Small-scaled lateral variations of an organic-rich formation in a ramp-type depositional environment (the Late Jurassic of the Boulonnais, France): impact of the clastic supply
E. Hatem, N. Tribovillard, O. Averbuch, V. Bout‐Roumazeilles, A. Trentesaux, J. Deconinck, F. Baudin, T. Adatte
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引用次数: 6
Abstract
We studied a potential petroleum source rock deposited in a clastic-dominated ramp environment: the Argiles de Châtillon Formation (Kimmeridgian-Tithonian, Boulonnais area, northern France). The formation was deposited along a proximal-distal gradient on this ramp affected by synsedimentary fault movements. A sedimentological, mineralogical and geochemical study was conducted to decipher the distribution patterns of sedimentary parameters along such a depth increase over the ramp. It comes out that smectite distribution unexpectedly mimics the lateral depth evolution despite the good floatability of the mineral. It is also observed that the Argiles de Châtillon could accumulate noticeable amounts of organic matter in spite of paleoenvironmental conditions that were not specifically prone to organic matter preservation and burial (sedimentation rate, mineral particle grain size, productivity, oxygenation level…). Conversely, reactive iron, when being present in limited abundance, must have allowed sulfide ions to react with organic molecules instead of forming iron sulfides, which fostered organic matter preservation and accumulation. This protecting role of organic sulfide incorporation (additional to other favorable factors) cannot exist if reactive iron is relatively abundant. Lastly, our results (still fragmentary) suggest that smectite minerals could carry reactive iron, which would have occasionally hampered organic-matter preservation.
研究了沉积在碎屑岩为主的斜坡环境中的潜在烃源岩:Argiles de ch tillon组(法国北部Boulonnais地区Kimmeridgian-Tithonian)。受同沉积断层运动的影响,该斜坡上的地层沿近端-远端梯度沉积。通过沉积学、矿物学和地球化学研究,揭示了斜坡上深度增加的沉积参数分布规律。结果表明,尽管蒙脱石具有良好的可浮性,但其分布出人意料地模拟了侧向深度演化。研究还发现,尽管古环境条件(沉积速率、矿物颗粒粒度、生产力、氧合水平等)不利于有机质的保存和埋藏,但Argiles de chaltilon仍能积累大量的有机质。相反,活性铁,当含量有限时,一定会让硫化物离子与有机分子反应,而不是形成硫化铁,从而促进有机物的保存和积累。如果活性铁相对丰富,有机硫化物结合的这种保护作用(加上其他有利因素)就不存在。最后,我们的结果(仍然是碎片)表明蒙脱石矿物可能携带活性铁,这偶尔会阻碍有机物的保存。
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