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METHANE IN SEDIMENTS OF THE DEEP MARMARA SEA AND ITS RELATION TO LOCAL TECTONIC STRUCTURES

机译:深海马尔马拉海沉积物中的甲烷及其与局部构造结构的关系

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The central and western part of the Sea of Marmara consists of two deep pull-apart-basins and an intermediate push-up structure. The bathymetric high between the Tekirdag and the Central Marmara Basin is cut by a deep E-W-trending furrow which is the eastern branch of the Ganos Fault which in turn is part of the active North Anatolian Fracture Zone. This area was mapped during the Meteor cruise M 44/1 in February 1999. During the cruise seafloor observations and sediment coring within this prominent furrow structure have shown that methane is emanating at several sites into the water column and that the sediments are also methane-enriched in their deeper parts. Within the porewater regime of hemipelagic clay sediments the typical process of bacterially mediated anoxic methane oxidation is taking place. The resulting geochemical profiles indicate a reaction-zone in a depth of several meters where methane is oxidized to H_2 and CO_2; the H_2 reduces the sulfate that finally is converted to H_2S. This H_2S forms iron-sulfide precipitates in the presence of reduced iron. However, our geochemical concentration profiles are not typical for steady-state conditions, but are rather characterized by a very steep drop in sulfate-concentrations just above the reaction zone. We suggest that this specific gradient is caused by a situation that is superimposed by an advective upward-migration of a methane-enriched fluid. This advective fluid flow is controlled by the tectonic strain of the Ganos Fault system.
机译:马尔马拉海的中西部部分由两个深拉分盆和中间上推的结构。泰基尔达和中央马尔马拉盆地之间的测深高是由切深东 - 西走向的沟这是Ganos断层的东部分支,又是积极的北安纳托利亚断裂带的一部分。这方面的流星巡航中号44/1 1999年2月在巡航期间海底观测和这家著名的凹沟结构内沉积物取芯期间映射表明,甲烷在几个地点入水塔排出和沉积物也甲烷富集的部位较深。在半远洋粘土沉积物细菌介导缺氧甲烷氧化的典型过程正在发生的孔隙水制度。将所得的地球化学谱表明在数米,其中甲烷氧化为H_2和CO_2深度的反应区;的H_2减少了最后被转化成硫化氢的硫酸盐。本硫化氢形成在还原铁的存在硫化铁沉淀。然而,我们的地球化学浓度分布不典型为稳态条件,但宁可特征在于在硫酸盐浓度就在反应区上方的非常陡的下降。我们认为,这个特定的梯度通过由富含甲烷的流体的对流向上迁移叠加的情况引起的。此对流流体流动由Ganos故障系统的构造应变控制。

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