Bacardit M, Krachler M, Camarero L (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 82:52–67
Brahney J, Mahowald N, Ward DS, Ballantyne AP, Neff JCCGB (2015) Is atmospheric phosphorus
pollution altering global alpine lake stoichiometry? Glob Biogeochem Cycles 29:1369–1383
Camarero L (2003) Spreading of trace metals and metalloids pollution in lake sediments over the
Pyrenees. J Phys IV France 107:249–253
Camarero L, Botev I, Muri G, Psenner R, Rose N, Stuchlik E (2009) Trace elements in alpine and
arctic lake sediments as a record of diffuse atmospheric contamination across Europe. Freshw
Biol 54:2518–2532
Camarero L, Catalan J (1996) Variability in the chemistry of precipitation in the Pyrenees
(northeastern Spain): dominance of storm origin and lack of altitude influence. J Geophys Res
101:29491–29498
Camarero L, Catalan J (1998) A simple model of regional acidification for high mountain lakes:
application to the Pyrenean lakes (North-East Spain). Water Res 32:1126–1136
Camarero L, Catalan J (2012) Atmospheric phosphorus deposition may cause lakes to revert from
phosphorus limitation back to nitrogen limitation. Nat Commun 3:1118
Camarero L, Masqué P, Devos W, Ani-Ragolta I, Catalan J, Moor HC, Pla S, Sanchez-Cabeza JA
(1998) Historical variations in lead fluxes in the Pyrenees (NE Spain) from a dated lake
sediment core. Water Air Soil Pollut 105:439–449
Cowling EB (1982) Acid precipitation in historical perspective. Envir Sci Technol 16:A110–A123
EEA (2013) EU emissions of As, Cd, Hg, Ni and Pb, 2002–2011, as a percentage of 2002
emissions. http://www.eea.europa.eu/data-and-maps/figures/eu-emissions-of-as-cd-1
Elser JJ (2011) World Awash Nitrogen Sci 334:1504–1505
Galloway JN, Dentener FJ, Capone DG, Boyer EW, Howarth RW, Seitzinger SP, Asner GP,
Cleveland CC, Green PA, Holland EA, Karl DM, Michaels AF, Porter JH, Townsend AR,
Vöosmarty CJ (2004) Nitrogen cycles: past, present, and future. Biogeochemistry 70:153–226
Galloway JN, Townsend AR, Erisman JW, Bekunda M, Cai Z, Freney JR, Martinelli LA,
Seitzinger SP, Sutton MA (2008) Transformation of the nitrogen cycle: recent trends,
questions, and potential solutions. Science 320:889–892
Goldman CR (1988) Primary productivity, nutrients, and transparency during the early onset of
eutrophication in ultra-oligotrophic Lake Tahoe, California-Nevada. Limnol Oceanogr
33:1321–1333
Gorham E, Underwood JK, Martin FB, Gordon O (1986) Natural and anthropogenic causes of lake
acidification in Nova Scotia. Nature 324:451–453
Klaminder J, Hammarlund D, Kokfelt U, Vonk JE, Bigler C (2010) Lead contamination of
subarctic lakes and its response to reduced atmospheric fallout: can the recovery process be
counteracted by the ongoing climate change? Environ Sci Technol 44:2335–2340
Likens GE, Bormann FH (1974) Acid rain: a serious regional environmental problem. Science
184:1176–1179
Mahowald N, Jickells TD, Baker AR, Artaxo P, Benitez-Nelson CR, Bergametti G, Bond TC,
Chen Y, Cohen DD, Herut B, Kubilay N, Losno R, Luo C, Maenhaut W, McGee KA,
Okin GS, Siefert RL, Tsukuda S (2008) Global distribution of atmospheric phosphorus
sources, concentrations and deposition rates, and anthropogenic impacts. Glob Biogeochem
Cycles 22:GB4026
Mahowald NM, Kloster S, Engelstaedter S, Moore JK, Mukhopadhyay S, McConnell JR,
Albani S, Doney SC, Bhattacharya A, Curran MAJ, Flanner MG, Hoffman FM, Lawrence DM,
Lindsay K, Mayewski PA, Neff J, Rothenberg D, Thomas E, Thornton PE, Zender CS (2010)
Observed 20th century desert dust variability: impact on climate and biogeochemistry. Atmos
Chem Phys 10:10875–10893
Moulin C, Lambert CE, Dulac F, Dayan U (1997) Control of atmospheric export of dust from
North Africa by the North Atlantic oscillation. Nature 387:691–694
Neary BP, Dillon PJ (1988) Effects of sulphur deposition on lake water chemistry in Ontario.
Nature 333:340–343
340
L. Camarero
and sediments in mountain lake catchments in the Central Pyrenees: apportioning the
anthropogenic and natural contributions. Geochim Cosmochim Acta 82:52–67
Brahney J, Mahowald N, Ward DS, Ballantyne AP, Neff JCCGB (2015) Is atmospheric phosphorus
pollution altering global alpine lake stoichiometry? Glob Biogeochem Cycles 29:1369–1383
Camarero L (2003) Spreading of trace metals and metalloids pollution in lake sediments over the
Pyrenees. J Phys IV France 107:249–253
Camarero L, Botev I, Muri G, Psenner R, Rose N, Stuchlik E (2009) Trace elements in alpine and
arctic lake sediments as a record of diffuse atmospheric contamination across Europe. Freshw
Biol 54:2518–2532
Camarero L, Catalan J (1996) Variability in the chemistry of precipitation in the Pyrenees
(northeastern Spain): dominance of storm origin and lack of altitude influence. J Geophys Res
101:29491–29498
Camarero L, Catalan J (1998) A simple model of regional acidification for high mountain lakes:
application to the Pyrenean lakes (North-East Spain). Water Res 32:1126–1136
Camarero L, Catalan J (2012) Atmospheric phosphorus deposition may cause lakes to revert from
phosphorus limitation back to nitrogen limitation. Nat Commun 3:1118
Camarero L, Masqué P, Devos W, Ani-Ragolta I, Catalan J, Moor HC, Pla S, Sanchez-Cabeza JA
(1998) Historical variations in lead fluxes in the Pyrenees (NE Spain) from a dated lake
sediment core. Water Air Soil Pollut 105:439–449
Cowling EB (1982) Acid precipitation in historical perspective. Envir Sci Technol 16:A110–A123
EEA (2013) EU emissions of As, Cd, Hg, Ni and Pb, 2002–2011, as a percentage of 2002
emissions. http://www.eea.europa.eu/data-and-maps/figures/eu-emissions-of-as-cd-1
Elser JJ (2011) World Awash Nitrogen Sci 334:1504–1505
Galloway JN, Dentener FJ, Capone DG, Boyer EW, Howarth RW, Seitzinger SP, Asner GP,
Cleveland CC, Green PA, Holland EA, Karl DM, Michaels AF, Porter JH, Townsend AR,
Vöosmarty CJ (2004) Nitrogen cycles: past, present, and future. Biogeochemistry 70:153–226
Galloway JN, Townsend AR, Erisman JW, Bekunda M, Cai Z, Freney JR, Martinelli LA,
Seitzinger SP, Sutton MA (2008) Transformation of the nitrogen cycle: recent trends,
questions, and potential solutions. Science 320:889–892
Goldman CR (1988) Primary productivity, nutrients, and transparency during the early onset of
eutrophication in ultra-oligotrophic Lake Tahoe, California-Nevada. Limnol Oceanogr
33:1321–1333
Gorham E, Underwood JK, Martin FB, Gordon O (1986) Natural and anthropogenic causes of lake
acidification in Nova Scotia. Nature 324:451–453
Klaminder J, Hammarlund D, Kokfelt U, Vonk JE, Bigler C (2010) Lead contamination of
subarctic lakes and its response to reduced atmospheric fallout: can the recovery process be
counteracted by the ongoing climate change? Environ Sci Technol 44:2335–2340
Likens GE, Bormann FH (1974) Acid rain: a serious regional environmental problem. Science
184:1176–1179
Mahowald N, Jickells TD, Baker AR, Artaxo P, Benitez-Nelson CR, Bergametti G, Bond TC,
Chen Y, Cohen DD, Herut B, Kubilay N, Losno R, Luo C, Maenhaut W, McGee KA,
Okin GS, Siefert RL, Tsukuda S (2008) Global distribution of atmospheric phosphorus
sources, concentrations and deposition rates, and anthropogenic impacts. Glob Biogeochem
Cycles 22:GB4026
Mahowald NM, Kloster S, Engelstaedter S, Moore JK, Mukhopadhyay S, McConnell JR,
Albani S, Doney SC, Bhattacharya A, Curran MAJ, Flanner MG, Hoffman FM, Lawrence DM,
Lindsay K, Mayewski PA, Neff J, Rothenberg D, Thomas E, Thornton PE, Zender CS (2010)
Observed 20th century desert dust variability: impact on climate and biogeochemistry. Atmos
Chem Phys 10:10875–10893
Moulin C, Lambert CE, Dulac F, Dayan U (1997) Control of atmospheric export of dust from
North Africa by the North Atlantic oscillation. Nature 387:691–694
Neary BP, Dillon PJ (1988) Effects of sulphur deposition on lake water chemistry in Ontario.
Nature 333:340–343
340
L. Camarero
