Atmospheric and terrigenous metal accumulation over 3000 years in a French mountain catchment: Local vs distal influences
Tài liệu tham khảo
Appleby, 2002, Chronostratigraphic techniques in recent sediments. In tracking environmental change using lake sediments, 171, 10.1007/0-306-47669-X_9
Bacardit, 2010, Modelling Pb, Zn and As transfer from terrestrial to aquatic ecosystems during the ice-free season in three Pyrenean catchments, Sci. Total Environ., 408, 5854, 10.1016/j.scitotenv.2010.07.088
Bacardit, 2012, Whole-catchment inventories of trace metals in soils and sediments in mountain lake catchments in the Central Pyrenees: apportioning the anthropogenic and natural contributions, Geochim. Cosmochim. Acta, 82, 52, 10.1016/j.gca.2010.10.030
Bindler, 2004, Does within-bog spatial variability of mercury and lead constrain reconstructions of absolute deposition rates from single peat records? The example of Store Mosse, Sweden.G lob, Biogeochem. Cycles, 18, GB3020, 10.1029/2004GB002270
Bindler, 2011, Early medieval origins of iron mining and settlement in central Sweden: multiproxy analysis of sediment and peat records from the Norberg mining district, J. Archaeolog. Sci., 38, 291, 10.1016/j.jas.2010.09.004
Binford, 1990, Calculation and uncertainty analysis of 210Pb dates for PIRLA project lake sediment cores, J. Paleolimnol., 3, 253, 10.1007/BF00219461
Blaauw, 2010, Methods and code for classical age-modelling of radiocarbon sequences, Quat. Geochronol, 5, 512, 10.1016/j.quageo.2010.01.002
Bollhöfer, 2001, Lead isotopic ratios in European atmospheric aerosols, Phys. Chem. Earth Part B Hydrol. Oceans Atmos., 26, 835, 10.1016/S1464-1909(01)00094-6
Brännvall, 1999, The medieval metal industry was the cradle of modern large-Scale atmospheric lead pollution in northern europe, Environ. Sci. Technol., 33, 4391, 10.1021/es990279n
Camarero, 1998, Historical variations in lead fluxes in the pyrenees (Northeast Spain) from a dated lake sediment core, Water Air Soil Pollut., 105, 439, 10.1023/A:1005005625972
Camizuli, 2014, Impact of trace metals from past mining on the aquatic ecosystem: a multi-proxy approach in the Morvan (France), Environ. Res., 134, 410, 10.1016/j.envres.2014.07.008
Carignan, 1995, Isotopic composition of epiphytic lichens as a tracer of the sources of atmospheric lead emissions in southern Quebec, Canada.G eochim, Cosmochim. Acta, 59, 4427, 10.1016/0016-7037(95)00302-G
Chiaradia, 2000, Behaviour of airborne lead and temporal variations of its source effects in Geneva (Switzerland): comparison of anthropogenic versus natural processes, Atmos. Environ., 34, 959, 10.1016/S1352-2310(99)00213-7
Cloy, 2005, A comparison of antimony and lead profiles over thepast 2500 years in Flanders Moss ombrotrophic peat bog, Scotland, J. Environ. Monit., 7, 1137, 10.1039/b510987f
Cloy, 2009, Retention of as and sb in ombrotrophic peat bogs: records of As, Sb, and Pb deposition at four scottish sites, Environ. Sci. Technol., 43, 1756, 10.1021/es802573e
Díaz-Somoano, 2009, Stable lead isotope compositions in selected coals from around the world and implications for present day aerosol source tracing, Environ. Sci. Technol., 43, 1078, 10.1021/es801818r
De Vleeschouwer, 2014, Emissions from pre-Hispanic metallurgy in the south american atmosphere, PLoS One, 9, e111315, 10.1371/journal.pone.0111315
Dubois, 1999, Les mines de plomb argentifère et zinc d’Aulus-les-Bains (Ariège), Archéol. Midi. Médiév., 17, 187, 10.3406/amime.1999.928
Forel, 2010, Historical mining and smelting in the Vosges Mountains (France) recorded in two ombrotrophic peat bogs, J. Geochem. Explor, 107, 9, 10.1016/j.gexplo.2010.05.004
Galop, 1998, 1
Galop, 1994, Differential human impact and vegetation history in two adjacent Pyrenean valleys in the Ariège basin, southern France, from 3000 B.P. to the present, Veg. Hist. Archaeobot., 3, 225, 10.1007/BF00195199
Galop, 2011, Grazing activities and biodiversity history in the Pyrénées − the use of paleoecology and historical ecology to provide new insights on high-altitude ecosystems in the framework of a Human-Environment Observatory, Pages News, 19, 53, 10.22498/pages.19.2.53
Galop, 2013, A history of long-term human–environment interactions in the french Pyrenees inferred from the pollen data, 19
Givelet, 2004, Suggested protocol for collecting: handling and preparing peat cores and peat samples for physical, chemical, mineralogical and isotopic analyses, J. Environ. Monit. JEM, 6, 481, 10.1039/B401601G
Haack, 2002, On the isotopic composition of Pb in cloud waters in central Germany. a source discrimination study, Water Air Soil Pollut., 139, 261, 10.1023/A:1015864103834
Haack, 2003, The isotopic composition of anthropogenic pb in soil profiles of northern Germany: evidence for pollutant Pb from a continent-wide mixing system, Water Air Soil Pollut., 150, 113, 10.1023/A:1026142501593
Hansson, 2013, Evaluating paleoproxies for peat decomposition and their relationship to peat geochemistry, Holocene, 23, 10.1177/0959683613508160
Hansson, 2015, Environmental contaminants, developments in paleoenvironmental research, Vol. 18, 323
Harmens, 2010, Mosses as biomonitors of atmospheric heavy metal deposition: spatial patterns and temporal trends in Europe, Environ. Pollut., 158, 3144, 10.1016/j.envpol.2010.06.039
Harmens, 2015, Heavy metal and nitrogen concentrations in mosses are declining across Europe whilst some hotspots remain in 2010, Environ. Pollut., 200, 93, 10.1016/j.envpol.2015.01.036
Hong, 1994, Greenland ice evidence of hemispheric lead pollution 2 millebbia ago by Greek and Roman civilizations, Science, 265, 1841, 10.1126/science.265.5180.1841
Küttner, 2014, A 3300-year atmospheric metal contamination record from Raeburn Flow raised bog, south west Scotland, J. Archaeol Sci., 44, 1, 10.1016/j.jas.2014.01.011
Karlsson, 2015, Tracing modern environmental conditions to their roots in early mining, metallurgy, and settlement in Gladhammar, southeast Sweden: vegetation and pollution history outside the traditional Bergslagen mining region, Holocene, 25, 944, 10.1177/0959683615574586
Kaste, 2003, Using stable and radioactive isotopes to trace atmospherically deposited Pb in montane forest soils, Environ. Sci. Technol., 37, 3560, 10.1021/es026372k
Kempter, 2010, Atmospheric Pb and Ti accumulation rates from sphagnum moss: dependence upon plant productivity, Environ. Sci. Amp. Technol., 44, 5509, 10.1021/es100366d
Klaminder, 2003, Isotopic trends and background fluxes of atmospheric lead in northern Europe: analyses of three ombrotrophic bogs from south Sweden, Glob. Biogeochem. Cycles, 17, 1019, 10.1029/2002GB001921
Kober, 1999, Pb isotopes in sediments of Lake Constance: central Europe constrain the heavy metal pathways and the pollution history of the catchment, the lake and the regional atmosphere, Geochim. Cosmochim. Acta, 63, 1293, 10.1016/S0016-7037(99)00064-2
Krachler, 2004, Optimising accuracy and precision of lead isotope measurement (206Pb: 207Pb, 208Pb) in acid digests of peat with ICP-SMS using individual mass discrimination correction, J. Anal. At. Spectrom., 19, 354, 10.1039/b314956k
Kylander, 2005, Refining the pre-industrial atmospheric Pb isotope evolution curve in Europe using an 8000year old peat core from NW Spain, Earth Planet Sci. Lett., 240, 467, 10.1016/j.epsl.2005.09.024
Le Roux, 2010, Preparation of peat samples for inorganic geochemistry used as palaeoenvironmental proxies, Mires Peat, 7, 1
Le Roux, 2005, Recent atmospheric Pb deposition at a rural site in southern Germany assessed using a peat core and snowpack, and comparison with other archives, Atmos. Environ., 39, 6790, 10.1016/j.atmosenv.2005.07.026
Le Roux, 2010, Deposition of artificial radionuclides from atmospheric Nuclear Weapon Tests estimated by soil inventories in French areas low-impacted by Chernobyl, J. Environ. Radioact., 101, 211, 10.1016/j.jenvrad.2009.10.010
Le Roux, 2016, Vol. 21, 131
Likuku, 2006, Wet deposition of 210 Pb aerosols over two areas of contrasting topography, Environ. Res. Lett., 1, 014007, 10.1088/1748-9326/1/1/014007
Martínez Cortizas, 2002, Atmospheric Pb deposition in Spain during the last 4600 years recorded by two ombrotrophic peat bogs and implications for the use of peat as archive, Sci. Total Environ., 292, 33, 10.1016/S0048-9697(02)00031-1
Mauquoy, 2004, Changes in solar activity and Holocene climatic shifts derived from 14C wiggle-match dated peat deposits, Holocene, 14, 45, 10.1191/0959683604hl688rp
Monna, 1997, Pb isotopic composition of airborne particulate material from France and the southern United Kingdom:Implications for Pb pollution sources in urban areas, Environ. Sci. Technol., 31, 2277, 10.1021/es960870+
Monna, 2004, Environmental impact of early Basque mining and smelting recorded in a high ash minerogenic peat deposit, Sci. Total Environ., 327, 197, 10.1016/j.scitotenv.2004.01.010
Monna, 2004, History and environmental impact of mining activity in Celtic Aeduan territory recorded in a peat bog (Morvan, France), Environ. Sci. Technol., 38, 665, 10.1021/es034704v
Monna, 2011, Wild brown trout affected by historical mining in the cevennes national park, France, Environ. Sci. Technol., 45, 6823, 10.1021/es200755n
Munoz, 2016, Mesozoic vein-type Pb-Zn mineralization in the Pyrenees: lead isotopic and fluid inclusion evidence from the Les Argentières and Laquorre deposits, Compt. Rendus Geosci., 348, 322, 10.1016/j.crte.2015.07.001
Olid, 2010, Multiple site study of recent atmospheric metal (Pb: zn and Cu) deposition in the NW Iberian Peninsula using peat cores, Sci. Total Environ., 408, 5540, 10.1016/j.scitotenv.2010.07.058
Paris, 2015, Human mining activity across the ages determines the genetic structure of modern brown trout (Salmo trutta L.) populations, Evol. Appl., 8, 573, 10.1111/eva.12266
Plant, 1997, The forum of european geological surveys geochemistry task group inventory 1994–1996, J. Geochem. Explor, 59, 123, 10.1016/S0375-6742(97)00008-3
Py-Saragaglia, 2017, Late Holocene history of woodland dynamics and wood use in an ancient mining area of the Pyrenees (Ariège, France), Quat. Int., s1
Rausch, 2005, Comparison of atmospheric deposition of copper: nickel, cobalt, zinc, and cadmium recorded by finnish peat cores with monitoring data and emission records, Environ. Sci. Technol., 39, 5989, 10.1021/es050260m
Renberg, 1994, Pre-industrial atmospheric lead contamination detected in Swedish lake sediments, Nature, 368, 323, 10.1038/368323a0
Rosman, 1997, Lead from carthaginian and roman spanish mines isotopically identified in Greenland ice dated from 600 B. C. to 300 A. d, Environ. Sci. Technol., 31, 3413, 10.1021/es970038k
Sen, 2012, Anthropogenic disturbance of element cycles at the earth’s surface, Environ. Sci. Technol., 46, 8601, 10.1021/es301261x
Shotyk, 1996, Two thousand years of atmospheric arsenic, antimony, and lead deposition recorded in an ombrotrophic peat bog profile, Jura Mountains, Switzerland, Earth Planet Sci. Lett., 145, E1, 10.1016/S0012-821X(96)00197-5
Shotyk, 1998, History of atmospheric lead deposition since 12,370 C-14 yr BP from a peat bog, Jura Mountains, Switzerland, Science, 281, 1635, 10.1126/science.281.5383.1635
Stankwitz, 2012, Threshold increases in soil lead and mercury from tropospheric deposition across an elevational gradient, Environ. Sci. Technol, 46, 8061, 10.1021/es204208w
Véron, 1999, Isotopic evidence of pollutant lead sources in Northwestern France, Atmos. Environ., 33, 3377, 10.1016/S1352-2310(98)00376-8
Verna, 1996, Une nouvelle page de l’histoire des mines d’argent européennes: le cas des Pyrénées centrales (XIVe −XVe siècle), Bull. Annu. Société Ariégeoise Sci. Lett. Arts, 201
Wardenaar, 1987, A new hand tool for cutting peat profiles, Can. J. Bot., 65, 1772, 10.1139/b87-243
Weathers, 2000, The effect of landscape features on deposition to hunter mountain, catskill mountains, new York, Ecol. Appl., 10, 528, 10.1890/1051-0761(2000)010[0528:TEOLFO]2.0.CO;2
Zheng, 2007, A 15,800-year record of atmospheric lead deposition on the Devon Island Ice Cap, Nunavut, Canada: natural and anthropogenic enrichments, isotopic composition, and predominant sources: a 15,800-year Pb record from Devon Island ice, Glob. Biogeochem. Cycles, 21, 10.1029/2006GB002897