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首页> 外文期刊>Geochemistry: Interdisciplinary Journal for Chemical Problems of the Geosciences and Geoecology >Mineralogy and geochemistry of marine glauconitic siliciclasts and phosphates in selected Cenomanian-Turonian units, Bohemian Cretaceous Basin, Czech Republic: Implications for provenance and depositional environment
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Mineralogy and geochemistry of marine glauconitic siliciclasts and phosphates in selected Cenomanian-Turonian units, Bohemian Cretaceous Basin, Czech Republic: Implications for provenance and depositional environment

机译:临床 - 卷扬机组,波希米亚白垩纪盆地,捷克共和国的矿物学和地球化学磷酸盐和地球化学。捷克共和国:对物质和沉积环境的影响

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摘要

Glauconitic siliciclastic rocks and phosphate components from the Pecinov Member of the Peruc-Korycany Formation (Upper Cenomanian), the lower part of the BIM Hora Formation (Lower Turonian) and the lower part of the Teplice Formation (Upper Turonian) are studied. Geochemical indices suggest that the siliciclasts were derived from the weathering and recycling products of variable rock types of the Bohemian Massif, with a pronounced signature of felsic-derived source lithologies and a minor contribution from the sources of a chemically intermediate nature. Geochemical and mineralogical criteria suggest that the climate in the midCretaceous was generally humid with possible intermittent arid episodes, which resulted in a long-term weathering of source rocks and the development of residual clay minerals in the source area. Several geochemical indications point toward highly reducing marine conditions during deposition of the mudstones, which are composed of quartz, glauconite, kaolinite, smectite, apatite and calcite. The glauconites show a highly mature character with > 8 wt. % K(2)o and bear evidence of long residence time near the sediment-water interface. They are depleted in Fe and rich in Al indicating a mixed layer mica-smectite as a precursor. Carbonate-fluorapatite is the only phosphate phase identified in the phosphate components, with up to 8 wt. % CO32-, excess F- and significant amounts of Na+ and SO42- in the apatite structure. A short-lived phosphogenic event (s) took place in the latest Cenomanian and involved large areas of the Bohemian Cretaceous Basin in association with the Oceanic Anoxic Event 2. The phosphate nodules were initially precipitated under suboxic conditions around the Cenomanian-Turonian boundary and were later reworked and emplaced in the earliest Turonian units. Phosphate coprolites mark another phosphogenic event in the early Upper Turonian. The development of the phosphate coprolites took place under variable redox conditions; the release of organically-bound phosphate and subsequent phosphatisation of fecal material took place under suboxic environment, followed by reworking in oxic realms.
机译:从PECINOV成员的PECINOV成员(上部CENOMANIAN),BIM HORA形成的下部(下部约束)和TEPLICE形成的下半部分(上周炎)的磷酸杆菌硅和磷酸盐组分。地球化学指数表明,硅式源于波希米亚群体的可变岩石类型的风化和再循环产物,具有精神源性岩性的明显签名以及从化学中间性质的来源的微小贡献。地球化学和矿物学标准表明,中,气候中的气候通常是潮湿的,可能的间歇性干旱发作,导致源岩的长期风化以及源区中的残留粘土矿物的发育。在泥岩沉积期间,几种地球化学指示指示高度减少海洋病症,其由石英,青光素,高岭石,蒙脱石,磷灰石和方解石组成。青光素酸盐显示出高度成熟的性质,具有> 8重量%。 %k(2)o和沉积物 - 水界面附近长停留时间的证据。它们在Fe和富含Al中耗尽,表示混合层云母晶体作为前体。碳酸盐 - 氟磷酸盐是磷酸盐组分中唯一鉴定的磷酸盐相,高达8重量%。磷灰石结构中的%CO32-,过量的F-和大量的Na +和SO 42-。在最新的Cenomanian中发生了短暂的磷酸化事件,并参与了与海洋缺氧事件2结合的波希米亚白垩纪盆地的大面积。磷酸盐结节最初在Cenomanian-Turonian边界周围的解冻条件下沉淀出来后来在最早的涡轮上的单位重新加工并灌输。磷酸盐群标记早期上周安的另一种磷酸化事件。磷酸盐群的发展在可变的氧化还原条件下发生;在对氧化环境下释放有机结合的磷酸盐和随后的粪便磷酸化,然后在氧化物领域进行再加工。

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