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- W2295500047 abstract "Abstract. The surface sediments in the Black Sea are underlain by extensive deposits of iron (Fe)-oxide-rich lake sediments that were deposited prior to the inflow of marine Mediterranean Sea waters ca. 9000 years ago. The subsequent downward diffusion of marine sulfate into the methane-bearing lake sediments has led to a multitude of diagenetic reactions in the sulfate-methane transition zone (SMTZ), including anaerobic oxidation of methane (AOM) with sulfate. While the sedimentary cycles of sulfur (S), methane and Fe in the SMTZ have been extensively studied, relatively little is known about the diagenetic alterations of the sediment record occurring below the SMTZ.Here we combine detailed geochemical analyses of the sediment and porewater with multicomponent diagenetic modeling to study the diagenetic alterations below the SMTZ at two sites in the western Black Sea. We focus on the dynamics of Fe, S and phosphorus (P), and demonstrate that diagenesis has strongly overprinted the sedimentary burial records of these elements. In line with previous studies in the Black Sea, we show that sulfate-mediated AOM substantially enhances the downward diffusive flux of sulfide into the deep limnic deposits. During this downward sulfidization, Fe oxides, Fe carbonates and Fe phosphates (e.g., vivianite) are converted to sulfide phases, leading to an enrichment in solid-phase S and the release of phosphate to the porewater. Below the sulfidization front, high concentrations of dissolved ferrous Fe (Fe2+) lead to sequestration of downward-diffusing phosphate as authigenic vivianite, resulting in a transient accumulation of total P directly below the sulfidization front.Our model results further demonstrate that downward-migrating sulfide becomes partly re-oxidized to sulfate due to reactions with oxidized Fe minerals, fueling a cryptic S cycle and thus stimulating slow rates of sulfate-driven AOM ( ∼ 1–100 pmol cm−3 d−1) in the sulfate-depleted limnic deposits. However, this process is unlikely to explain the observed release of dissolved Fe2+ below the SMTZ. Instead, we suggest that besides organoclastic Fe oxide reduction and reactivation of less reactive Fe oxides by methanogens, AOM coupled to the reduction of Fe oxides may also provide a possible mechanism for the high concentrations of Fe2+ in the porewater at depth. Our results reveal that methane plays a key role in the diagenetic alterations of Fe, S and P records in Black Sea sediments. The downward sulfidization into the limnic deposits is enhanced through sulfate-driven AOM with sulfate, and AOM with Fe oxides may provide a deep source of dissolved Fe2+ that drives the sequestration of P in vivianite below the sulfidization front." @default.
- W2295500047 created "2016-06-24" @default.
- W2295500047 creator A5004041242 @default.
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- W2295500047 creator A5089941167 @default.
- W2295500047 date "2016-09-23" @default.
- W2295500047 modified "2023-10-15" @default.
- W2295500047 title "Anaerobic oxidation of methane alters sediment records of sulfur, iron and phosphorus in the Black Sea" @default.
- W2295500047 cites W1445602639 @default.
- W2295500047 cites W1480659684 @default.
- W2295500047 cites W1586239332 @default.
- W2295500047 cites W1604119329 @default.
- W2295500047 cites W1756121889 @default.
- W2295500047 cites W1838868214 @default.
- W2295500047 cites W1946662894 @default.
- W2295500047 cites W1961334287 @default.
- W2295500047 cites W1966214132 @default.
- W2295500047 cites W1973392970 @default.
- W2295500047 cites W1977457680 @default.
- W2295500047 cites W1978156487 @default.
- W2295500047 cites W1978682327 @default.
- W2295500047 cites W1979272325 @default.
- W2295500047 cites W1982038484 @default.
- W2295500047 cites W1988751796 @default.
- W2295500047 cites W1992383576 @default.
- W2295500047 cites W1996339982 @default.
- W2295500047 cites W2005040173 @default.
- W2295500047 cites W2006896335 @default.
- W2295500047 cites W2007443159 @default.
- W2295500047 cites W2008680648 @default.
- W2295500047 cites W2009778629 @default.
- W2295500047 cites W2010086599 @default.
- W2295500047 cites W2011029891 @default.
- W2295500047 cites W2014693431 @default.
- W2295500047 cites W2018537997 @default.
- W2295500047 cites W2018843634 @default.
- W2295500047 cites W2023068580 @default.
- W2295500047 cites W2026511569 @default.
- W2295500047 cites W2028402429 @default.
- W2295500047 cites W2030152516 @default.
- W2295500047 cites W2030243723 @default.
- W2295500047 cites W2032488786 @default.
- W2295500047 cites W2033222462 @default.
- W2295500047 cites W2041229481 @default.
- W2295500047 cites W2041555263 @default.
- W2295500047 cites W2043668123 @default.
- W2295500047 cites W2049539326 @default.
- W2295500047 cites W2050959258 @default.
- W2295500047 cites W2051959027 @default.
- W2295500047 cites W2053480406 @default.
- W2295500047 cites W2055889421 @default.
- W2295500047 cites W2056257661 @default.
- W2295500047 cites W2060882368 @default.
- W2295500047 cites W2067273208 @default.
- W2295500047 cites W2068943778 @default.
- W2295500047 cites W2070292413 @default.
- W2295500047 cites W2075435443 @default.
- W2295500047 cites W2076797128 @default.
- W2295500047 cites W2078184512 @default.
- W2295500047 cites W2079140419 @default.
- W2295500047 cites W2079556684 @default.
- W2295500047 cites W2079739947 @default.
- W2295500047 cites W2080753820 @default.
- W2295500047 cites W2081893898 @default.
- W2295500047 cites W2082317586 @default.
- W2295500047 cites W2084951381 @default.
- W2295500047 cites W2086669688 @default.
- W2295500047 cites W2089465072 @default.
- W2295500047 cites W2090337160 @default.
- W2295500047 cites W2096777861 @default.
- W2295500047 cites W2096847512 @default.
- W2295500047 cites W2097302660 @default.
- W2295500047 cites W2105507048 @default.
- W2295500047 cites W2106504887 @default.
- W2295500047 cites W2111843680 @default.
- W2295500047 cites W2115059945 @default.
- W2295500047 cites W2117383360 @default.
- W2295500047 cites W2117676837 @default.
- W2295500047 cites W2121766793 @default.
- W2295500047 cites W2127368047 @default.
- W2295500047 cites W2134953175 @default.
- W2295500047 cites W2135292570 @default.
- W2295500047 cites W2137181372 @default.
- W2295500047 cites W2137443296 @default.
- W2295500047 cites W2138057678 @default.
- W2295500047 cites W2140716309 @default.
- W2295500047 cites W2142067912 @default.
- W2295500047 cites W2142688044 @default.
- W2295500047 cites W2145321579 @default.
- W2295500047 cites W2147818114 @default.
- W2295500047 cites W2150393300 @default.
- W2295500047 cites W2151805764 @default.
- W2295500047 cites W2152971512 @default.
- W2295500047 cites W2153082073 @default.