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311.
312.
David L. Nieland Charles A. Wilson John W. Fleecer Bin Sun Ronald F. Malone Shulin Chen 《Chemistry and Ecology》1998,14(3):305-319
Phosphogypsum (PG), a solid by-product of phosphoric acid production, contains radionuclides and trace metals in concentrations which may pose a potential hazard to human health and the environment. to investigate the possibility of bioaccumulation of radium and six heavy metals over time when aquatic organisms experience both trophic and environmental exposure to PG, we designed a laboratory experiment representing three levels of an aquatic food chain. During the 135 day experiment, a meiobenthic copepod species (Amphiascoides atopus) was cultured in the presence of PG. the copepods were subsequently fed to grass shrimp (Palaemonetes vulgaris and P. pugio) which were in turn fed to gulf killifish (Fundulus grandis); both the grass shrimp and the killifish also experienced an environmental PG exposure. Other than elevated radium levels in the experimental grass shrimp, the experiment demonstrated little effect of environmental or trophic exposure to PG on microinvertebrates, macroinvertebrates, or fishes that could be attributed to PG. in all cases where increased concentrations were indicated within the experimental group, roughly equivalent increases in metal concentrations also occurred in the control group. 相似文献
313.
Charles A. Wilson David L. Nieland John W. Fleecer Antonio Todaro Ronald F. Malone Kelly A. Rusch 《Chemistry and Ecology》1998,14(3):321-340
The effects of cement consolidated phosphogypsum (PG) on marine organisms was investigated under natural conditions in four 1000 m2 estuarine ponds. Two ponds were seeded with 160 kg of PG arranged in aggregations of blocks and two ponds received similar mass of sand/cement blocks. Meiofauna were sampled quarterly and PG did not affect total meiofauna or major taxa (nematodes and copepods) density. Abundant species of copepods either were slightly increased in ponds with PG or were inconsistently affected.
All ponds were drained after one year. Three species of macroinvertebrates and 15 species of fishes were collected. Diversity indices showed modest but inconsistent variation among ponds. Only Pond 1 (control) and Pond 4 (experimental) had similar species abundances and all ponds showed unique distributions of biomasses among species. Thus, no differences in community structure attributable to the presence of PG could be detected among benthic invertebrates, natant invertebrates, or fishes. 相似文献
All ponds were drained after one year. Three species of macroinvertebrates and 15 species of fishes were collected. Diversity indices showed modest but inconsistent variation among ponds. Only Pond 1 (control) and Pond 4 (experimental) had similar species abundances and all ponds showed unique distributions of biomasses among species. Thus, no differences in community structure attributable to the presence of PG could be detected among benthic invertebrates, natant invertebrates, or fishes. 相似文献
314.
315.
The use of high-frequency acoustics has recently emerged as a viable method for mapping the areal coverage of seagrasses. Since the bubbles produced by seagrass plants are partly responsible for the observed acoustic signature, it is likely that sound transmission throughout a seagrass canopy varies on circadian cycles coinciding with photosynthetic bubble production. This study examined the propagation of high-frequency (100 kHz) sound energy through the seagrass canopies of Syringodium filiforme, Halodule wrightii and Thalassia testudinum in a shallow outdoor mesocosm. Relative changes in the received acoustic energy were recorded every hour during a 24-h period and compared to independently measured rates of oxygen production. The mean acoustic intensity of energy transmitted throughout the seagrass canopy varied by 3.5 dB for S. filiforme, 4.4 dB for T. testudinum and 4.7 dB for H. wrightii over a 24-h period. These transmission characteristics are encouraging for the future development of in situ acoustic assessments of seagrass photosynthesis. 相似文献
316.
Understanding global sea levels: past, present and future 总被引:4,自引:0,他引:4
John A. Church Neil J. White Thorkild Aarup W. Stanley Wilson Philip L. Woodworth Catia M. Domingues John R. Hunter Kurt Lambeck 《Sustainability Science》2008,3(1):9-22
The coastal zone has changed profoundly during the 20th century and, as a result, society is becoming increasingly vulnerable
to the impact of sea-level rise and variability. This demands improved understanding to facilitate appropriate planning to
minimise potential losses. With this in mind, the World Climate Research Programme organised a workshop (held in June 2006)
to document current understanding and to identify research and observations required to reduce current uncertainties associated
with sea-level rise and variability. While sea levels have varied by over 120 m during glacial/interglacial cycles, there
has been little net rise over the past several millennia until the 19th century and early 20th century, when geological and
tide-gauge data indicate an increase in the rate of sea-level rise. Recent satellite-altimeter data and tide-gauge data have
indicated that sea levels are now rising at over 3 mm year−1. The major contributions to 20th and 21st century sea-level rise are thought to be a result of ocean thermal expansion and
the melting of glaciers and ice caps. Ice sheets are thought to have been a minor contributor to 20th century sea-level rise,
but are potentially the largest contributor in the longer term. Sea levels are currently rising at the upper limit of the
projections of the Third Assessment Report of the Intergovernmental Panel on Climate Change (TAR IPCC), and there is increasing
concern of potentially large ice-sheet contributions during the 21st century and beyond, particularly if greenhouse gas emissions
continue unabated. A suite of ongoing satellite and in situ observational activities need to be sustained and new activities
supported. To the extent that we are able to sustain these observations, research programmes utilising the resulting data
should be able to significantly improve our understanding and narrow projections of future sea-level rise and variability. 相似文献
317.
John Eyles Kathi Wilson Lisa Mu Sue Keller-Olaman Susan Elliott 《Local Environment》2013,18(10):981-998
This study examines lay perceptions of the environment and its perceived relation to health at three scales: the environment at large, the neighbourhood, and the home. Interviews were conducted with residents from two contrasting neighbourhoods in the industrial city of Hamilton, Canada. The results reveal variations in perceptions of the environment–health link between residents in the two study neighbourhoods as well as across the different scales. Air pollution and proximity to industry were frequently implicated in lay understandings of the general and neighbourhood environments. In contrast, the home environment was seen as relatively insulated and safe. Furthermore, personal control mechanisms (e.g. cleanliness) were believed to mitigate adverse health impacts in the home and yard while the general environment was seen to be outside of such control. The significance of the findings is discussed in terms of future research and policy relevance. 相似文献
318.
Van Opstal Natalia Verónica Seehaus Mariela Soledad Gabioud Emmanuel Adrian Wilson Marcelo German Galizzi Flavio José Pighini Ramiro Joaquin Repetti Maria Rosa Regaldo Luciana María Gagneten Ana María Sasal María Carolina 《Environmental science and pollution research international》2022,29(38):57395-57411
Environmental Science and Pollution Research - Land use changes have led to the degradation of multiple ecosystem services and affected the quality of aquatic ecosystems. The aims of this study... 相似文献
319.
Wilson WE Grover BD Long RW Eatough NL Eatough DJ 《Journal of the Air & Waste Management Association (1995)》2006,56(4):384-397
Ammonium nitrate and semivolatile organic material (SVOM) are significant components of fine particles in urban atmospheres. These components, however, are not properly determined with methods such as the fine particulate matter (PM2.5) Federal Reference Method (FRM) or other single filter samplers because of significant losses of semivolatile material (SVM) from particles collected on the filter during sampling. The R&P tapered element oscillating microbalance (TEOM) monitor also does not measure SVM, because this method heats the sample to remove particle bound water, which also results in evaporation of SVM. Recent advances in monitoring techniques have resulted in samplers for both integrated and continuous measurement of total PM2.5, including the particle concentrator-Brigham Young University organic sampling system (PC-BOSS), the real-time total ambient mass sampler (RAMS), and the R&P filter dynamics measurement system (FDMS) TEOM monitor. Results obtained using these samplers have been compared with those obtained with either a PM2.5 FRM sampler or a TEOM monitor in studies conducted during the past five years. These studies have shown the following: (1) the PC-BOSS, RAMS, and FDMS TEOM are all comparable. Each instrument measures both the nonvolatile material and the SVM. (2) The SVM is not retained on the heated filter of a regular TEOM monitor and is not measured by this sampling technique. (3) Much of the SVM is also lost during sampling from single filter samplers such as the PM2.5 FRM sampler. (4) The amount of SVM lost from single filter samplers can vary from less than one-third of that lost from heated TEOM filters during cold winter conditions to essentially all during warm summer conditions. (5) SVOM can only be reliably collected using an appropriate denuder sampler. (6) A PM2.5 speciation sampler can be easily modified to a denuder sampler with filters that can be analyzed for semivolatile organic carbon (OC), nonvolatile OC, and elemental carbon using existing OC/elemental carbon analytical techniques. The research upon which these statements are based for various urban studies are summarized in this paper. 相似文献
320.