Mostra el registre d'ítem simple

dc.contributor.authorHigueras Higueras, Pablo Leon
dc.contributor.authorOyarzun, Roberto
dc.contributor.authorKotnik, Joze
dc.contributor.authorEsbri, José Maria
dc.contributor.authorMartínez-Coronado, A
dc.contributor.authorHorvat, M
dc.contributor.authorLópez-Berdonces, M.A.
dc.contributor.authorLlanos Lazcano, Willians
dc.contributor.authorVaselli, O.
dc.contributor.authorNisi, B.
dc.contributor.authorMashyanov, Nikolai
dc.contributor.authorRyzov, Vladimir
dc.contributor.authorSpiric, Z
dc.contributor.authorPanichev, Nikolai
dc.contributor.authorMcCrindle, R
dc.contributor.authorFenj, X.
dc.contributor.authorFu, X.
dc.contributor.authorLillo, J
dc.contributor.authorLoredo, José
dc.contributor.authorGarcía, María Eugenia
dc.contributor.authorAlfonso Abella, María Pura
dc.contributor.authorVillegas Flores, Karla Stephanie
dc.contributor.authorPalacios Ubach, Sílvia
dc.contributor.authorOyarzún, J
dc.contributor.authorMaturana, H.
dc.contributor.authorContreras, F.
dc.contributor.authorAdams, M.
dc.contributor.authorRibeiro-Guevara, S
dc.contributor.authorNiecenski, L.F.
dc.contributor.authorGiammanco, S
dc.contributor.authorHuremovic, J.
dc.contributor.otherUniversitat Politècnica de Catalunya. Departament d'Enginyeria Minera i Recursos Naturals
dc.date.accessioned2014-10-06T07:43:12Z
dc.date.created2014
dc.date.issued2014
dc.identifier.citationHigueras, P. [et al.]. A compilation of field surveys on gaseous elemental mercury (GEM) from contrasting environmental settings in Europe, South America, South Africa and China: separating fads from facts. "Environmental geochemistry and health", 2014, vol. 36, núm. 4, p. 713-734.
dc.identifier.issn0269-4042
dc.identifier.urihttp://hdl.handle.net/2117/24259
dc.description.abstractMercury is transported globally in the atmosphere mostly in gaseous elemental form (GEM, Hggas 0), but still few worldwide studies taking into account different and contrasted environmental settings are available in a single publication. This work presents and discusses data from Argentina, Bolivia, Bosnia and Herzegovina, Brazil, Chile, China, Croatia, Finland, Italy, Russia, South Africa, Spain, Slovenia and Venezuela. We classified the information in four groups: (1) mining districts where this contaminant poses or has posed a risk for human populations and/or ecosystems; (2) cities, where the concentration of atmospheric mercury could be higher than normal due to the burning of fossil fuels and industrial activities; (3) areas with natural emissions from volcanoes; and (4) pristine areas where no anthropogenic influence was apparent. All the surveys were performed using portable LUMEX RA-915 series atomic absorption spectrometers. The results for cities fall within a low GEM concentration range that rarely exceeds 30 ng m-3, that is, 6.6 times lower than the restrictive ATSDR threshold (200 ng m-3) for chronic exposure to this pollutant. We also observed this behavior in the former mercury mining districts, where few data were above 200 ng m-3. We noted that high concentrations of GEM are localized phenomena that fade away in short distances. However, this does not imply that they do not pose a risk for those working in close proximity to the source. This is the case of the artisanal gold miners that heat the Au-Hg amalgam to vaporize mercury. In this respect, while GEM can be truly regarded as a hazard, because of possible physical-chemical transformations into other species, it is only under these localized conditions, implying exposure to high GEM concentrations, which it becomes a direct risk for humans.
dc.format.extent22 p.
dc.language.isoeng
dc.subject.otherAtmospheric pollution
dc.subject.otherCities
dc.subject.otherGaseous elemental mercury
dc.subject.otherHazards
dc.subject.otherMining districts
dc.subject.otherPristine locations
dc.subject.otherRisks
dc.subject.otherVolcanos
dc.titleA compilation of field surveys on gaseous elemental mercury (GEM) from contrasting environmental settings in Europe, South America, South Africa and China: separating fads from facts
dc.typeArticle
dc.contributor.groupUniversitat Politècnica de Catalunya. ERNMA - Enginyeria dels Recursos Naturals i Medi Ambient
dc.identifier.doi10.1007/s10653-013-9591-2
dc.description.peerreviewedPeer Reviewed
dc.relation.publisherversionhttp://link.springer.com/article/10.1007%2Fs10653-013-9591-2#page-1
dc.rights.accessRestricted access - publisher's policy
local.identifier.drac15070090
dc.description.versionPostprint (published version)
dc.date.lift10000-01-01
local.citation.authorHigueras, P.; Oyarzun, R.; Kotnik, J.; Esbri, J.M.; Martínez-Coronado, A.; Horvat, M.; López-Berdonces, M.A.; Llanos, W.; Vaselli, O.; Nisi, B.; Mashyanov, N.; Ryzov, V.; Spiric, Z.; Panichev, N.; McCrindle, R.; Fenj, X.; Fu, X.; Lillo, J.; Loredo, J.; García, M.E.; Alfonso, P.; Villegas, K.; Palacios, S.; Oyarzún, J.; Maturana, H.; Contreras, F.; Adams, M.; Ribeiro-Guevara, S.; Niecenski, L.F.; Giammanco, S.; Huremovic, J.
local.citation.publicationNameEnvironmental geochemistry and health
local.citation.volume36
local.citation.number4
local.citation.startingPage713
local.citation.endingPage734


Fitxers d'aquest items

Imatge en miniatura

Aquest ítem apareix a les col·leccions següents

Mostra el registre d'ítem simple