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Several submerged barges were recently removed from the Passaic River, New Jersey, USA, in two areas (areas 1 and 2) where
contaminated sediments are known to exist. During removal of the single barge in area 1, elevated turbidity levels and chemical
parameters were measured. Greater increases were measured in area 2, where several barges were removed. In both areas, water
column concentrations of polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/Fs) and several metals exceeded one or more water quality criteria; turbidity levels in area
2 also exceeded regulatory criteria. Potential chemical bioaccumulation from the water column into residential aquatic receptors
was estimated using standard models and assumptions. The modeled results predicted that steady-state tissue concentrations
of bioaccumulative chemicals would not occur as a result of the brief increase in water column concentrations that occurred
during barge removal but that metals and PCDD/Fs could bioaccumulate to levels that exceed regulatory ecological criteria
during long-term sediment disturbance activities. In addition, based on some simplistic assumptions regarding settling of
suspended sediments, we estimate that chemical bioaccumulation from surface sediments into the food web could result in substantial
increases in PCDD/F body burdens in the benthic forage fish, mummichog. Our findings are consistent with the limited number
of field studies that have measured increased body burdens of bioaccumulative chemicals following dredging. We suggest that,
prior to consideration of extensive dredging as a remedial alternative for any river system, the potential significant and
long-term impacts on the food web must be evaluated. 相似文献
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E. C. M. PARSONS A. ALONSO AGUIRRE AMY L. BAUER LOUISE K. BLIGHT JOHN A. CIGLIANO MELINDA A. COLEMAN ISABELLE M. CÔTÉ MEGAN DRAHEIM STEPHEN FLETCHER MELISSA M. FOLEY REBECCA JEFFERSON MIRANDA C. JONES BRENDAN P. KELAHER CAROLYN J. LUNDQUIST JULIE‐BETH MCCARTHY ANNE NELSON KATHERYN PATTERSON LESLIE WALSH ANDREW J. WRIGHT WILLIAM J. SUTHERLAND 《Conservation biology》2014,28(5):1206-1214
The ocean provides food, economic activity, and cultural value for a large proportion of humanity. Our knowledge of marine ecosystems lags behind that of terrestrial ecosystems, limiting effective protection of marine resources. We describe the outcome of 2 workshops in 2011 and 2012 to establish a list of important questions, which, if answered, would substantially improve our ability to conserve and manage the world's marine resources. Participants included individuals from academia, government, and nongovernment organizations with broad experience across disciplines, marine ecosystems, and countries that vary in levels of development. Contributors from the fields of science, conservation, industry, and government submitted questions to our workshops, which we distilled into a list of priority research questions. Through this process, we identified 71 key questions. We grouped these into 8 subject categories, each pertaining to a broad component of marine conservation: fisheries, climate change, other anthropogenic threats, ecosystems, marine citizenship, policy, societal and cultural considerations, and scientific enterprise. Our questions address many issues that are specific to marine conservation, and will serve as a road map to funders and researchers to develop programs that can greatly benefit marine conservation. Setenta y Un Preguntas Importantes para la Conservación de la Biodiversidad Marina 相似文献
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Fencerows, Edges, and Implications of Changing Connectivity Illustrated by Two Contiguous Ohio Landscapes 总被引:3,自引:0,他引:3
MICHAEL N. DEMERS JOHN W. SIMPSON RALPH E. J. BOERNER ALEJANDRA SILVA LESLIE BERNS FRANCISCO ARTIGAS 《Conservation biology》1995,9(5):1159-1168
We evaluated the amounts and implications of changes in habitat connectivity on rural landscapes by modeling the colonization success and subsequent habitat colonization of a model edge organism within real landscapes. We first inventoried the changes in the fencerow and forest-edge network of two contiguous Ohio (U.S.A.) landscapes, an agriculturally dominated till plain and a more diverse and dynamic moraine landscape, from 1940 to 1988. On the moraine the number of fencerows changed little from 1940 to 1971. The number increased by 86 during 1971–1988 as marginal farms were subdivided. The total length of fencerows on the moraine increased 2.5-fold over 48 years. On the till plain the number and total length of fencerows remained relatively constant through the study period. The sum of fencerows and forest edges was used as a measure of total ecotonal edge. On the moraine total edge increased through the study period, whereas on the till plain it decreased. We selected two levels of landscape connectivity, low and high, to model animal habitat colonization success. As connectivity increased the earliest successful colonists preempted an increasingly large proportion of the total suitable habitat, and the probability of successful colonization by later-arriving individuals decreased. The changes in connectivity that resulted from changes in both the fencerow network and the proportion of forested land have resulted in contiguous landscapes that present very different colonization potentials to organisms with long-distance dispersal capability. Given the current uncertainty of the effects of corridors on species-preservation efforts, we suggest that further modeling of this type prior to field testing will add useful insights, especially if conducted using specific species and landscape types. 相似文献
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A pH/UV-B Synergism in Amphibians 总被引:4,自引:0,他引:4
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ROBERT N. LEHMAN KAREN STEENHOF MICHAEL N. KOCHERT LESLIE B. CARPENTER 《Environmental management》1999,23(3):409-417
Buteo regalis ), northern harriers (Circus cyaneus), burrowing owls (Athene cunicularia), and short-eared owls (Asio flammeus) inside and outside a military training site in the Snake River Birds of Prey National Conservation Area, southwestern Idaho.
The Orchard Training Area is used primarily for armored vehicle training and artillery firing by the Idaho Army National Guard.
Relative abundance of nesting pairs inside and outside the training site was not significantly different from 1991 to 1993
but was significantly higher on the training site in 1994 (P ≤ 0.03). Nesting success varied among years but was not significantly different inside and outside the training site (P > 0.26). In 1994, short-eared owl and burrowing owl nests were significantly closer to firing ranges used early in the spring
before owls laid eggs than were random points (P < 0.001). In 1993, distances from occupied burrowing owl nests to firing ranges used early in the year were similar to those
from random points to the same firing ranges (P = 0.16). Military activity contributed to some nesting failures from 1992 to 1994, but some pairs nested successfully near
military activity. 相似文献
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JOEL BERGER STEVEN L. CAIN ELLEN CHENG PETER DRATCH KEVIN ELLISON JOHN FRANCIS HERBERT C. FROST SCOTT GENDE CRAIG GROVES WILLIAM A. KARESH ELAINE LESLIE GARY MACHLIS RODRIGO A. MEDELLIN REED F. NOSS KENT H. REDFORD MICHAEL SOUKUP DAVID WILCOVE STEVE ZACK 《Conservation biology》2014,28(1):4-12
Public agencies sometimes seek outside guidance when capacity to achieve their mission is limited. Through a cooperative agreement and collaborations with the U.S. National Park Service (NPS), we developed recommendations for a conservation program for migratory species. Although NPS manages ~36 million hectares of land and water in 401 units, there is no centralized program to conserve wild animals reliant on NPS units that also migrate hundreds to thousands of kilometers beyond parks. Migrations are imperiled by habitat destruction, unsustainable harvest, climate change, and other impediments. A successful program to counter these challenges requires public support, national and international outreach, and flourishing migrant populations. We recommended two initial steps. First, in the short term, launch or build on a suite of projects for high‐profile migratory species that can serve as proof to demonstrate the centrality of NPS units to conservation at different scales. Second, over the longer term, build new capacity to conserve migratory species. Capacity building will entail increasing the limited knowledge among park staff about how and where species or populations migrate, conditions that enable migration, and identifying species’ needs and resolving them both within and beyond parks. Building capacity will also require ensuring that park superintendents and staff at all levels support conservation beyond statutory borders. Until additional diverse stakeholders and a broader American public realize what can be lost and do more to protect it and engage more with land management agencies to implement actions that facilitate conservation, long distance migrations are increasingly likely to become phenomena of the past. Optimismo y Retos para la Conservación Científicamente Basada de Especies Migratorias Dentro y Fuera de Parques Nacionales de E.U.A. 相似文献
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