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1.
Jönsson AM 《Ambio》2011,40(2):121-132
Scientific complexity and uncertainty is a key challenge for environmental risk governance and to understand how risks are
framed and communicated is of utmost importance. The Baltic Sea ecosystem is stressed and exposed to different risks like
eutrophication, overfishing, and hazardous chemicals. Based on an analysis of the Swedish newspaper Dagens Nyheter, this study discusses media representations of these risks. The results show that the reporting on the Baltic Sea has been
fairly stable since the beginning of the 1990s. Many articles acknowledge several risks, but eutrophication receives the most
attention and is also considered the biggest threat. Authorities, experts, organizations, and politicians are the dominating
actors, while citizens and industry representatives are more or less invisible. Eutrophication is not framed in terms of uncertainty
concerning the risk and consequences, but rather in terms of main causes. 相似文献
2.
This article examines the views of scientists on intricacies of scientific knowledge that affect science–policy interface
in the Baltic Sea eutrophication governance in Finland. The analysis demonstrates that these intricacies can be divided into
five categories: (1) uncertainty of knowledge concerning ecological processes, (2) heterogeneity of knowledge, (3) societal
and political call for (certain) knowledge, (4) contingency of the knowledge that ends up taken as a baseline for decision
making and further research, and (5) linkages of knowledge production, processing, and communication to particular characteristics
of individual researchers and research societies. By explicating these aspects, this article illustrates the ways in which
scientific knowledge concerning eutrophication is human-bound and susceptible to interpretation, thus adding on to the uncertainty
of the Baltic Sea environmental governance. The aim is, then, to open up perspectives on how ambiguities related to science–policy
interface could be coped with. 相似文献
3.
Mackenzie BR Meier HE Lindegren M Neuenfeldt S Eero M Blenckner T Tomczak MT Niiranen S 《Ambio》2012,41(6):626-636
Understanding how climate change, exploitation and eutrophication will affect populations and ecosystems of the Baltic Sea can be facilitated with models which realistically combine these forcings into common frameworks. Here, we evaluate sensitivity of fish recruitment and population dynamics to past and future environmental forcings provided by three ocean-biogeochemical models of the Baltic Sea. Modeled temperature explained nearly as much variability in reproductive success of sprat (Sprattus sprattus; Clupeidae) as measured temperatures during 1973-2005, and both the spawner biomass and the temperature have influenced recruitment for at least 50 years. The three Baltic Sea models estimate relatively similar developments (increases) in biomass and fishery yield during twenty-first century climate change (ca. 28 % range among models). However, this uncertainty is exceeded by the one associated with the fish population model, and by the source of global climate data used by regional models. Knowledge of processes and biases could reduce these uncertainties. 相似文献
4.
The concentration and loading distribution of trace metals (Cu, Zn, Pb, Co, Ni, Cr, and Mn) and major elements (Al, Ca, Fe, and Mg) in different particle size fractions (2000-280, 280-100, 100-50, 50-10, 10-2, and <2 μm) of surface soils from highly urbanized areas in Hong Kong were studied. The enrichment of Pb, Cu, and Zn in the urban soils was strongly influenced by anthropogenic activities, and Pb accumulated in fine particles was mainly derived from past vehicular emissions as shown by Pb isotopic signatures. Trace metals primarily accumulated in clay, fine silt, and very fine sand fractions, and might pose potential health risks via the inhalation of resuspended soil particles in the air (PM10 or PM2.5), and ingestion of adhered soils through the hand-to-mouth pathway. The mobility, bioavailability, and human bioaccessibility of Pb and Zn in bulk soils correlated significantly with metal concentrations in fine silt and/or very fine sand fractions. 相似文献
5.
Verona Borges Ferreira Leonardo Fontes Estrella Marcelo Guzzon Rodrigues Alves Christoph Gallistl Walter Vetter Thadia Turon Costa Silva 《Journal of environmental science and health. Part. B》2020,55(1):30-41
AbstractOrganochlorine (OCP) pesticides were determined in samples of sardine (Sardinella brasiliensis), whitemouth croaker (Micropogonias furnieri), and mullet (Mugil liza) from Guanabara Bay (state of Rio de Janeiro, Brazil). OCP concentrations and fish consumption were linked with acceptable daily intake values in order to assess the human health risk for the Brazilian population. The total concentrations of OCPs (Σ OCP) was 6.6?ng/g f.w., 7.5?ng/g f.w., and 2.8?ng/g f.w. for sardines, corvina, and mullet, respectively. There was a significant difference (P?<?0.05) among the species related to o,p’-DDD and o,p’-DDT concentrations. Both DDT-related compounds were 5 and 76 times more abundant in sardines than in whitemouth croaker and mullet. Newly discovered DDT metabolite, o-Cl-DDMU, was frequently detected in the fish. None of the samples exceeded the maximum limits for acceptable levels of OCP residues. According to the data of average intake of Brazilian population, none of three species exceeded toxicological parameter. The investigated fishes are considered as safe for human consumption in regard to exposure of the studied OCPs. However, fish may be a intake source of OCP metabolites such as o-Cl-DDMU whose toxicity is still unknown. 相似文献