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首页> 外文期刊>Mineralogical Magazine >Effects of Ca-enrichment on authigenic carbonate formation at cold vent sites off Costa Rica: a numerical model approach
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Effects of Ca-enrichment on authigenic carbonate formation at cold vent sites off Costa Rica: a numerical model approach

机译:钙富集对哥斯达黎加寒冷发泄点自生碳酸盐形成的影响:数值模型方法

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THE Costa Rican forearc is characterized by active fluid venting related to mud diapirism and volcanism. The geochemical compositions of fluids obtained from dewatering sites indicate that mineral precipitation or dehydration is the major driver of fluid mobilization and upward migration. The peculiar situation at the latter sites is that Ca concentrations in the upward migrating fluids are well above seawater levels. In turn, these Ca-enriched fluids could offer a potential reason for widespread carbonate caps on top of the mounds. Here, a reactive-transport numerical model is applied to investigate the main biogeochemical processes at cold vents off Costa Rica (Fig. 1). It is used to determine the vent-driven CaCO_3 (calcium carbonate for solid phase) precipitation, quantification of methane turnover and Anaerobic Oxidation of Methane (AOM) at five different stations with varying Ca concentrations (Table 1). We also analysed the control parameters such as Ca concentrations and saturation state affecting CaCO_3 precipitation rates. Fluids from two of the five sites (Culebra Fault, and Mudpie) are enriched in Ca. In contrast, fluids at the other two sites (Mound 11 and Quepos Slide) have relatively small amounts of Ca.
机译:哥斯达黎加前臂的特征是与泥下倾角作用和火山作用有关的主动流体排放。从脱水地点获得的流体的地球化学组成表明,矿物沉淀或脱水是流体动员和向上迁移的主要驱动力。后者位置的特殊情况是向上迁移的流体中的Ca浓度远高于海水水平。反过来,这些富含钙的流体可能提供了在土丘顶部广泛分布碳酸盐盖的潜在原因。在这里,应用反应运输数值模型来研究哥斯达黎加外海冷气口的主要生物地球化学过程(图1)。它用于确定由Ca浓度变化的五个不同工位的排气口驱动的CaCO_3(固相碳酸钙)沉淀,甲烷转换定量和甲烷厌氧氧化(AOM)(表1)。我们还分析了控制参数,例如影响CaCO_3沉淀速率的Ca浓度和饱和状态。五个位置中的两个(库莱布拉断层和Mudpie)中的流体富含Ca。相反,其他两个位置(11号坑和Quespos滑坡)的流体中钙的含量相对较少。

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