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首页> 外文期刊>Marine Geology >Boron concentration and isotopic constraints on processes affecting the chemistry of interstitial water in normal- and over-pressured basins, Gulf of Mexico
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Boron concentration and isotopic constraints on processes affecting the chemistry of interstitial water in normal- and over-pressured basins, Gulf of Mexico

机译:硼浓度和同位素约束对影响墨西哥湾正压和超压盆地中间隙水化学过程的影响

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摘要

The Integrated Ocean Drilling Program Expedition 308 (IODP308) drilled normal-pressured sediments from the Brazos–Trinity Basin IV and over-pressured sediments from the Ursa Basin on the northern slope of the Gulf of Mexico. The interstitial water samples from the normal-pressured basin show B concentrations and B isotopic compositions ranging from 255 to 631 μM (0.6 to 1.5 times of seawater value) and from +29.1 to +42.7‰ (relative to NIST SRM 951), respectively. A wider range is observed both for B concentrations (292 to 865 μM, 0.7 to 2.1 times of seawater value) and δ~(11)B values (+25.5 to +43.2‰) of the interstitial water in the over-pressured basin. The down-core distribution of B concentrations and δ~(11)B values in the interstitial waters are sensitive tracers for assessing various processes occurring in the sediment column, including boron adsorption/desorption reactions involving clay minerals and organic matter in sediments as well as fluid migration and mixing in certain horizons and in the sediment column. In the normal-pressured basin adsorption/desorption reactions in shallow sediments play the major role in controlling the B content and B isotopic composition of the interstitial water. In contrast, multiple processes affect the B content and δ~(11)B of the interstitial water in the over-pressured Ursa Basin. There, the stratigraphic level of the maxima of B and δ~(11)B correspond to seismic reflectors. The intruded fluids along the seismic reflector boundary from high to low-topography mix with local interstitial water. Fluid flow is inferred in the Blue Unit (a coarse sandstone layer, connecting the high- to low-pressured region) from the freshening of interstitial water in Ursa Basin Site U1322, and upward flow by the overpressure expels fluid from the overburden above the Blue Unit.
机译:308号综合海洋钻探计划(IODP308)钻了Brazos-Trinity盆地IV的常压沉积物,以及墨西哥湾北坡的Ursa盆地的超压沉积物。来自常压盆地的间隙水样品的B浓度和B同位素组成分别为255至631μM(海水值的0.6至1.5倍)和+29.1至+ 42.7‰(相对于NIST SRM 951)。在超压盆地中,间隙水的B浓度(292至865μM,海水值的0.7至2.1倍)和间隙水的δ〜(11)B值(+25.5至+ 43.2‰)都观察到更大的范围。间隙水中B浓度和δ〜(11)B值的下分布是评估沉积物柱中各种过程的敏感示踪剂,包括涉及粘土矿物和沉积物中有机物的硼吸附/解吸反应以及一定水平和沉积物中的流体运移和混合。在常压盆地中,浅层沉积物中的吸附/解吸反应在控制间隙水中B含量和B同位素组成方面起着主要作用。相反,在超压的Ursa盆地中,多个过程会影响间隙水的B含量和δ〜(11)B。在那里,B和δ〜(11)B的最大值的地层水平对应于地震反射器。沿地震反射器边界从高地势到低地势的侵入流体与局部间隙水混合。从Ursa盆地U1322的间隙水的淡化可以推断出Blue单元(一个粗砂岩层,将高压区域与低压区域相连)中的流体流动,而超压导致的向上流动则将流体从Blue上方的覆盖层中驱出。单元。

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