The estuarine geochemical reactivity of Zn isotopes and its relevance for the biomonitoring of anthropogenic Zn and Cd contaminations from metallurgical activities: Example of the Gironde fluvial-estuarine system, France
被引:36
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作者:
Petit, Jerome C. J.
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机构:
Univ Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, FranceUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Petit, Jerome C. J.
[1
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Schaefer, Joerg
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Univ Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, FranceUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Schaefer, Joerg
[1
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Coynel, Alexandra
[1
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Blanc, Gerard
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Univ Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, FranceUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Blanc, Gerard
[1
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Chiffoleau, Jean-Francois
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IFREMER, Ctr Nantes, Dept DCN, F-44311 Nantes 3, FranceUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Chiffoleau, Jean-Francois
[2
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Auger, Dominique
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IFREMER, Ctr Nantes, Dept DCN, F-44311 Nantes 3, FranceUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Auger, Dominique
[2
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Bossy, Cecile
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Univ Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, FranceUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Bossy, Cecile
[1
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Derriennic, Herve
[1
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Mikolaczyk, Mathilde
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Univ Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, FranceUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Mikolaczyk, Mathilde
[1
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Dutruch, Lionel
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Univ Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, FranceUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Dutruch, Lionel
[1
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Mattielli, Nadine
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机构:
Univ Libre Bruxelles, Dept Earth & Environm Sci, G Time, B-1050 Brussels, BelgiumUniv Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
Mattielli, Nadine
[3
]
机构:
[1] Univ Bordeaux, UMR EPOC OASU 5805, TGM, F-33615 Pessac, France
[2] IFREMER, Ctr Nantes, Dept DCN, F-44311 Nantes 3, France
[3] Univ Libre Bruxelles, Dept Earth & Environm Sci, G Time, B-1050 Brussels, Belgium
OYSTERS CRASSOSTREA-GIGAS;
PARTICULATE TRACE-METAL;
ZINC ISOTOPES;
CADMIUM CONTAMINATION;
MASS SPECTROMETRY;
FRENCH COASTS;
CU;
FRACTIONATION;
COPPER;
PB;
D O I:
10.1016/j.gca.2015.08.004
中图分类号:
P3 [地球物理学];
P59 [地球化学];
学科分类号:
0708 ;
070902 ;
摘要:
Zinc stable isotopes measurements by MC-ICP-MS, validated by laboratory intercalibrations, were performed on wild oysters, suspended particles and filtered river/estuarine water samples to provide new constraints for the use of Zn isotopes as environmental tracers. The samples selected were representative of the long range (400 km) transport of metal (Zn, Cd, etc.) contamination from former Zn-refining activities at Decazeville (i.e. delta Zn-66 > 1%) and its phasing out, recorded during 30 years in wild oysters from the Gironde Estuary mouth (RNO/ROCCH sample bank). The study also addresses additional anthropogenic sources (urban and viticulture) and focuses on geochemical reactivity of Zn in the turbidity gradient and the maximum turbidity zone (MTZ) of the fluvial Gironde Estuary. In this area, dissolved Zn showed a strong removal onto suspended particulate matter (SPM) and progressive enrichment in heavy isotopes with increasing SPM concentrations varying from delta Zn-66 = -0.02% at 2 mg/L to +0.90% at 1310 mg/L. These signatures were attributed to kinetically driven adsorption due to strongly increasing sorption sites in the turbidity gradient and MTZ of the estuary. Oysters from the estuary mouth, contaminated sediments from the Lot River and SPM entering the estuary showed parallel historical evolutions (1979-2010) for Zn/Cd ratios but not for delta Zn-66 values. Oysters had signatures varying from delta Zn-66 = 1.43% in 1983 to 1.18% in 2010 and were offset by delta Zn-66 = 0.6-0.7% compared to past (1988) and present SPM from the salinity gradient. Isotopic signatures in river-borne particles entering the Gironde Estuary under contrasting freshwater discharge regimes during 2003-2011 showed similar values (delta Zn-66 approximate to 0.35 +/- 0.03%; 1SD, n = 15), i.e. they were neither related to former metal refining activities at least for the past decade nor clearly affected by other anthropogenic sources. Therefore, the Zn isotopic signatures in Gironde oysters reflect the geochemical reactivity of Zn in the estuary rather than signatures of past metallurgical contaminations in the watershed as recorded in contaminated river sediments. The study also shows that the isotopic composition of Zn is strongly fractionated by its geochemical reactivity in the Gironde Estuary, representative of meso-macrotidal estuarine systems. (C) 2015 Elsevier Ltd. All rights reserved.