 0.82-0.90). These statistical relationships suggest that the EAD could serve as a useful indicator of particle surface area deposited in the lung in exposure and epidemiologic studies of the human health effects of atmospheric particles and as a measure of the potential surface area dose for the characterization of occupational environments.  相似文献   
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Dual-screened groundwater circulation wells (GCWs) can be used to remove contaminant mass and to mix reagents in situ. GCWs are so named because they force water in a circular pattern between injection and extraction screens. The radial extent, flux and direction of the effective flow of this circulation cell are difficult to measure or predict. The objective of this study is to develop a robust protocol for assessing GCW performance. To accomplish this, groundwater flow patterns surrounding a GCW are assessed using a suite of tools and data, including: hydraulic head, in situ flow velocity, measured hydraulic conductivity data from core samples, chemical tracer tests, contaminant distribution data, and numerical flow and transport models. The hydraulic head data show patterns that are consistent with pumping on a dual-screened well, however, many of the observed changes are smaller than expected. In situ thermal perturbation flow sensors successfully measured horizontal flow, but vertical flow could not be determined with sufficient accuracy to be useful in mapping flow patterns. Two types of chemical tracer tests were utilized at the site and showed that much of the flow occurs within a few meters of the GCW. Flow patterns were also assessed based on changes in contaminant (trichloroethylene, TCE) concentrations over time. The TCE data clearly showed treated water moving away from the GCW at shallow and intermediate depths, but the circulation of that water back to the well, except very close to the well, was less clear. Detailed vertical and horizontal hydraulic conductivities were measured on 0.3 m-long sections from a continuous core from the GCW installation borehole. The measured vertical and horizontal hydraulic conductivity data were used to construct numerical flow and transport models, the results of which were compared to the head, velocity and concentration data. Taken together, the field data and modeling present a fairly consistent picture of flow and transport around the GCW. However, the time and expense associated with conducting all of those tests would be prohibitive for most sites. As a consequence, a sequential protocol for GCW characterization is presented here in which the number of tools used can be adjusted to meet the needs of individual sites. While not perfect, we believe that this approach represents the most efficient means for evaluating GCW performance.  相似文献   
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This study updates and expands the empirical analysis of natural resource scarcity published in 1963 by Harold Barnett and Chandler Morse (“Scarcity and Growth: The Economics of Natural Resource Availability,” Johns Hopkins Press). Unit extraction costs are measured for all extractive products, four major subgroups (agriculture, minerals, forestry, and fishing), and selected individual commodities. The efficacy of the unit cost measure of resource scarcity is addressed and a critique of alternative scarcity indicators is provided. Unit cost appears to be the most practical scarcity index because there are adequate checks against its theoretical shortcomings and data are readily available which contain fewer deficiencies than other indexes. On the basis of the Barnett and Morse definition of relative scarcity, the empirical evidence does not support the need for public actions justified solely on the basis of increasing resource scarcity.  相似文献   
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