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Author Pezzarossa, B.; Piccotino, D.; Petruzzelli, G.
Title Sorption and desorption of selenium in different soils of the Mediterranean area Type Journal Article
Year (up) 1999 Publication Communications in soil science and plant analysis Abbreviated Journal
Volume 30 Issue 19-20 Pages 2669-2679
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Publisher Taylor & Francis Place of Publication Editor
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Call Number THL @ luqianxue.zhang @ pezzarossa1999sorption Serial 76
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Author Gaye, C.B.
Title Isotope techniques for monitoring groundwater salinization Type Journal Article
Year (up) 2001 Publication Hydrogeology Journal Abbreviated Journal
Volume 9 Issue Pages 217-218
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Call Number THL @ christoph.kuells @ article Serial 83
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Author Glavas, S.; Moschonas, N.
Title Origin of observed acidic–alkaline rains in a wet-only precipitation study in a Mediterranean coastal site, Patras, Greece Type Journal Article
Year (up) 2002 Publication Atmospheric Environment Abbreviated Journal
Volume 36 Issue 19 Pages 3089-3099
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Publisher Elsevier Place of Publication Editor
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Call Number THL @ luqianxue.zhang @ glavas2002origin Serial 91
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Author Park, H.; Schlesinger, W.
Title Global biochemical cycle of boron Type Journal Article
Year (up) 2002 Publication Global Biogeochemical Cycles Abbreviated Journal
Volume 16 Issue Pages 1072
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Abstract The global Boron (B) cycle is primarily driven by a large flux (1.44 Tg B/yr) through the atmosphere derived from seasalt aerosols. Other significant sources of atmospheric boron include emissions during the combustion of biomass (0.26-0.43 Tg B/yr) and coal, which adds 0.20 Tg B/yr as an anthropogenic contribution. These known inputs to the atmosphere cannot account for the boron removed from the atmosphere during rainfall (3.0 Tg B/yr) and estimated dry deposition (1.3-2.7 Tg B/yr). In addition to atmospheric deposition, rock weathering is a source of boron (0.19 Tg B/yr) for terrestrial ecosystems, and humans mine about 0.31 Tg B/yr from the Earth's crust. More than 4.8 Tg B/yr circulates in the biogeochemical cycle of land plants, and about 0.53-0.63 Tg B/yr is carried from land to sea by rivers. The biogeochemical cycle of boron in the sea includes 4.4 Tg B/yr circulating in the marine biosphere, and an annual loss of 0.47 Tg B/yr to the oceanic crust via a variety of sedimentary processes that collectively remove only a small fraction of the total annual inputs to the oceans. Thus with our current understanding of the global biogeochemistry of B, the atmospheric budget shows outputs > inputs, while the marine compartments show inputs > outputs. Despite these uncertainties, it is clear that the human perturbation of the global B cycle has more than doubled the mobilization of B from the crust and contributes significantly to the B transport in rivers.
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Call Number THL @ luqianxue.zhang @ article Serial 94
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Author Pulido-Leboeuf, P.; Pulido-Bosch, A.; Calvache, M.L.; Vallejos, Á.; Andreu, J.M.
Title Strontium, SO42-/Cl- and Mg2+/Ca2+ ratios as tracers for the evolution of seawater into coastal aquifers: the example of Castell de Ferro aquifer (SE Spain) Type Journal Article
Year (up) 2003 Publication Comptes Rendus Geoscience Abbreviated Journal
Volume 335 Issue 14 Pages 1039-1048
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Publisher Elsevier Place of Publication Editor
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Call Number THL @ luqianxue.zhang @ pulido2003strontium Serial 71
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