首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Carbonate REE plus Y signatures from the restricted early marine phase of South Atlantic Ocean (late Aptian - Albian): The influence of early anoxic diagenesis on shale-normalized REE plus Y patterns of ancient carbonate rocks
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Carbonate REE plus Y signatures from the restricted early marine phase of South Atlantic Ocean (late Aptian - Albian): The influence of early anoxic diagenesis on shale-normalized REE plus Y patterns of ancient carbonate rocks

机译:来自南大西洋的受限制的早期海洋阶段的碳酸盐雷加和y签名(已故的Aptian-albian):早期缺氧成岩作用对古代碳酸盐岩的页岩标准化REE加上Y型模式

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Rare earth elements plus yttrium have been extensively applied in paleoenvironmental studies of ancient carbonate successions due to their fractionation in the marine environment. However, in modem marine anoxic environments, seawater REE + Y signatures can be suppressed in reducing conditions (e.g. stagnant basins and/or early diagenesis) by REE remobilization from several sedimentary components (e.g. detrital siliciclastics, oxides, organic compounds). We present the shale-normalized REE + Y signatures for a transgressive marine carbonate succession of the primitive South Atlantic Ocean (latest Aptian-Albian), in a restricted marine setting with anoxic bottom conditions, to provide and evaluate the REE + Y record deposited in such conditions. Based on well-constrained paleoenvironmental reconstruction through microfacies analysis, three shale normalized REE + Y patterns were identified, varying according to the microfacies associations (MA) and related diagenetic environments: a) light REE-enriched patterns in the more proximal MA associated with burial diagenesis at the base of section; b) flat patterns towards distal MA related to anoxic and sulfidic early diagenesis; and c) middle REE-enriched patterns in MA related to dissolution of Fe-Mn oxy-hydroxide grains under reducing early diagenesis. Cerium anomalies are absent due to stagnant water mass conditions, in accordance with previous studies for the early marine South Atlantic. Y/Ho ratios are lower than modem seawater values, with an increasing trend towards more distal facies. The "non-seawater" shale-normalized REE + Y patterns of the marine carbonates from the primitive South Atlantic Ocean corroborate studies in modern marine reducing environments, in which REE can be remobilized from detrital phases, oxides and organic compounds, suppressing the primary seawater REE Y signature of authigenic minerals. Caution is suggested for the sole use of carbonate REE + Y signatures as paleoenvironmental proxies, es
机译:稀土元素加上钇已广泛应用于古代碳酸盐次数的古环境研究,由于其在海洋环境中的分馏。然而,在调制解调器海洋缺氧环境中,通过从几种沉积组分的REE从几种沉积组分中重组(例如滴乳硅化物质,有机化合物),可以抑制海水REE + Y签名。我们向原始南大西洋(最新Aptian-Albian)的近海碳酸盐碳酸盐+ y签名提供了页岩标准化的REE + y签名,在受缺氧性底部条件的限制海洋环境中,提供和评估存放的REE + Y记录这种条件。基于通过微缩醛分析的良好约束的古环境重建,鉴定了三种页岩归一化REE + Y图案,根据微缩醛关联(MA)和相关的成岩环境不同:a)与埋葬相关的更近似的MA中的轻质REE富集模式截面底部成岩作用; b)与缺氧和亚硫酸早期成岩相关的远端MA的平面图案; c)与减少早期成岩作用的Fe-Mn氧 - 氢氧化物颗粒的溶解相关的MA中的中间富集模式。由于早期海洋南大西洋的先前研究,铈异常因水质群众的储存条件不存在。 Y / HO比率低于调制解调器海水值,趋向于更远侧相越来越大。来自原始南大西洋的海洋碳酸盐的“非海水”页岩标准化的雷+ y模式在现代船舶还原环境中,可以从脱喉阶段,氧化物和有机化合物中重新染色ree,抑制原发性海水Ree Y签名的Authigenic矿物质。旨在批准碳酸盐雷+ Y签名作为古环境代理的唯一用途

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